首页> 外文期刊>BMC Biology >A genome-wide survey of copy number variations reveals an asymmetric evolution of duplicated genes in rice
【24h】

A genome-wide survey of copy number variations reveals an asymmetric evolution of duplicated genes in rice

机译:对拷贝数变异的基因组调查显示了水稻中复制基因的不对称演变

获取原文
       

摘要

BACKGROUND:Copy number variations (CNVs) are an important type of structural variations in the genome that usually affect gene expression levels by gene dosage effect. Understanding CNVs as part of genome evolution may provide insights into the genetic basis of important agricultural traits and contribute to the crop breeding in the future. While available methods to detect CNVs utilizing next-generation sequencing technology have helped shed light on prevalence and effects of CNVs, the complexity of crop genomes poses a major challenge and requires development of additional tools.RESULTS:Here, we generated genomic and transcriptomic data of 93 rice (Oryza sativa L.) accessions and developed a comprehensive pipeline to call CNVs in this large-scale dataset. We analyzed the correlation between CNVs and gene expression levels and found that approximately 13% of the identified genes showed a significant correlation between their expression levels and copy numbers. Further analysis showed that about 36% of duplicate pairs were involved in pseudogenetic events while only 5% of them showed functional differentiation. Moreover, the offspring copy mainly contributed to the expression levels and seemed more likely to become a pseudogene, whereas the parent copy tended to maintain the function of ancestral gene.CONCLUSION:We provide?a high-accuracy CNV dataset that will contribute to functional genomics studies and molecular breeding in rice. We also showed that gene dosage effect of CNVs in rice is not exponential or linear. Our work demonstrates that the evolution of duplicated genes is asymmetric in both expression levels and gene fates, shedding a new insight into the evolution of duplicated genes.
机译:背景:拷贝数变异(CNV)是基因组的重要类型的结构变化,通常通过基因剂量效应影响基因表达水平。理解CNVS作为基因组进化的一部分,可以提供对重要农业性状的遗传基础的见解,并有助于未来作物育种。虽然检测利用下一代测序技术检测CNV的可用方法有助于揭示CNV的患病率和效果,但作物基因组的复杂性构成了一项重大挑战,需要开发额外的工具。结果:在这里,我们生成了基因组和转录组数据93米(Oryza Sativa L.)加入并开发了一个全面的管道,可以在这个大型数据集中致电CNV。我们分析了CNV和基因表达水平之间的相关性,发现约13%的鉴定基因显示其表达水平与拷贝数之间的显着相关性。进一步的分析表明,约36%的重复对涉及假生事件,而其中仅5%的功能分化显示。此外,后代副本主要促进表达水平,似乎更有可能成为伪基因,而母体复制往往维持祖先基因的功能。结论:我们提供?将有助于功能基因组的高精度CNV数据集水稻中的研究与分子育种。我们还表明,水稻中CNVS的基因剂量效应不是指数或线性的。我们的作品表明,两种表达水平和基因命中的重复基因的演变是不对称的,对重复基因的演变进行了新的洞察。

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