Ropars Jeanne, Aguileta Gabriela, de Vienne Damien M, Giraud Tatiana
Univ Paris-Sud, Ecologie, Systématique et Evolution, UMR8079, 91405 Orsay, France. ; CNRS, Ecologie, Systématique et Evolution, UMR8079, 91405 Orsay, France.
Univ Paris-Sud, Ecologie, Systématique et Evolution, UMR8079, 91405 Orsay, France. ; CNRS, Ecologie, Systématique et Evolution, UMR8079, 91405 Orsay, France. ; Center for Genomic Regulation (CRG), Dr, Aiguader 88, 08003 Barcelona, Spain.
Microb Cell. 2014 Mar 3;1(3):107-109. doi: 10.15698/mic2014.01.135.
Horizontal gene transfers (HGT), , the transmission of genetic material between species not directly attributable to meiotic gene exchange, have long been acknowledged as a major driver of prokaryotic evolution and is increasingly recognized as an important source of adaptation in eukaryotes. In fungi in particular, many convincing examples of HGT have been reported to confer selective advantages on the recipient fungal host, either promoting fungal pathogenicity on plants or increasing their toxicity by the acquisition of secondary metabolic clusters, resulting in adaptation to new niches and in some cases eventually even in speciation. These horizontal gene transfers involve single genes, complete metabolic pathways or even entire chromosomes. A recent study has uncovered multiple recent horizontal transfers of a 575 kb genomic island in cheese fungi, representing ca. 2% of the 's genome, that may confer selective advantage in the competing cheese environment where bacteria and fungi occur. Novel phylogenomic methods are being developed, revealing massive HGT among fungi. Altogether, these recent studies indicate that HGT is a crucial mechanism of rapid adaptation, even among eukaryotes.
水平基因转移(HGT),即物种间遗传物质的传递,并非直接归因于减数分裂基因交换,长期以来一直被认为是原核生物进化的主要驱动力,并且越来越被视为真核生物适应的重要来源。特别是在真菌中,已经报道了许多令人信服的水平基因转移例子,这些例子赋予受体真菌宿主选择性优势,要么促进真菌对植物的致病性,要么通过获得次生代谢簇增加其毒性,从而导致适应新的生态位,在某些情况下甚至最终导致物种形成。这些水平基因转移涉及单个基因、完整的代谢途径甚至整个染色体。最近的一项研究发现,奶酪真菌中一个575 kb的基因组岛有多次近期水平转移,约占该真菌基因组的2%,这可能在细菌和真菌共存的竞争性奶酪环境中赋予选择性优势。新的系统发育基因组学方法正在被开发出来,揭示了真菌之间大量的水平基因转移。总之,这些最新研究表明,即使在真核生物中,水平基因转移也是快速适应的关键机制。