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酵母属内谱系特异性基因的全基因组鉴定、特征描述和表达分析。

Genome-wide identification, characterization and expression analysis of lineage-specific genes within Hanseniaspora yeasts.

机构信息

School of Biological Engineering and Food, Hubei University of Technology, Wuhan 430068, China.

Key Laboratory of Horticultural Plant Biology of the Ministry of Education, National Centre of Citrus Breeding, Huazhong Agricultural University, Wuhan 430070, China.

出版信息

FEMS Microbiol Lett. 2020 Jun 1;367(11). doi: 10.1093/femsle/fnaa077.

Abstract

Lineage-specific genes (LSGs) are defined as genes with sequences that are not significantly similar to those in any other lineage. LSGs have been proposed, and sometimes shown, to have significant effects in the evolution of biological function. In this study, two sets of Hanseniaspora spp. LSGs were identified by comparing the sequences of the Kloeckera apiculata genome and of 80 other yeast genomes. This study identified 344 Hanseniaspora-specific genes (HSGs) and 109 genes ('orphan genes') specific to K. apiculata. Three thousand three hundred thirty-one K. apiculata genes that showed significant similarity to at least one sequence outside the Hanseniaspora were classified into evolutionarily conserved genes. We analyzed their sequence features, functional categories, gene origin, gene structure and gene expression. We also investigated the predicted cellular roles and Gene Ontology categories of the LSGs using functional inference. The patterns of the functions of LSGs do not deviate significantly from genome-wide average. The results showed that a few LSGs were formed by gene duplication, followed by rapid sequence divergence. Many of the HSGs and orphan genes exhibited altered expression in response to abiotic stress. Studying these LSGs might be helpful for understanding the molecular mechanism of yeast adaption.

摘要

属特异性基因(LSGs)被定义为与其他任何谱系的基因序列没有显著相似性的基因。已经提出了 LSGs,并在某些情况下表明它们在生物功能的进化中具有重要影响。在这项研究中,通过比较 Kloeckera apiculata 基因组和 80 个其他酵母基因组的序列,鉴定了两组 Hanseniaspora spp. 的 LSGs。本研究鉴定了 344 个 Hanseniaspora 特异性基因(HSGs)和 109 个特定于 K. apiculata 的“孤儿基因”。3311 个与 Hanseniaspora 以外的至少一个序列具有显著相似性的 K. apiculata 基因被归类为进化保守基因。我们分析了它们的序列特征、功能类别、基因起源、基因结构和基因表达。我们还使用功能推断研究了 LSGs 的预测细胞功能和基因本体论类别。LSGs 的功能模式与全基因组平均水平没有显著差异。结果表明,少数 LSGs是通过基因复制形成的,随后是快速的序列分化。许多 HSGs 和孤儿基因表现出对非生物胁迫的表达改变。研究这些 LSGs可能有助于理解酵母适应的分子机制。

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