Associate Laboratory i4HB - Institute for Health and Bioeconomy, NOVA School of Science and Technology, Universidade NOVA de Lisboa, 2829-516 Caparica, Portugal; UCIBIO - Applied Molecular Biosciences Unit, Department of Life Sciences, NOVA School of Science and Technology, Universidade NOVA de Lisboa, 2829-516 Caparica, Portugal.
Vanderbilt University, Department of Biological Sciences, VU Station B #35-1634, Nashville, TN 37235, United States of America; Evolutionary Studies Initiative, Vanderbilt University, VU Station B #35-1634, Nashville, TN 37235, United States of America. Electronic address: https://twitter.com/@ciggoncalves.
Curr Opin Genet Dev. 2022 Oct;76:101950. doi: 10.1016/j.gde.2022.101950. Epub 2022 Jul 13.
Horizontal gene transfer (HGT), defined as the exchange of genetic material other than from parent to progeny, is very common in bacteria and appears to constitute the most important mechanism contributing to enlarge a species gene pool. However, in eukaryotes, HGT is certainly much less common and some early insufficiently consubstantiated cases involving bacterial donors led some to consider that it was unlikely to occur in eukaryotes outside the host/endosymbiont relationship. More recently, plenty of reports of interdomain HGT have seen the light based on the strictest criteria, many concerning filamentous fungi and yeasts. Here, we attempt to summarize the most prominent instances of HGT reported in yeasts as well as what we have been able to learn so far concerning frequency and distribution, mechanisms, barriers, function of horizontally acquired genes, and the role of HGT in domestication.
水平基因转移(HGT)定义为除亲代到后代的遗传物质交换之外的遗传物质交换,在细菌中非常普遍,似乎是导致物种基因库扩大的最重要机制。然而,在真核生物中,HGT 肯定要少得多,一些早期涉及细菌供体的证据不足的情况导致一些人认为它不太可能发生在宿主/内共生关系之外的真核生物中。最近,基于最严格的标准,大量的跨域 HGT 报告已经出现,其中许多涉及丝状真菌和酵母。在这里,我们试图总结报道的酵母中最突出的 HGT 实例,以及我们迄今为止对频率和分布、机制、障碍、水平获得基因的功能以及 HGT 在驯化中的作用的了解。