...
首页> 外文期刊>Genome Biology and Evolution >Ampliconic Genes on the Great Ape Y Chromosomes: Rapid Evolution of Copy Number but Conservation of Expression Levels
【24h】

Ampliconic Genes on the Great Ape Y Chromosomes: Rapid Evolution of Copy Number but Conservation of Expression Levels

机译:大猿y染色体上的增殖基因:拷贝数的快速演变,但表达水平的保护

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Multicopy ampliconic gene families on the Y chromosome play an important role in spermatogenesis. Thus, studying their genetic variation in endangered great ape species is critical. We estimated the sizes (copy number) of nine Y ampliconic gene families in population samples of chimpanzee, bonobo, and orangutan with droplet digital polymerase chain reaction, combined these estimates with published data for human and gorilla, and produced genome-wide testis gene expression data for great apes. Analyzing this comprehensive data set within an evolutionary framework, we, first, found high inter- and intraspecific variation in gene family size, with larger families exhibiting higher variation as compared with smaller families, a pattern consistent with random genetic drift. Second, for four gene families, we observed significant interspecific size differences, sometimes even between sister species—chimpanzee and bonobo. Third, despite substantial variation in copy number, Y ampliconic gene families’ expression levels did not differ significantly among species, suggesting dosage regulation. Fourth, for three gene families, size was positively correlated with gene expression levels across species, suggesting that, given sufficient evolutionary time, copy number influences gene expression. Our results indicate high variability in size but conservation in gene expression levels in Y ampliconic gene families, significantly advancing our understanding of Y-chromosome evolution in great apes.
机译:Y染色体上的多层显性基因家族在精子发生中起重要作用。因此,研究其濒危猿类物种的遗传变异至关重要。我们估计了九岁,Bonbo和猩猩与液滴数字聚合酶链反应的含量样本中九个y扩增基因家族的大小(拷贝数),并将这些估计与人和大猩猩的公布数据组合,并产生了基因组睾丸基因表达伟大的猿类数据。在进化框架内分析了这种综合数据,我们首先发现了基因家族大小的高互联性变化,与较小的家庭相比,较大的家庭具有更高的变异,与随机遗传漂移一致的模式。其次,对于四个基因家族,我们观察到显着的差异大小差异,有时甚至在姐妹种类 - 黑猩猩和博博之间。第三,尽管拷贝数量大幅变化,但物种之间的y扩增基因家族的表达水平没有显着差异,表明剂量调节。第四,对于三个基因家族,大小与种类的基因表达水平正相关,旨在给定足够的进化时间,拷贝数对基因表达影响。我们的结果表明,Y扩增基因家族基因表达水平的大小的高度,显着推进了我们对大猿的y-染色体演变的理解。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号