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Liran Carmel

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Liran Carmel
לירן כרמל
BornAugust 7, 1971 (1971-08-07) (age 53)
NationalityIsraeli
Alma materTel-Aviv University, The Technion - Israel Institute of Technology, the Weizmann Institute of Science
Known forResearch in molecular evolution, human evolution, molecular history and ancient DNA.
AwardsMassry Prize (2021), Snyder Granadar chair in Genetics
Scientific career
FieldsMolecular evolution
InstitutionsHebrew University of Jerusalem
Websitecarmelab.huji.ac.il

Liran Carmel (Hebrew: לירן כרמל, born August 7, 1971) is an Israeli scientist, professor of computational biology at the Alexander Silberman Institute of Life Sciences, the Hebrew University of Jerusalem. Carmel is the Snyder Granadar Chair for Genetics, and is the 2021 Massry Prize laureate for his studies in the field of ancient DNA.

Biography

Carmel was born and raised in Israel. He studied for a B.Sc. in physics in the Academic Atuda, and served in the military as a physicist in Rafael Advanced Defense Systems Ltd. During his military service, he obtained his M.Sc. degree in quantum mechanics at the Technion - Israel institute of technology, under the supervision of Ady Mann. After his military service, Carmel completed his Ph.D. degree in mathematics and computer science at the Weizmann Institute of Science, under the supervision of David Harel. In his Ph.D. Carmel developed algorithms for odor coding and digitization, and was head of the algorithms team in a company that developed means for computerized odor transmission. In 2004, Carmel went to the United States for postdoctoral studies at the National Institutes of Health (NIH) in Bethesda, Maryland, where he specialized in molecular evolution in the research group of Eugene Koonin.

Carmel returned to Israel in 2008, and established a computational biology research group at the department of Genetics, the Alexander Silberman Institute of Life Sciences, the Hebrew University of Jerusalem. In 2016 he was invited as a senior visiting professor to the University of New South Wales in Sydney, Australia, where he spent a year.

Carmel is married to Anat Gilad-Carmel, a father of three, and lives in Shoham.

Research

Carmel is studying computational molecular evolution, and is particularly interested in human evolution and ancient DNA. He published dozens of research papers in these fields.

In 2014, together with Professor Eran Meshorer, he developed a computational technique to reconstruct genome-wide maps of DNA methylation (a key epigenetic mechanism) from ancient DNA sequences. He applied this technique to ancient DNA from Neanderthal and Denisovan, and thus was the first to reconstruct epigenetic patterns of archaic humans, and to identify genes that are differentially methylated between archaic and modern humans.[1] These genes include many that are expressed in the brain, and are associated with neurological disorders such as Alzheimer's disease, autism and schizophrenia. This work was selected among the top ten discoveries of 2014 by Archaeology magazine.[2]

In 2017, Carmel developed a tool that identifies organs and body parts that are preferentially enriched within a set of genes.[3] This tool helps in understanding how the human body is affected by changes in the expression levels of genes. Combining this tool with his studies on DNA methylation patterns in archaic humans, and together with Professor Eran Meshorer, Carmel showed in 2020 that the vocal and facial anatomy of modern humans differs from that of Neanderthals and Denisovans,[4] which points at fascinating evolutionary processes during the past hundreds of thousands of years that affected the modern human voice box.

Very little is known about the anatomy of the Denisovan, as its confirmed physical remains include a finger, a few teeth and a lower jaw.[5] In 2019, Carmel developed a computational technique which uses reconstructed DNA methylation maps in archaic humans together with medical information on the phenotypic effects of genes that underlie monogenic diseases, to generate an anatomical profile of archaic human groups.[6] He applied this technique to the ancient DNA of a Denisovan girl to generate a first anatomical profile of these archaic humans. This work was selected among the scientific breakthroughs of 2019 by Science magazine,[7] won 1st People's Choice of Science's breakthrough of 2019,[7] and was selected among the 10 top stories of the year by Science News.[8]

In 2020 Carmel published a study on the genetics of the Canaanites.[9] In this work, he sequenced DNA from dozens of Canaanite individuals that used to live in the Southern Levant during the Bronze Age, in sites such as Megiddo and Hazor. Carmel found that the Canaanites formed as an admixture of local populations with people that arrived from the north-east, from regions that today include western Iran and the Caucasus, and that the process continued for hundreds of years. Carmel also found that the different Canaanite populations across the Southern Levant belonged to the same genetic population. In this study Carmel developed a method[10] which he used to show that the ancient Bronze Age populations from the Southern Levant, Caucasus and western Iran substantially contributed to the genetics of present-day Levantine populations such as Jewish groups and Arabic-speaking groups.

Awards and honors

  • Carmel is the 2021 laureate of the Massry Prize, which he won together with Professors Svante Pääbo and David Reich, for his contributions to the field of ancient DNA.
  • The 2019  Michael Milken prize.[11]

References

  1. ^ Gokhman, David; Lavi, Eitan; Prüfer, Kay; Fraga, Mario F.; Riancho, José A.; Kelso, Janet; Pääbo, Svante; Meshorer, Eran; Carmel, Liran (2 May 2014). "Reconstructing the DNA Methylation Maps of the Neandertal and the Denisovan". Science. 344 (6183): 523–527. Bibcode:2014Sci...344..523G. doi:10.1126/science.1250368. PMID 24786081. S2CID 28665590.
  2. ^ "Top 10 Discoveries of 2014". Archaeology Magazine.
  3. ^ Gokhman, David; Kelman, Guy; Amartely, Adir; Gershon, Guy; Tsur, Shira; Carmel, Liran (21 April 2017). "Gene ORGANizer: linking genes to the organs they affect". Nucleic Acids Research. 45 (W1): W138–W145. doi:10.1093/nar/gkx302. PMC 5570240. PMID 28444223.
  4. ^ Gokhman, David; Nissim-Rafinia, Malka; Agranat-Tamir, Lily; Housman, Genevieve; García-Pérez, Raquel; Lizano, Esther; Cheronet, Olivia; Mallick, Swapan; Nieves-Colón, Maria A.; Li, Heng; Alpaslan-Roodenberg, Songül; Novak, Mario; Gu, Hongcang; Osinski, Jason M.; Ferrando-Bernal, Manuel; Gelabert, Pere; Lipende, Iddi; Mjungu, Deus; Kondova, Ivanela; Bontrop, Ronald; Kullmer, Ottmar; Weber, Gerhard; Shahar, Tal; Dvir-Ginzberg, Mona; Faerman, Marina; Quillen, Ellen E.; Meissner, Alexander; Lahav, Yonatan; Kandel, Leonid; Liebergall, Meir; Prada, María E.; Vidal, Julio M.; Gronostajski, Richard M.; Stone, Anne C.; Yakir, Benjamin; Lalueza-Fox, Carles; Pinhasi, Ron; Reich, David; Marques-Bonet, Tomas; Meshorer, Eran; Carmel, Liran (4 March 2020). "Differential DNA methylation of vocal and facial anatomy genes in modern humans". Nature Communications. 11 (1): 1189. Bibcode:2020NatCo..11.1189G. doi:10.1038/s41467-020-15020-6. PMC 7055320. PMID 32132541.
  5. ^ Chen, Fahu; Welker, Frido; Shen, Chuan-Chou; Bailey, Shara E.; Bergmann, Inga; Davis, Simon; Xia, Huan; Wang, Hui; Fischer, Roman; Freidline, Sarah E.; Yu, Tsai-Luen; Skinner, Matthew M.; Stelzer, Stefanie; Dong, Guangrong; Fu, Qiaomei; Dong, Guanghui; Wang, Jian; Zhang, Dongju; Hublin, Jean-Jacques (May 2019). "A late Middle Pleistocene Denisovan mandible from the Tibetan Plateau" (PDF). Nature. 569 (7756): 409–412. Bibcode:2019Natur.569..409C. doi:10.1038/s41586-019-1139-x. PMID 31043746. S2CID 141503768.
  6. ^ Gokhman, David; Mishol, Nadav; Manuel, Marc de; Juan, David de; Shuqrun, Jonathan; Meshorer, Eran; Marques-Bonet, Tomas; Rak, Yoel; Carmel, Liran (19 September 2019). "Reconstructing Denisovan Anatomy Using DNA Methylation Maps". Cell. 179 (1): 180–192.e10. doi:10.1016/j.cell.2019.08.035. PMID 31539495. S2CID 202676502.
  7. ^ a b "Breakthrough of the Year 2019". Science.
  8. ^ "Top 10 stories of 2019: A black hole picture, measles outbreaks, climate protests and more". Science News. 16 December 2019.
  9. ^ Agranat-Tamir, Lily; Waldman, Shamam; Martin, Mario A. S.; Gokhman, David; Mishol, Nadav; Eshel, Tzilla; Cheronet, Olivia; Rohland, Nadin; Mallick, Swapan; Adamski, Nicole; Lawson, Ann Marie; Mah, Matthew; Michel, Megan; Oppenheimer, Jonas; Stewardson, Kristin; Candilio, Francesca; Keating, Denise; Gamarra, Beatriz; Tzur, Shay; Novak, Mario; Kalisher, Rachel; Bechar, Shlomit; Eshed, Vered; Kennett, Douglas J.; Faerman, Marina; Yahalom-Mack, Naama; Monge, Janet M.; Govrin, Yehuda; Erel, Yigal; Yakir, Benjamin; Pinhasi, Ron; Carmi, Shai; Finkelstein, Israel; Carmel, Liran; Reich, David (28 May 2020). "The Genomic History of the Bronze Age Southern Levant". Cell. 181 (5): 1146–1157.e11. doi:10.1016/j.cell.2020.04.024. PMID 32470400. S2CID 219105441.
  10. ^ Agranat-Tamir, Lily; Waldman, Shamam; Rosen, Naomi; Yakir, Benjamin; Carmi, Shai; Carmel, Liran (11 December 2021). "LINADMIX: evaluating the effect of ancient admixture events on modern populations". Bioinformatics. 37 (24): 4744–4755. doi:10.1093/bioinformatics/btab531. PMID 34270685.
  11. ^ "פרס ע"ש מיכאל מילקן למורים מצטיינים". המכון למדעי החיים ע"ש אלכסנדר סילברמן.