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腔肠动物罗塞尔氏扇毛虫基因组中的水平基因转移检测。

Detection of horizontal gene transfer in the genome of the choanoflagellate Salpingoeca rosetta.

机构信息

Marine Science Institute, University of the Philippines, Diliman, Quezon City, Philippines.

Department of Oceanography, Hawai'i Sea Grant, Daniel K. Inouye Center for Microbial Oceanography: Research and Education, University of Hawai'i at Manoa, Honolulu, USA.

出版信息

Sci Rep. 2021 Mar 16;11(1):5993. doi: 10.1038/s41598-021-85259-6.

Abstract

Horizontal gene transfer (HGT), the movement of heritable materials between distantly related organisms, is crucial in eukaryotic evolution. However, the scale of HGT in choanoflagellates, the closest unicellular relatives of metazoans, and its possible roles in the evolution of animal multicellularity remains unexplored. We identified at least 175 candidate HGTs in the genome of the colonial choanoflagellate Salpingoeca rosetta using sequence-based tests. The majority of these were orthologous to genes in bacterial and microalgal lineages, yet displayed genomic features consistent with the rest of the S. rosetta genome-evidence of ancient acquisition events. Putative functions include enzymes involved in amino acid and carbohydrate metabolism, cell signaling, and the synthesis of extracellular matrix components. Functions of candidate HGTs may have contributed to the ability of choanoflagellates to assimilate novel metabolites, thereby supporting adaptation, survival in diverse ecological niches, and response to external cues that are possibly critical in the evolution of multicellularity in choanoflagellates.

摘要

水平基因转移 (HGT),即遗传物质在亲缘关系较远的生物体之间的转移,在真核生物进化中至关重要。然而,在有孔虫类动物(后生动物最接近的单细胞亲属)中的 HGT 规模及其在动物多细胞性进化中的可能作用仍未得到探索。我们使用基于序列的测试在群居有孔虫类动物 Salpingoeca rosetta 的基因组中鉴定了至少 175 个候选 HGT。这些基因大多与细菌和微藻类谱系中的基因具有同源性,但具有与 S. rosetta 基因组其余部分一致的基因组特征——这是古老获得事件的证据。推测的功能包括参与氨基酸和碳水化合物代谢、细胞信号转导以及细胞外基质成分合成的酶。候选 HGT 的功能可能有助于有孔虫类动物吸收新的代谢物,从而支持适应、在不同生态位中的生存以及对外界信号的反应,这些可能在后生动物多细胞性进化中至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/815f/7971027/dfda2a2fc669/41598_2021_85259_Fig1_HTML.jpg

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