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三种真核游仆虫原生生物的比较基因组分析为单细胞真核生物中纳米染色体的进化提供了见解。

Comparative genome analysis of three euplotid protists provides insights into the evolution of nanochromosomes in unicellular eukaryotic organisms.

作者信息

Jin Didi, Li Chao, Chen Xiao, Byerly Adam, Stover Naomi A, Zhang Tengteng, Shao Chen, Wang Yurui

机构信息

Laboratory of Protozoological Biodiversity and Evolution in Wetland, College of Life Sciences, Shaanxi Normal University, Xi'an, 710119 China.

Institute of Evolution and Marine Biodiversity, Ocean University of China, Qingdao, 266003 China.

出版信息

Mar Life Sci Technol. 2023 May 28;5(3):300-315. doi: 10.1007/s42995-023-00175-0. eCollection 2023 Aug.

Abstract

UNLABELLED

One of the most diverse clades of ciliated protozoa, the class Spirotrichea, displays a series of unique characters in terms of eukaryotic macronuclear (MAC) genome, including high fragmentation that produces nanochromosomes. However, the genomic diversity and evolution of nanochromosomes and gene families for spirotrich MAC genomes are poorly understood. In this study, we assemble the MAC genome of a representative euplotid (a new model organism in Spirotrichea) species, . Our results indicate that: (a) the MAC genome includes 35,465 contigs with a total length of 97.3 Mb and a contig N50 of 3.4 kb, and contains 13,145 complete nanochromosomes and 43,194 predicted genes, with the majority of these nanochromosomes containing tiny introns and harboring only one gene; (b) genomic comparisons between and other reported spirotrichs indicate that average GC content and genome fragmentation levels exhibit interspecific variation, and chromosome breaking sites (CBSs) might be lost during evolution, resulting in the increase of multi-gene nanochromosome; (c) gene families associated with chitin metabolism and FoxO signaling pathway are expanded in , suggesting their potential roles in environment adaptation and survival strategies of ; and (d) a programmed ribosomal frameshift (PRF) with a conservative motif 5'-AAATAR-3' tends to occur in longer genes with more exons, and PRF genes play an important role in many cellular regulation processes.

SUPPLEMENTARY INFORMATION

The online version contains supplementary material available at 10.1007/s42995-023-00175-0.

摘要

未标记

纤毛原生动物中最多样化的进化枝之一,旋毛纲,在真核大核(MAC)基因组方面表现出一系列独特特征,包括产生纳米染色体的高度碎片化。然而,旋毛虫MAC基因组的纳米染色体和基因家族的基因组多样性及进化仍知之甚少。在本研究中,我们组装了一种代表性真核游动目(旋毛纲中的一种新模型生物)物种的MAC基因组。我们的结果表明:(a)MAC基因组包含35465个重叠群,总长度为97.3 Mb,重叠群N50为3.4 kb,包含13145条完整的纳米染色体和43194个预测基因,这些纳米染色体中的大多数含有微小内含子且仅含有一个基因;(b)该物种与其他已报道的旋毛虫之间的基因组比较表明,平均GC含量和基因组碎片化水平存在种间差异,染色体断裂位点(CBSs)可能在进化过程中丢失,导致多基因纳米染色体增加;(c)与几丁质代谢和FoxO信号通路相关的基因家族在该物种中扩增,表明它们在该物种的环境适应和生存策略中可能发挥的作用;(d)具有保守基序5'-AAATAR-3'的程序性核糖体移码(PRF)倾向于出现在具有更多外显子的较长基因中,且PRF基因在许多细胞调节过程中起重要作用。

补充信息

在线版本包含可在10.1007/s42995-023-00175-0获取的补充材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5cdd/10449743/ef8efe96ac40/42995_2023_175_Fig1_HTML.jpg

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