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研究揭示海洋生态系统中新的整合元件和基因组的可塑性
作者:小柯机器人 发布时间:2023/1/8 15:32:14

美国麻省理工学院Sallie W. Chisholm等研究人员合作揭示海洋生态系统中新的整合元件和基因组的可塑性。相关论文于2023年1月5日发表于国际学术期刊《细胞》。

研究人员报告了一个新的DNA转座子家族——“tycheposons”,其中一些是病毒卫星,而另一些则携带货物,如营养物质获取基因,它们塑造了这个全球丰富的属的遗传变异性。tycheposons共享独特的与移动生命周期相关的标志基因,包括一个深分支位点特异性的酪氨酸重组酶。它们在tRNA基因上的切除和整合似乎驱动了基因组岛的重塑,这是细菌中灵活基因的关键库。在一个选择实验中,携带硝酸盐同化盒的酪蛋白被动态地获得和失去,从而促进了染色体的重新排列和宿主的适应。从海水中收获的囊泡和噬菌体颗粒富含tycheposons,为它们在野外的传播提供了途径。在与原绿球藻共存的微生物中也发现了类似的元件,这表明在广阔的寡营养海洋中微生物多样化的一个共同机制。
 
据悉,水平基因转移加速了微生物的演化。海洋原绿球藻表现出高度的基因组可塑性,但其背后的机制却难以捉摸。
 
附:英文原文

Title: Novel integrative elements and genomic plasticity in ocean ecosystems

Author: Thomas Hackl, Raphal Laurenceau, Markus J. Ankenbrand, Christina Bliem, Zev Cariani, Elaina Thomas, Keven D. Dooley, Aldo A. Arellano, Shane L. Hogle, Paul Berube, Gabriel E. Leventhal, Elaine Luo, John M. Eppley, Ahmed A. Zayed, John Beaulaurier, Ramunas Stepanauskas, Matthew B. Sullivan, Edward F. DeLong, Steven J. Biller, Sallie W. Chisholm

Issue&Volume: 2023/01/05

Abstract: Horizontal gene transfer accelerates microbial evolution. The marine picocyanobacterium Prochlorococcus exhibits high genomic plasticity, yet the underlying mechanisms are elusive. Here, we report a novel family of DNA transposons—“tycheposons”—some of which are viral satellites while others carry cargo, such as nutrient-acquisition genes, which shape the genetic variability in this globally abundant genus. Tycheposons share distinctive mobile-lifecycle-linked hallmark genes, including a deep-branching site-specific tyrosine recombinase. Their excision and integration at tRNA genes appear to drive the remodeling of genomic islands—key reservoirs for flexible genes in bacteria. In a selection experiment, tycheposons harboring a nitrate assimilation cassette were dynamically gained and lost, thereby promoting chromosomal rearrangements and host adaptation. Vesicles and phage particles harvested from seawater are enriched in tycheposons, providing a means for their dispersal in the wild. Similar elements are found in microbes co-occurring with Prochlorococcus, suggesting a common mechanism for microbial diversification in the vast oligotrophic oceans.

DOI: 10.1016/j.cell.2022.12.006

Source: https://www.cell.com/cell/fulltext/S0092-8674(22)01519-7

期刊信息
Cell:《细胞》,创刊于1974年。隶属于细胞出版社,最新IF:66.85
官方网址:https://www.cell.com/