Department of Ecology and Evolutionary Biology, Cornell University, Ithaca, NY 14853, USA.
Trends Genet. 2024 Oct;40(10):822-833. doi: 10.1016/j.tig.2024.06.003. Epub 2024 Jul 5.
Organisms are complex assemblages of cells, cells that produce light, shoot harpoons, and secrete glue. Therefore, identifying the mechanisms that generate novelty at the level of the individual cell is essential for understanding how multicellular life evolves. For decades, the field of evolutionary developmental biology (Evo-Devo) has been developing a framework for connecting genetic variation that arises during embryonic development to the emergence of diverse adult forms. With increasing access to new single cell 'omics technologies and an array of techniques for manipulating gene expression, we can now extend these inquiries inward to the level of the individual cell. In this opinion, I argue that applying an Evo-Devo framework to single cells makes it possible to explore the natural history of cells, where this was once only possible at the organismal level.
生物体是细胞的复杂组合,这些细胞会产生光、发射鱼叉和分泌胶水。因此,识别在单个细胞水平上产生新颖性的机制对于理解多细胞生命如何进化至关重要。几十年来,进化发育生物学(Evo-Devo)领域一直在发展一个框架,将胚胎发育过程中产生的遗传变异与不同成年形态的出现联系起来。随着越来越多的单细胞“组学”技术和一系列基因表达操作技术的出现,我们现在可以将这些研究扩展到单个细胞的水平。在这篇观点文章中,我认为将 Evo-Devo 框架应用于单细胞可以使我们有可能探索细胞的自然历史,而在以前这只能在生物体水平上进行。