首页> 外文期刊>BMC Biology >Multi-faceted analysis provides little evidence for recurrent whole-genome duplications during hexapod evolution
【24h】

Multi-faceted analysis provides little evidence for recurrent whole-genome duplications during hexapod evolution

机译:多方面分析为六足动物进化期间提供了经常发生的全基因组重复的少数证据

获取原文
       

摘要

BACKGROUND:Gene duplication events play an important role in the evolution and adaptation of organisms. Duplicated genes can arise through different mechanisms, including whole-genome duplications (WGDs). Recently, WGD was suggested to be an important driver of evolution, also in hexapod animals.RESULTS:Here, we analyzed 20 high-quality hexapod genomes using whole-paranome distributions of estimated synonymous distances (KsubS/sub), patterns of within-genome co-linearity, and phylogenomic gene tree-species tree reconciliation methods. We observe an abundance of gene duplicates in the majority of these hexapod genomes, yet we find little evidence for WGD. The majority of gene duplicates seem to have originated through small-scale gene duplication processes. We did detect segmental duplications in six genomes, but these lacked the within-genome co-linearity signature typically associated with WGD, and the age of these duplications did not coincide with particular peaks in KsubS/sub distributions. Furthermore, statistical gene tree-species tree reconciliation failed to support all but one of the previously hypothesized WGDs.CONCLUSIONS:Our analyses therefore provide very limited evidence for WGD having played a significant role in the evolution of hexapods and suggest that alternative mechanisms drive gene duplication events in this group of animals. For instance, we propose that, along with small-scale gene duplication events, episodes of increased transposable element activity could have been an important source for gene duplicates in hexapods.
机译:背景:基因复制事件在生物体的演化和适应方面发挥着重要作用。通过不同的机制可能出现重复的基因,包括全基因组重复(WGD)。最近,WGD被建议是进化的重要司机,也在六己族动物中。在这里,我们使用估计的同义距离的全共副产品分布分析了20个高质量的六足动物基因组(K s ) ,基因组内的模式的典型线性,以及系统孕球基因树种类树和解方法。我们观察到大多数这些六足基因组织中的丰富基因复制品,但我们发现WGD的少数证据。大多数基因复制似乎已经通过小规模基因复制过程起源。我们确实在六个基因组中检测到节段性重复,但这些重复缺乏通常与WGD相关的基因组共同性签名,并且这些重复的年龄在K S 分布中没有重合。此外,统计基因树种类树和解未能支持先前假设的WGDS之外的所有.Conclusions:我们的分析为WGD提供了非常有限的证据,为WGD发挥了重要作用,在六己段的演变中发挥了重要作用,并提出了替代机制驱动基因重复这组动物的事件。例如,我们提出,除了小规模的基因复制事件以及增加的转移元素活性的发作,可能是六己段中基因重复的重要来源。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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