基因组
基因组
旧石器时代晚期
进化生物学
旧石器时代中期
生物
自然(考古学)
更新世
古人类学
基因
计算生物学
动物
古生物学
遗传学
地理
考古
作者
Martin Klapper,Alexander Hübner,Anan Ibrahim,Ina Wasmuth,Maxime Borry,Veit G. Haensch,Shuai‐Bing Zhang,Walid K. Al‐Jammal,Harikumar R Suma,James A. Fellows Yates,Jasmin Frangenberg,Irina M. Velsko,Somak Chowdhury,Rosa Herbst,Evgeni V. Bratovanov,Hans‐Martin Dahse,Therese Horch,Christian Hertweck,Manuel R. González Morales,Lawrence Guy Straus,Ivan Vilotijević,Christina Warinner,Pierre Stallforth
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2023-05-04
卷期号:380 (6645): 619-624
被引量:22
标识
DOI:10.1126/science.adf5300
摘要
Major advances over the past decade in the field of ancient DNA are providing access to past paleogenomic diversity, but the diverse functions and biosynthetic capabilities of this growing paleome remain largely elusive. We investigated the dental calculus of 12 Neanderthals and 52 anatomically modern humans ranging from 100,000 years ago to the present and reconstructed 459 bacterial metagenome-assembled genomes. We identified a biosynthetic gene cluster shared by seven Middle and Upper Paleolithic individuals that allows for the heterologous production of a class of previously unknown metabolites that we name "paleofurans." This paleobiotechnological approach demonstrates that viable biosynthetic machinery can be produced from the preserved genetic material of ancient organisms, allowing access to natural products from the Pleistocene and providing a promising area for natural product exploration.
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