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{{Short description|Species of wasp}}
{{italic title}}{{Taxobox
{{italic title}}{{Speciesbox
| name = ''Vespula rufa''
| name = ''Vespula rufa''
| image = Vespula rufa on bupleurum falcatum Richard Bartz.jpg
| image = Vespula rufa on bupleurum falcatum Richard Bartz.jpg
| image_caption = ''Vespula rufa'' on ''[[Bupleurum falcatum]]'' flowers
| image_caption = On ''[[Bupleurum falcatum]]'' flowers
| regnum = [[Animal]]ia
| taxon = Vespula rufa
| authority = ([[Carl Linnaeus|Linnaeus]], [[10th edition of Systema Naturae|1758]])
| phylum = [[Arthropod]]a
| synonyms = *''Vespula intermedia''
| classis = [[Insect]]a
*''Vespa schrenckii''
| ordo = [[Hymenoptera]]
*''Vespa sibirica''
| subordo = [[Apocrita]]
*''Vespula obscura''
| familia = [[Vespidae]]
*''Vespula gongshanensis'' {{small|Dong}}<ref>{{cite journal |last1=Carpenter |first1=James M. |last2=Dvořák |first2=Libor |last3=Kojima |first3=Jun-Ichi |last4=Nguyen |first4=Lien T.P. |last5=Perrard |first5=Adrien |last6=Pickett |first6=Kurt M. |title=Taxonomic Notes on the Vespinae of Yunnan (Hymenoptera: Vespidae) |journal=American Museum Novitates |date=April 2011 |issue=3709 |pages=1–10 |doi=10.1206/3709.2|s2cid=85626082 |url=https://www.biodiversitylibrary.org/item/279602 }}</ref>
| genus = ''[[Vespula]]''
*''Vespula yichunensis''<ref>Chiu, Liang-Yi & Chen, Shu-Pei. (2014, September 24). Vespula rufa. Retrieved from http://www.discoverlife.org/mp/20q?search=Vespula+rufa</ref>
| subgenus =
| species = '''''V. rufa'''''
| binomial = ''Vespula rufa''
| binomial_authority = ([[Carl Linnaeus|Linnaeus]], [[10th edition of Systema Naturae|1758]])
| synonyms = *''[[Vespula intermedia]]''
*''[[Vespa schrenkii]]''
*''[[Vespa sibirica]]''
*''[[Vespa schrenki]]''
*''[[Vespula obscura]]''
*''[[Vespula yichunensis]]''<ref>Chiu, Liang-Yi & Chen, Shu-Pei. (2014, September 24). Vespula rufa. Retrieved from http://www.discoverlife.org/mp/20q?search=Vespula+rufa</ref>
}}
}}


'''''Vespula rufa''''', commonly known as the red wasp,<ref name= "Archer">Archer, M. E. (2001). Vespula rufa (Linnaeus,1758). Retrieved from: http://www.bwars.com/index.php?q=wasp/vespidae/vespinae/vespula-rufa</ref> is a social wasp species belonging to the ''[[Vespula]]'' genus. It is found in northern and central [[Europe]], parts of [[Asia]],<ref name= "Taxonomy">Archer, Michael E. (1997, July 31). TAXONOMY, DISTRIBUTION AND NESTING BIOLOGY OF THE SPECIES OF THE EURO-ASIAN VESPULA RUFA GROUP (HYM., VESPINAE). ENTOMOLOGISTS MONTHLY MAGAZINE, 133. Retrieved from: https://www.academia.edu/1463411/Archer_1997a_Taxonomy_distribution_and_nesting_biology_of_the_Euro-Asian_species_of_the_Vespula_rufa_group_Hymenoptera_Vespidae_</ref> and northern parts of [[North America]].<ref name= "Taxonomy" /> ''Vespula rufa'' is characterized by red-brown markings and body segmentation, with the appearance varying amongst the different roles of individuals in the species.<ref name= "Identification" /> These wasps build small nests in dry banks underground that are not far below the surface.<ref name= "Taxonomy"/> The colony cycle begins in the fall.<ref name= "Taxonomy" /> ''Vespula rufa'' feed on live insects.<ref name= "Vespinae"/> One interesting fact about ''Vespula rufa'' is that the queen policing occurs in the species, and that worker policing occurs at much lower rates than other species in the ''Vespula'' genus.<ref name="Test">Wenseleers, T., Badcock, N., S., Erven, K., Tofilski, A., Nascimento, F., S., Hart, A., G., Burke, T., A., Archer, M., E., & Ratnieks, F., L., W. (2005). A Test of Worker Policing Theory in an Advanced Eusocial Wasp, Vespula rufa. Evolution, 59 (6), 1306-1314. http://www.jstor.org/stable/344890</ref> There are [[predator]]s and [[parasites]] of the species. The species goes through a series of events before leaving the nest.
'''''Vespula rufa''''', commonly known as the '''red wasp''',<ref name= "Archer">Archer, M. E. (2001). Vespula rufa (Linnaeus,1758). Retrieved from: http://www.bwars.com/index.php?q=wasp/vespidae/vespinae/vespula-rufa</ref> is a social wasp species belonging to the genus ''[[Vespula]]''. It is found in northern and central [[Europe]] and parts of [[Asia]].<ref name= "Taxonomy">Archer, Michael E. (1997, July 31). TAXONOMY, DISTRIBUTION AND NESTING BIOLOGY OF THE SPECIES OF THE EURO-ASIAN VESPULA RUFA GROUP (HYM., VESPINAE). ENTOMOLOGISTS MONTHLY MAGAZINE, 133. Retrieved from: https://www.academia.edu/1463411/Archer_1997a_Taxonomy_distribution_and_nesting_biology_of_the_Euro-Asian_species_of_the_Vespula_rufa_group_Hymenoptera_Vespidae_</ref><ref name = "Kimsey & Carpenter"/> ''Vespula rufa'' is characterised by red-brown markings and body segmentation, with the appearance varying amongst the different roles of individuals in the species.<ref name= "Identification" /> These wasps build small nests in dry banks underground that are not far below the surface.<ref name= "Taxonomy"/> The colony cycle begins in the fall.<ref name= "Taxonomy" /> ''Vespula rufa'' feed on live insects.<ref name= "Vespinae"/> One interesting fact about ''Vespula rufa'' is that the queen policing occurs in the species, and that worker policing occurs at much lower rates than other species in the genus ''Vespula''.<ref name="Test">Wenseleers, T., Badcock, N., S., Erven, K., Tofilski, A., Nascimento, F., S., Hart, A., G., Burke, T., A., Archer, M., E., & Ratnieks, F., L., W. (2005). A Test of Worker Policing Theory in an Advanced Eusocial Wasp, Vespula rufa. Evolution, 59 (6), 1306-1314. https://www.jstor.org/stable/344890</ref> There are [[predator]]s and [[parasites]] of the species. The species goes through a series of events before leaving the nest.


==Taxonomy and phylogeny==
==Taxonomy and phylogeny==
''Vespula rufa'' is a member of the genus ''[[Vespula]]''.<ref name= "Test"/> Within the genus, this species is most closely related to ''[[Vespula squamosa]].''<ref name= "Test"/> Other species in the ''Vespula'' genus include ''[[Vespula germanica]]'', ''[[Vespula maculifrons]]'', and ''[[Vespula vulgaris]]''.<ref name= "Test"/> Outside of the genus, ''[[Dolichovespula]]'' is the next most closely related genus.<ref name= "Test"/> The northern red-banded [[yellowjacket]] was referred to as ''V. intermedia'' in North America.<ref name= "Taxonomy"/> This differs from typical Red Wasps, ''V. rufa,'' of the western [[Palearctic]] that have ivory rather than yellow markings.<ref name= "Taxonomy"/> Eastern Palaearctic populations also have ivory markings and this form has been called ''V. rufa schrenckii''.<ref name= "Taxonomy"/> Due to the variability of the brownish markings, which can be seen from specimens throughout its range, ''V. intermedia'' has become equivalent to ''V. rufa schrenckii''.<ref name= "Taxonomy"/> However, pale-marked populations also occur within the range of the ''V. rufa'' in Scandinavia and Central Asia.<ref name= "Vespinae">Kimsey, L. S. (2012). The Vespinae of North America (Vespidae, Hymenoptera). Journal of Hymenoptera research, 28, 51-53.</ref> There are various wasps within the ‘subspecies’ of ''V. rufa'', including ''[[Vespula acadica]]'', however they are now viewed as little more than color forms rather than formal taxa, and the species is regarded as monotypic.<ref name= "Taxonomy"/>
''Vespula rufa'' is a member of the genus ''[[Vespula]]''.<ref name= "Test"/> Within the genus, this species is most closely related to ''[[Vespula squamosa]].''<ref name= "Test"/> Other species in ''Vespula'' include ''[[Vespula germanica|V. germanica]]'', ''[[Vespula maculifrons|V. maculifrons]]'', and ''[[Vespula vulgaris|V. vulgaris]]''.<ref name= "Test"/> Outside of the genus, ''[[Dolichovespula]]'' is the next most closely related genus.<ref name= "Test"/> The northern red-banded [[yellowjacket]] was referred to as ''V. intermedia'' in North America.<ref name= "Taxonomy"/> This differs from typical Red Wasps, ''V. rufa,'' of the western [[Palearctic]] that have ivory rather than yellow markings.<ref name= "Taxonomy"/> Eastern Palaearctic populations also have ivory markings and this form has been called ''V. rufa schrenckii''.<ref name= "Taxonomy"/> Due to the variability of the brownish markings, which can be seen from specimens throughout its range, ''V. intermedia'' has become equivalent to ''V. rufa schrenckii''.<ref name= "Taxonomy"/> However, pale-marked populations also occur within the range of the ''V. rufa'' in Scandinavia and Central Asia.<ref name= "Vespinae">Kimsey, L. S. (2012). The Vespinae of North America (Vespidae, Hymenoptera). Journal of Hymenoptera research, 28, 51-53.</ref> There are various wasps within the ‘subspecies’ of ''V. rufa'', including ''[[Vespula acadica]]'', however they are now viewed as little more than colour forms rather than formal taxa, and the species is regarded as monotypic.<ref name= "Taxonomy"/>

More recently, it has been proposed that ''V. rufa'' is a Palearctic species and that the name ''[[Vespula intermedia]]'' be resurrected for the Nearctic species, this name was originally coined as ''V.r.'' var ''intermedia'' by [[Robert du Buysson]] in 1905.<ref name = "Kimsey & Carpenter">{{cite journal | author1 = Lynn S. Kimsey | author2 = James M. Carpenter | year = 2012 | title = The Vespinae of North America (Vespidae, Hymenoptera) | url = https://jhr.pensoft.net/articles.php?id=1606 | journal = Journal of Hymenoptera Research | volume = 28 | pages = 37–65 | doi=10.3897/jhr.28.3514| doi-access = free }}</ref>


[[Image:Vespula rufa Queen.jpg|250px|thumb|left|Red wasp queen on a log]]
[[Image:Vespula rufa Queen.jpg|250px|thumb|left|Red wasp queen on a log]]
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=== Morphology ===
=== Morphology ===
''V. rufa'' can be distinguished by its reddish-brown markings on the back.<ref name="Identification">Buck, Matthias, Marshall, Stephen, A., and Cheung, David, K.,B. (2008, February 18). Identification Atlas of the Vespidae (Hymenoptera, Aculeata) of the northeastern Nearctic region. Retrieved from http://www.biology.ualberta.ca/bsc/ejournal/bmc_05/95v_rufa.html</ref> Specimens of this species with reduced spots on the abdomen have tissue that is segmented into three parts and four “anteriorly directed lobes.” <ref name="Contribution">Duncan, Carl, D. (1939, February 1). A Contribution to the Biology of North American Vespine Wasps. Stanford University, California: Stanford University Press</ref> There are three main types of color patterns in the species.<ref name="Taxonomy" /> ''V. rufa'' lack the long, yellow lines that ''V. squamosa'' and ''V. sulphurea'' have.<ref name="Contribution" /> Workers and queens differ in their color patterns. While the basic color scheme appears to be the same in workers and queens, there are some slight differences. Workers have more expansive black color and less yellow or white than queens.<ref name="Contribution" /> That is, the queens have a greater display of yellow color than the workers.<ref name="Contribution" /> In the [[workers]], the yellow tissue of the abdominal segment is thin and triply divided, while the yellow tissue segments in the queen are larger.<ref name="Contribution" /> In queens lateral divisions become black spots.<ref name="Contribution" /> However, this is not always the case as often workers have divisions replaced by black spots, and queens occasionally have the less patterned appearance characteristic of workers.<ref name="Contribution" /> The differences in color pattern correspond to the size, with more colored workers being more likely to be large and less colored ones more likely to be small.<ref name="Contribution" /> Workers have the smallest fore wing length (10.0-11.0&nbsp;mm), followed by males (11.0-12.0&nbsp;mm), and females have the longest fore wings (12.5-13.0&nbsp;mm).<ref name="Identification" />
''V. rufa'' can be distinguished by its reddish-brown markings on the back.<ref name="Identification">Buck, Matthias, Marshall, Stephen, A., and Cheung, David, K.,B. (2008, February 18). Identification Atlas of the Vespidae (Hymenoptera, Aculeata) of the northeastern Nearctic region. Retrieved from http://www.biology.ualberta.ca/bsc/ejournal/bmc_05/95v_rufa.html</ref> Specimens of this species with reduced spots on the abdomen have tissue that is segmented into three parts and four “anteriorly directed lobes.” <ref name="Contribution">Duncan, Carl, D. (1939, February 1). A Contribution to the Biology of North American Vespine Wasps. Stanford University, California: Stanford University Press</ref> There are three main types of colour patterns in the species.<ref name="Taxonomy" /> ''V. rufa'' lack the long, yellow lines that ''V. squamosa'' and ''V. sulphurea'' have.<ref name="Contribution" /> Workers and queens differ in their colour patterns. While the basic colour scheme appears to be the same in workers and queens, there are some slight differences. Workers have more expansive black colour and less yellow or white than queens.<ref name="Contribution" /> That is, the queens have a greater display of yellow colour than the workers.<ref name="Contribution" /> In the workers, the yellow tissue of the abdominal segment is thin and triply divided, while the yellow tissue segments in the queen are larger.<ref name="Contribution" /> In queens lateral divisions become black spots.<ref name="Contribution" /> However, this is not always the case as often workers have divisions replaced by black spots, and queens occasionally have the less patterned appearance characteristic of workers.<ref name="Contribution" /> The differences in colour pattern correspond to the size, with more coloured workers being more likely to be large and less coloured ones more likely to be small.<ref name="Contribution" /> Workers have the smallest fore wing length (10.0-11.0&nbsp;mm), followed by males (11.0-12.0&nbsp;mm), and females have the longest fore wings (12.5-13.0&nbsp;mm).<ref name="Identification" />


=== Nests ===
=== Nests ===
Nests are typically composed “of one comb of small worker cells and up to three combs of larger cells used for rearing males and queens, surrounded by multiple layers of envelope”.<ref name="Test" /> The nests (investigated in Archer’s experiment) were small with a mean of 57 workers, as cited in “A Test of Worker Policing Theory in an Advanced [[Eusociality|Eusocial Wasp]], Vespula rufa.” <ref name="Test" /> However, mature colonies can have as many as 282 workers.<ref name="Test" /> The nests are generally found in dry banks underground but close to the surface.<ref name="Taxonomy" /> Subterranean nests have nest cavities just below the surface or just beneath the layer of moss.<ref name="Taxonomy" /> There are also nests that are positioned in the stumps of old, hollow trees, as well as nests that are hanging from the roots of trees.<ref name="Taxonomy" /> In a group of 19 subterranean nests the average depth of such nests was 2.9 centimeters.<ref name="Taxonomy" /> On rare occasions, aerial nests can be spotted in dense bushes.<ref name="Taxonomy" /> Aerial nests can exist "in a cavity ...or covered above." <ref name="Taxonomy" />
Nests are typically composed “of one comb of small worker cells and up to three combs of larger cells used for rearing males and queens, surrounded by multiple layers of envelope”.<ref name="Test" /> The nests (investigated in Archer’s experiment) were small with a mean of 57 workers, as cited in “A Test of Worker Policing Theory in an Advanced [[Eusociality|Eusocial Wasp]], Vespula rufa.” <ref name="Test" /> However, mature colonies can have as many as 282 workers.<ref name="Test" /> The nests are generally found in dry banks underground but close to the surface.<ref name="Taxonomy" /> Subterranean nests have nest cavities just below the surface or just beneath the layer of moss.<ref name="Taxonomy" /> There are also nests that are positioned in the stumps of old, hollow trees, as well as nests that are hanging from the roots of trees.<ref name="Taxonomy" /> In a group of 19 subterranean nests the average depth of such nests was 2.9 centimeters.<ref name="Taxonomy" /> On rare occasions, aerial nests can be spotted in dense bushes.<ref name="Taxonomy" /> Aerial nests can exist "in a cavity ...or covered above."<ref name="Taxonomy" />


[[Image:Vespula.rufa8.-.lindsey.jpg|250px|thumb|right|facial pattern]]
[[Image:Vespula.rufa8.-.lindsey.jpg|250px|thumb|right|facial pattern]]


==Distribution and habitat==
==Distribution and habitat==
''V. rufa'' can be found in the “[[Palearctic]]” and in the northern parts of North America.<ref name= "Taxonomy"/><ref name= "Vespinae"/> Examples of locations with ''V. rufa'' include [[England]], [[Ireland]], the [[Netherlands]], [[Russia]], [[Turkey]], [[Mongolia]], and [[China]].<ref name= "Taxonomy"/> In general, this species builds its nests below ground, often in cavities or along the underside of a roof.<ref name= "Vespinae"/> ''V. rufa'' nests are generally found underground near the surface of dry banks.<ref name= "Taxonomy"/> Nests are made using mineral soil and leaf litter in a shaded environment.<ref name= "Taxonomy"/> Old tree remains and tree roots can also be utilized to make nests.<ref name= "Taxonomy"/> ''V. rufa'' is a common wasp species.
''V. rufa'' can be found in the “[[Palearctic]]” and in the northern parts of North America.<ref name= "Taxonomy"/><ref name= "Vespinae"/> Examples of locations with ''V. rufa'' include [[England]], [[Ireland]], the [[Netherlands]], [[Russia]], [[Turkey]], [[Mongolia]], and [[China]].<ref name= "Taxonomy"/> In general, this species builds its nests below ground, often in cavities or along the underside of a roof.<ref name= "Vespinae"/> ''V. rufa'' nests are generally found underground near the surface of dry banks.<ref name= "Taxonomy"/> Nests are made using mineral soil and leaf litter in a shaded environment.<ref name= "Taxonomy"/> Old tree remains and tree roots can also be utilised to make nests.<ref name= "Taxonomy"/> ''V. rufa'' is a common wasp species.


==Colony cycle==
==Colony cycle==
The lifecycle of a ''V. rufa'' colony begins in the fall as queens "leave their home colony and, after fertilization, enter over-wintering sites.<ref name= "Taxonomy"/> In early spring the queens emerge from [[hibernation]] to look for a nesting cavity. The nest is usually constructed underground in an abandoned rodent [[burrow]] or similar cavity, more rarely in cavities above ground (hollow stumps, wall cavities, and bird boxes), under moss, in dense bushes, under eaves of houses or in attics.<ref name= "Taxonomy"/> The queen commences the process by building the "queen nest" and helping to raise the first workers, such that these workers can begin to [[forage]], engage in "nest-building and brood rearing activities," rather than the queen.<ref name= "Taxonomy"/> In the meantime, the queen can lay eggs.<ref name= "Taxonomy"/> The queens and workers overlap in foraging for at least two days in "one colony and three days in another."<ref name= "Taxonomy"/> The burden of feeding the larvae and enlarging the nest is on the workers. Colony expansion continue rapidly, with thousands of workers being produced in a large nest in approximately a 9-week period.<ref name= "Edwards">Edwards, Robin. (1980). Social Wasps: Their Biology and Control. W. Sussex, Great Britain: Rentokil Limited.</ref> Eggs that are laid in the cells hatch to become larvae.<ref name= "Taxonomy"/> When the last larval stage is near its end, "the gut contents are evacuated to form the [[meconium]] at the bottom of the cell." <ref name= "Taxonomy"/> The larva spins a cocoon, thereby entering the pupal stage.<ref name= "Taxonomy"/>
The lifecycle of a ''V. rufa'' colony begins in the fall as queens leave their home colony and, after fertilization, enter over-wintering sites.<ref name= "Taxonomy"/> In early spring the queens emerge from [[hibernation]] to look for a nesting cavity. The nest is usually constructed underground in an abandoned rodent [[burrow]] or similar cavity, more rarely in cavities above ground (hollow stumps, wall cavities, and bird boxes), under moss, in dense bushes, under eaves of houses or in attics.<ref name= "Taxonomy"/> The queen commences the process by building the "queen nest" and raising the first workers, such that these workers can begin to [[forage]], engage in "nest-building and brood rearing activities," rather than the queen.<ref name= "Taxonomy"/> In the meantime, the queen can lay eggs.<ref name= "Taxonomy"/> The queens and workers overlap in foraging for at least two days in "one colony and three days in another."<ref name= "Taxonomy"/> The burden of feeding the larvae and enlarging the nest is on the workers. Colony expansion continue rapidly, with thousands of workers being produced in a large nest in approximately a 9-week period.<ref name= "Edwards">Edwards, Robin. (1980). Social Wasps: Their Biology and Control. W. Sussex, Great Britain: Rentokil Limited.</ref> Eggs, that are laid in the cells, hatch to become larvae.<ref name= "Taxonomy"/> When the last larval stage is near its end, "the gut contents are evacuated to form the [[meconium]] at the bottom of the cell."<ref name= "Taxonomy"/> The larva spins a cocoon, thereby entering the pupal stage.<ref name= "Taxonomy"/>


Workers and the majority of males are reared in the first cells, which are small with a diameter for approximately 4&nbsp;mm.<ref name= "Taxonomy"/> Large cells of about 6&nbsp;mm in diameter are constructed later in the season and queens and a few males are reared in these cells.<ref name= "Taxonomy"/> Because queens and males, but not workers, were observed in a few frigid regions, Birula asserts that workers are not reared in extremely cold areas and that only queens and males are reared in such environments.<ref name= "Taxonomy"/> Once the new males and queens leave the colony, workers slowly die out and they colony ceases to exist.<ref name= "Taxonomy"/> Founded in spring and dying out in August, nests have a short annual cycle.<ref name= "Test"/>
Workers and the majority of males are reared in the first cells, which are small with a diameter for approximately 4&nbsp;mm.<ref name= "Taxonomy"/> Large cells of about 6&nbsp;mm in diameter are constructed later in the season and queens and a few males are reared in these cells.<ref name= "Taxonomy"/> Because queens and males, but not workers, were observed in a few frigid regions, Birula asserts that workers are not reared in extremely cold areas and that only queens and males are reared in such environments.<ref name= "Taxonomy"/> Once the new males and queens leave the colony, workers slowly die out and the colony ceases to exist.<ref name= "Taxonomy"/> Founded in spring and dying out in August, nests have a short annual cycle.<ref name= "Test"/>


The nest of the Red Wasp is relatively small with a diameter which rarely exceeds 20&nbsp;cm. It is made from paper produced by chewing old and weathered, but dry wood.<ref name= "Edwards"/>
The nest of the Red Wasp is relatively small with a diameter which rarely exceeds 20&nbsp;cm. It is made from paper produced by chewing old and weathered, but dry wood.<ref name= "Edwards"/>


==Worker-queen conflict ==
==Worker-queen conflict ==
It is common for a conflict to exist between individuals in social groups as they often have different goals, which spurs conflict.<ref name= "Test"/> Through evolution, mechanisms to encourage group effectiveness and minimize individual's selfish interests have evolved.<ref name= "Test"/> [[worker policing|Social policing]] is an important example in which "mutual enforcement limits the success of selfish individuals." <ref name= "Test"/> Differences in objectives for queens and bees can be attributed to differences in relatedness between queens, bees, and their offspring. Worker policing is a consequence of the differences in relatedness.
It is common for a conflict to exist between individuals in social groups as they often have different goals, which spurs conflict.<ref name= "Test"/> Through evolution, mechanisms to encourage group effectiveness and minimise individual's selfish interests have evolved.<ref name= "Test"/> [[worker policing|Social policing]] is an important example in which "mutual enforcement limits the success of selfish individuals."<ref name= "Test"/> Differences in objectives for queens and workers bees can be attributed to differences in relatedness between them. Worker policing is a consequence of this difference.


=== Differences in relatedness ===
=== Differences in relatedness ===
Although workers are generally unable to mate, they have functional ovaries that allow them to lay eggs. Because these eggs are not fertilized, they would become male wasps. Workers would want to produce such wasps as they would be more closely related to their own sons than to their mothers' sons, or brothers. However, it is not in the queens best interest for workers to produce offspring. This is because a queen would be more closely related to her own offspring (r=1/2) than to her offsprings' sons (r=1/4). When the queen mates with many males, workers are more closely related to their brothers (queens' sons) since r=0.25, than to the sons of other workers since r<0.25 for half-nephews and nephews). The differences in relatedness of offspring between workers and queens represents a conflict of interest between workers and queens, as both workers and queens want to maximize the survival of the offspring more closely related to themselves, according to the selfish gene perspective.<ref name= "Test"/>
Although workers are generally unable to mate, they have functional ovaries that allow them to lay eggs. Because these eggs are not fertilised, they would become male wasps. Workers would want to produce such wasps as they would be more closely related to their own sons than to their mothers' sons, or brothers. However, it is not in the queens best interest for workers to produce offspring. This is because a queen would be more closely related to her own offspring (r=1/2) than to her offspring's sons (r=1/4). When the queen mates with many males, workers are more closely related to their brothers (queens' sons) since r=0.25, than to the sons of other workers since r<0.25 for half-nephews and nephews). The differences in relatedness of offspring between workers and queens represents a conflict of interest between workers and queens, as both workers and queens want to maximise the survival of the offspring more closely related to themselves, according to the selfish gene perspective.<ref name= "Test"/>


=== Worker Policing ===
=== Worker Policing ===
With regard to conflict over who bears males, policing refers to the process in which individual workers are precluded from reproducing. Policing can be carried out by the queen or by workers. Two different approaches can be taken to achieve policing: worker-laid eggs can be eliminated or reproductive workers can be treated aggressively. According to kin selection theory, queens should carry out policing because queens are closer relatives to their own sons than to their workers' sons - that is their daughters' sons. When queens mate with multiple males, workers should police because workers are generally closer relatives of the queen's sons than to the workers' sons. ''Vespula rufa'' has much lower rates of worker policing than other species in its genus. Moreover, the queen polices a substantial percentage of worker-laid eggs in the species.<ref name= "Test"/>
With regard to conflict over who bears males, policing refers to the process in which individual workers are precluded from reproducing. Policing can be carried out by the queen or by workers. Two different approaches can be taken to achieve policing: worker-laid eggs can be eliminated or reproductive workers can be treated aggressively. According to kin selection theory, queens should carry out policing because queens are closer relatives to their own sons than to their workers' sons - that is their daughters' sons. When queens mate with multiple males, workers should police because workers are generally closer relatives of the queen's sons than to the workers' sons. ''Vespula rufa'' has much lower rates of worker policing than other species in its genus. Moreover, the queen polices a substantial percentage of worker-laid eggs in the species.<ref name= "Test"/>


== Interactions with other species==
== Interactions with other species==
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=== Parasites ===
=== Parasites ===


Parasites of ''Vespula rufa'' include the beetle ''Metoecus paradoxus'' (a larval [[parasitoid]] and the fly ''Conops flavipes'' (an [[endoparasite]]).<ref name= "Archer"/> The larvae of ''[[Volucella pellucens]]'' (a hoverfly) act as scavengers.<ref name= "Archer"/> [[Vespula austriaca]] is an obligate social parasite on ''V. rufa'' in Europe and Asia." <ref name= "Taxonomy"/> Because of its parasitic behavior, ''V. austriaca'' does not produce workers, but relies on the host workers for rearing.<ref name= "Taxonomy"/> The queen of "V. austriaca" invades the ''V. rufa'' host colony, and drives away the ''V. rufa'' queen.<ref name= "Taxonomy"/>
Parasites of ''Vespula rufa'' include the beetle ''Metoecus paradoxus'' (a larval [[parasitoid]] and the fly ''Conops flavipes'' (an [[endoparasite]]).<ref name= "Archer"/> The larvae of ''[[Volucella pellucens]]'' (a hoverfly) act as scavengers.<ref name= "Archer"/> [[Vespula austriaca]] is an obligate social parasite on ''V. rufa'' in Europe and Asia."<ref name= "Taxonomy"/> Because of its parasitic behaviour, ''V. austriaca'' does not produce workers, but relies on the host workers for rearing.<ref name= "Taxonomy"/> The queen of ''V. austriaca'' invades the ''V. rufa'' host colony, and drives away the ''V. rufa'' queen.<ref name= "Taxonomy"/>


=== Predators ===
=== Predators ===
Line 69: Line 63:


== Leaving the nest ==
== Leaving the nest ==
There are many factors affecting whether worker wasps will leave the nest. Important considerations include temperature, light intensity, and the existence of other wasps. Relative humidity and atmospheric pressure do not affect ''V. rufa'''s decision of whether or not to leave the nest. Orientation flights occur so that ''V. rufa'' can familiarize themselves with the entrance to their nest and recognize it when they return. By removing roadblocks, V. rufa would be able to enter and exit more smoothly.<ref name= "Edwards"/>
There are many factors affecting whether worker wasps will leave the nest. Important considerations include temperature, light intensity, and the existence of other wasps. Relative humidity and atmospheric pressure do not affect ''V. rufa'''s decision of whether or not to leave the nest. Orientation flights occur so that ''V. rufa'' can familiarise themselves with the entrance to their nest and recognise it when they return. By removing roadblocks, V. rufa would be able to enter and exit more smoothly.<ref name= "Edwards"/>


=== Light intensity ===
=== Light intensity ===


The amount of light present in the morning or evening is most critical element affecting wasp movement. In the evening, light intensity plays a key role in determining the time that the last movements to and from the nest occur. For ''V. rufa'', the minimum value for sorties to leave the nest in the morning is 4.0 lux or 0.37 ft cs. The amount of light required for the last sorties to return to the nest" is 37 and 6.0 lux, which is eye length 2.45 mm).<ref name= "Edwards"/>
The amount of light present in the morning or evening is most critical element affecting wasp movement. In the evening, light intensity plays a key role in determining the time that the last movements to and from the nest occur. For ''V. rufa'', the minimum value for sorties to leave the nest in the morning is 4.0 lux or 0.37 ft cs. The amount of light required for the last sorties to return to the nest is 6.0 lux or 0.56 ft cs. The level is related to the compound eye length, 2.4 mm in this species. For comparison ''[[Vespa crabro]]'' (the European Hornet) has a much larger body and thus a greater eye length of 3.7mm enabling it to forage in moonlight at 0.2 lux. <ref name= "Edwards"/><ref>{{Cite journal|last1=Kelber|first1=Almut|last2=Jonsson|first2=Fredrik|last3=Wallén|first3=Rita|last4=Warrant|first4=Eric|last5=Kornfeldt|first5=Torill|last6=Baird|first6=Emily|date=2011-07-12|title=Hornets Can Fly at Night without Obvious Adaptations of Eyes and Ocelli|journal=PLOS ONE|language=en|volume=6|issue=7|pages=e21892|doi=10.1371/journal.pone.0021892|issn=1932-6203|pmc=3134451|pmid=21765923|doi-access=free|bibcode=2011PLoSO...621892K }}</ref>


=== Temperature ===
=== Temperature ===
Line 81: Line 75:
=== Presence of other wasps ===
=== Presence of other wasps ===


Whether there is another wasp present at the exit to the nest will affect ''V. rufa'' decision about leaving the nest. For ''V. rufa,'' "five wasps must be present to act as a 'releaser' for foraging." <ref name= "Edwards"/> Only when there are insufficient insects in the nest entrance can wasps passing in the opposite direction serve as releasers.<ref name= "Edwards"/> This phenomenon of "social facilitation" means that ''V. rufa'' leave nests in clusters rather than in a continuous trickle. The releaser behavior pattern of ''V. rufa'' is more readily noticeable than that of other British species.<ref name= "Edwards"/>
Whether there is another wasp present at the exit to the nest will affect ''V. rufa'' decision about leaving the nest. For ''V. rufa,'' "five wasps must be present to act as a 'releaser' for foraging."<ref name= "Edwards"/> Only when there are insufficient insects in the nest entrance can wasps passing in the opposite direction serve as releasers.<ref name= "Edwards"/> This phenomenon of "social facilitation" means that ''V. rufa'' leave nests in clusters rather than in a continuous trickle. The releaser behaviour pattern of ''V. rufa'' is more readily noticeable than that of other British species.<ref name= "Edwards"/>


=== Orientation flights ===
=== Orientation flights ===


When a young worker leaves the nest for the first time, it will generally make 2 to 3 'orientation flights' in order to familiarize itself with the entrance to the colony amidst the surrounding landscape. In the first flight, the worker flies approximately 25&nbsp;cm out of the nest at once and then quickly turns around to face the entrance. The wasp slowly flies back and forth to the nest several times, surveying an angle that is approximately 90 degrees, while facing the entrance. Then, the wasp promptly returns to the nest, the whole flight lasting only about one minute or less. Soon after returning from the first flight, the wasp will leave the nest in a similar fashion, but this time ventures out approximately 15 to 20 meters and covers an angle of approximately 280 degrees. Once 2 meters away, ''V. rufa'' will fly back and forth repeatedly in a figure-eight pattern, while facing the entrance to the nest. In some cases, after this second flight the wasp will have gathered all of the knowledge necessary to fly off. Other wasps must make a third orientation flight that is like the second one. At first, the worker may miss the entrance to the nest many times; however, after six to twelve trips, the wasp gains its bearings; flights become longer, and reentry into the colony becomes more precise.<ref name= "Edwards"/>
When a young worker leaves the nest for the first time, it will generally make 2 to 3 'orientation flights' in order to familiarise itself with the entrance to the colony amidst the surrounding landscape. In the first flight, the worker flies approximately 25&nbsp;cm out of the nest at once and then quickly turns around to face the entrance. The wasp slowly flies back and forth to the nest several times, surveying an angle that is approximately 90 degrees, while facing the entrance. Then, the wasp promptly returns to the nest, the whole flight lasting only about one minute or less. Soon after returning from the first flight, the wasp will leave the nest in a similar fashion, but this time ventures out approximately 15 to 20 meters and covers an angle of approximately 280 degrees. Once 2 meters away, ''V. rufa'' will fly back and forth repeatedly in a figure-eight pattern, while facing the entrance to the nest. In some cases, after this second flight the wasp will have gathered all of the knowledge necessary to fly off. Other wasps must make a third orientation flight that is like the second one. At first, the worker may miss the entrance to the nest many times; however, after six to twelve trips, the wasp gains its bearings; flights become longer, and reentry into the colony becomes more precise.<ref name= "Edwards"/>


==References==
==References==
Line 92: Line 86:


}}
}}

{{Taxonbar|from=Q2143652}}


[[Category:Insects described in 1758]]
[[Category:Insects described in 1758]]
[[Category:Vespidae]]
[[Category:Vespidae]]
[[Category:Hymenoptera of Europe]]
[[Category:Hymenoptera of Europe]]
[[Category:Taxa named by Carl Linnaeus]]

Latest revision as of 01:56, 23 October 2024

Vespula rufa
On Bupleurum falcatum flowers
Scientific classification Edit this classification
Domain: Eukaryota
Kingdom: Animalia
Phylum: Arthropoda
Class: Insecta
Order: Hymenoptera
Family: Vespidae
Genus: Vespula
Species:
V. rufa
Binomial name
Vespula rufa
Synonyms
  • Vespula intermedia
  • Vespa schrenckii
  • Vespa sibirica
  • Vespula obscura
  • Vespula gongshanensis Dong[1]
  • Vespula yichunensis[2]

Vespula rufa, commonly known as the red wasp,[3] is a social wasp species belonging to the genus Vespula. It is found in northern and central Europe and parts of Asia.[4][5] Vespula rufa is characterised by red-brown markings and body segmentation, with the appearance varying amongst the different roles of individuals in the species.[6] These wasps build small nests in dry banks underground that are not far below the surface.[4] The colony cycle begins in the fall.[4] Vespula rufa feed on live insects.[7] One interesting fact about Vespula rufa is that the queen policing occurs in the species, and that worker policing occurs at much lower rates than other species in the genus Vespula.[8] There are predators and parasites of the species. The species goes through a series of events before leaving the nest.

Taxonomy and phylogeny

[edit]

Vespula rufa is a member of the genus Vespula.[8] Within the genus, this species is most closely related to Vespula squamosa.[8] Other species in Vespula include V. germanica, V. maculifrons, and V. vulgaris.[8] Outside of the genus, Dolichovespula is the next most closely related genus.[8] The northern red-banded yellowjacket was referred to as V. intermedia in North America.[4] This differs from typical Red Wasps, V. rufa, of the western Palearctic that have ivory rather than yellow markings.[4] Eastern Palaearctic populations also have ivory markings and this form has been called V. rufa schrenckii.[4] Due to the variability of the brownish markings, which can be seen from specimens throughout its range, V. intermedia has become equivalent to V. rufa schrenckii.[4] However, pale-marked populations also occur within the range of the V. rufa in Scandinavia and Central Asia.[7] There are various wasps within the ‘subspecies’ of V. rufa, including Vespula acadica, however they are now viewed as little more than colour forms rather than formal taxa, and the species is regarded as monotypic.[4]

More recently, it has been proposed that V. rufa is a Palearctic species and that the name Vespula intermedia be resurrected for the Nearctic species, this name was originally coined as V.r. var intermedia by Robert du Buysson in 1905.[5]

Red wasp queen on a log

Description and identification

[edit]

Morphology

[edit]

V. rufa can be distinguished by its reddish-brown markings on the back.[6] Specimens of this species with reduced spots on the abdomen have tissue that is segmented into three parts and four “anteriorly directed lobes.” [9] There are three main types of colour patterns in the species.[4] V. rufa lack the long, yellow lines that V. squamosa and V. sulphurea have.[9] Workers and queens differ in their colour patterns. While the basic colour scheme appears to be the same in workers and queens, there are some slight differences. Workers have more expansive black colour and less yellow or white than queens.[9] That is, the queens have a greater display of yellow colour than the workers.[9] In the workers, the yellow tissue of the abdominal segment is thin and triply divided, while the yellow tissue segments in the queen are larger.[9] In queens lateral divisions become black spots.[9] However, this is not always the case as often workers have divisions replaced by black spots, and queens occasionally have the less patterned appearance characteristic of workers.[9] The differences in colour pattern correspond to the size, with more coloured workers being more likely to be large and less coloured ones more likely to be small.[9] Workers have the smallest fore wing length (10.0-11.0 mm), followed by males (11.0-12.0 mm), and females have the longest fore wings (12.5-13.0 mm).[6]

Nests

[edit]

Nests are typically composed “of one comb of small worker cells and up to three combs of larger cells used for rearing males and queens, surrounded by multiple layers of envelope”.[8] The nests (investigated in Archer’s experiment) were small with a mean of 57 workers, as cited in “A Test of Worker Policing Theory in an Advanced Eusocial Wasp, Vespula rufa.” [8] However, mature colonies can have as many as 282 workers.[8] The nests are generally found in dry banks underground but close to the surface.[4] Subterranean nests have nest cavities just below the surface or just beneath the layer of moss.[4] There are also nests that are positioned in the stumps of old, hollow trees, as well as nests that are hanging from the roots of trees.[4] In a group of 19 subterranean nests the average depth of such nests was 2.9 centimeters.[4] On rare occasions, aerial nests can be spotted in dense bushes.[4] Aerial nests can exist "in a cavity ...or covered above."[4]

facial pattern

Distribution and habitat

[edit]

V. rufa can be found in the “Palearctic” and in the northern parts of North America.[4][7] Examples of locations with V. rufa include England, Ireland, the Netherlands, Russia, Turkey, Mongolia, and China.[4] In general, this species builds its nests below ground, often in cavities or along the underside of a roof.[7] V. rufa nests are generally found underground near the surface of dry banks.[4] Nests are made using mineral soil and leaf litter in a shaded environment.[4] Old tree remains and tree roots can also be utilised to make nests.[4] V. rufa is a common wasp species.

Colony cycle

[edit]

The lifecycle of a V. rufa colony begins in the fall as queens leave their home colony and, after fertilization, enter over-wintering sites.[4] In early spring the queens emerge from hibernation to look for a nesting cavity. The nest is usually constructed underground in an abandoned rodent burrow or similar cavity, more rarely in cavities above ground (hollow stumps, wall cavities, and bird boxes), under moss, in dense bushes, under eaves of houses or in attics.[4] The queen commences the process by building the "queen nest" and raising the first workers, such that these workers can begin to forage, engage in "nest-building and brood rearing activities," rather than the queen.[4] In the meantime, the queen can lay eggs.[4] The queens and workers overlap in foraging for at least two days in "one colony and three days in another."[4] The burden of feeding the larvae and enlarging the nest is on the workers. Colony expansion continue rapidly, with thousands of workers being produced in a large nest in approximately a 9-week period.[10] Eggs, that are laid in the cells, hatch to become larvae.[4] When the last larval stage is near its end, "the gut contents are evacuated to form the meconium at the bottom of the cell."[4] The larva spins a cocoon, thereby entering the pupal stage.[4]

Workers and the majority of males are reared in the first cells, which are small with a diameter for approximately 4 mm.[4] Large cells of about 6 mm in diameter are constructed later in the season and queens and a few males are reared in these cells.[4] Because queens and males, but not workers, were observed in a few frigid regions, Birula asserts that workers are not reared in extremely cold areas and that only queens and males are reared in such environments.[4] Once the new males and queens leave the colony, workers slowly die out and the colony ceases to exist.[4] Founded in spring and dying out in August, nests have a short annual cycle.[8]

The nest of the Red Wasp is relatively small with a diameter which rarely exceeds 20 cm. It is made from paper produced by chewing old and weathered, but dry wood.[10]

Worker-queen conflict

[edit]

It is common for a conflict to exist between individuals in social groups as they often have different goals, which spurs conflict.[8] Through evolution, mechanisms to encourage group effectiveness and minimise individual's selfish interests have evolved.[8] Social policing is an important example in which "mutual enforcement limits the success of selfish individuals."[8] Differences in objectives for queens and workers bees can be attributed to differences in relatedness between them. Worker policing is a consequence of this difference.

Differences in relatedness

[edit]

Although workers are generally unable to mate, they have functional ovaries that allow them to lay eggs. Because these eggs are not fertilised, they would become male wasps. Workers would want to produce such wasps as they would be more closely related to their own sons than to their mothers' sons, or brothers. However, it is not in the queens best interest for workers to produce offspring. This is because a queen would be more closely related to her own offspring (r=1/2) than to her offspring's sons (r=1/4). When the queen mates with many males, workers are more closely related to their brothers (queens' sons) since r=0.25, than to the sons of other workers since r<0.25 for half-nephews and nephews). The differences in relatedness of offspring between workers and queens represents a conflict of interest between workers and queens, as both workers and queens want to maximise the survival of the offspring more closely related to themselves, according to the selfish gene perspective.[8]

Worker Policing

[edit]

With regard to conflict over who bears males, policing refers to the process in which individual workers are precluded from reproducing. Policing can be carried out by the queen or by workers. Two different approaches can be taken to achieve policing: worker-laid eggs can be eliminated or reproductive workers can be treated aggressively. According to kin selection theory, queens should carry out policing because queens are closer relatives to their own sons than to their workers' sons - that is their daughters' sons. When queens mate with multiple males, workers should police because workers are generally closer relatives of the queen's sons than to the workers' sons. Vespula rufa has much lower rates of worker policing than other species in its genus. Moreover, the queen polices a substantial percentage of worker-laid eggs in the species.[8]

Interactions with other species

[edit]

Parasites

[edit]

Parasites of Vespula rufa include the beetle Metoecus paradoxus (a larval parasitoid and the fly Conops flavipes (an endoparasite).[3] The larvae of Volucella pellucens (a hoverfly) act as scavengers.[3] Vespula austriaca is an obligate social parasite on V. rufa in Europe and Asia."[4] Because of its parasitic behaviour, V. austriaca does not produce workers, but relies on the host workers for rearing.[4] The queen of V. austriaca invades the V. rufa host colony, and drives away the V. rufa queen.[4]

Predators

[edit]

Badgers (Meles meles) destroy Vespula rufa nests, consuming the occupants, combs, and envelope.[10] The wasps stings don't threaten badgers as thick skin and body hair protect them from stings.[10] Great tits (Parus major) are also predators of V. rufa, digging their nests out of cavities.[10] The larvae of Volucella pellucens (a hoverfly) act as scavengers.[3]

Leaving the nest

[edit]

There are many factors affecting whether worker wasps will leave the nest. Important considerations include temperature, light intensity, and the existence of other wasps. Relative humidity and atmospheric pressure do not affect V. rufa's decision of whether or not to leave the nest. Orientation flights occur so that V. rufa can familiarise themselves with the entrance to their nest and recognise it when they return. By removing roadblocks, V. rufa would be able to enter and exit more smoothly.[10]

Light intensity

[edit]

The amount of light present in the morning or evening is most critical element affecting wasp movement. In the evening, light intensity plays a key role in determining the time that the last movements to and from the nest occur. For V. rufa, the minimum value for sorties to leave the nest in the morning is 4.0 lux or 0.37 ft cs. The amount of light required for the last sorties to return to the nest is 6.0 lux or 0.56 ft cs. The level is related to the compound eye length, 2.4 mm in this species. For comparison Vespa crabro (the European Hornet) has a much larger body and thus a greater eye length of 3.7mm enabling it to forage in moonlight at 0.2 lux. [10][11]

Temperature

[edit]

If the temperature is too low, then wasps will not leave the nest. There has not been sufficient research on this topic, but the current research suggests very different temperatures for different species.[10]

Presence of other wasps

[edit]

Whether there is another wasp present at the exit to the nest will affect V. rufa decision about leaving the nest. For V. rufa, "five wasps must be present to act as a 'releaser' for foraging."[10] Only when there are insufficient insects in the nest entrance can wasps passing in the opposite direction serve as releasers.[10] This phenomenon of "social facilitation" means that V. rufa leave nests in clusters rather than in a continuous trickle. The releaser behaviour pattern of V. rufa is more readily noticeable than that of other British species.[10]

Orientation flights

[edit]

When a young worker leaves the nest for the first time, it will generally make 2 to 3 'orientation flights' in order to familiarise itself with the entrance to the colony amidst the surrounding landscape. In the first flight, the worker flies approximately 25 cm out of the nest at once and then quickly turns around to face the entrance. The wasp slowly flies back and forth to the nest several times, surveying an angle that is approximately 90 degrees, while facing the entrance. Then, the wasp promptly returns to the nest, the whole flight lasting only about one minute or less. Soon after returning from the first flight, the wasp will leave the nest in a similar fashion, but this time ventures out approximately 15 to 20 meters and covers an angle of approximately 280 degrees. Once 2 meters away, V. rufa will fly back and forth repeatedly in a figure-eight pattern, while facing the entrance to the nest. In some cases, after this second flight the wasp will have gathered all of the knowledge necessary to fly off. Other wasps must make a third orientation flight that is like the second one. At first, the worker may miss the entrance to the nest many times; however, after six to twelve trips, the wasp gains its bearings; flights become longer, and reentry into the colony becomes more precise.[10]

References

[edit]
  1. ^ Carpenter, James M.; Dvořák, Libor; Kojima, Jun-Ichi; Nguyen, Lien T.P.; Perrard, Adrien; Pickett, Kurt M. (April 2011). "Taxonomic Notes on the Vespinae of Yunnan (Hymenoptera: Vespidae)". American Museum Novitates (3709): 1–10. doi:10.1206/3709.2. S2CID 85626082.
  2. ^ Chiu, Liang-Yi & Chen, Shu-Pei. (2014, September 24). Vespula rufa. Retrieved from http://www.discoverlife.org/mp/20q?search=Vespula+rufa
  3. ^ a b c d Archer, M. E. (2001). Vespula rufa (Linnaeus,1758). Retrieved from: http://www.bwars.com/index.php?q=wasp/vespidae/vespinae/vespula-rufa
  4. ^ a b c d e f g h i j k l m n o p q r s t u v w x y z aa ab ac ad ae af ag ah ai Archer, Michael E. (1997, July 31). TAXONOMY, DISTRIBUTION AND NESTING BIOLOGY OF THE SPECIES OF THE EURO-ASIAN VESPULA RUFA GROUP (HYM., VESPINAE). ENTOMOLOGISTS MONTHLY MAGAZINE, 133. Retrieved from: https://www.academia.edu/1463411/Archer_1997a_Taxonomy_distribution_and_nesting_biology_of_the_Euro-Asian_species_of_the_Vespula_rufa_group_Hymenoptera_Vespidae_
  5. ^ a b Lynn S. Kimsey; James M. Carpenter (2012). "The Vespinae of North America (Vespidae, Hymenoptera)". Journal of Hymenoptera Research. 28: 37–65. doi:10.3897/jhr.28.3514.
  6. ^ a b c Buck, Matthias, Marshall, Stephen, A., and Cheung, David, K.,B. (2008, February 18). Identification Atlas of the Vespidae (Hymenoptera, Aculeata) of the northeastern Nearctic region. Retrieved from http://www.biology.ualberta.ca/bsc/ejournal/bmc_05/95v_rufa.html
  7. ^ a b c d Kimsey, L. S. (2012). The Vespinae of North America (Vespidae, Hymenoptera). Journal of Hymenoptera research, 28, 51-53.
  8. ^ a b c d e f g h i j k l m n Wenseleers, T., Badcock, N., S., Erven, K., Tofilski, A., Nascimento, F., S., Hart, A., G., Burke, T., A., Archer, M., E., & Ratnieks, F., L., W. (2005). A Test of Worker Policing Theory in an Advanced Eusocial Wasp, Vespula rufa. Evolution, 59 (6), 1306-1314. https://www.jstor.org/stable/344890
  9. ^ a b c d e f g h Duncan, Carl, D. (1939, February 1). A Contribution to the Biology of North American Vespine Wasps. Stanford University, California: Stanford University Press
  10. ^ a b c d e f g h i j k l Edwards, Robin. (1980). Social Wasps: Their Biology and Control. W. Sussex, Great Britain: Rentokil Limited.
  11. ^ Kelber, Almut; Jonsson, Fredrik; Wallén, Rita; Warrant, Eric; Kornfeldt, Torill; Baird, Emily (2011-07-12). "Hornets Can Fly at Night without Obvious Adaptations of Eyes and Ocelli". PLOS ONE. 6 (7): e21892. Bibcode:2011PLoSO...621892K. doi:10.1371/journal.pone.0021892. ISSN 1932-6203. PMC 3134451. PMID 21765923.