比较基因组学方法揭示了棉属植物微卫星缺陷和保护的进化动力学。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
ACS Applied Bio Materials Pub Date : 2017-05-18 eCollection Date: 2017-01-01 DOI:10.1186/s41065-017-0034-4
Muhammad Mahmood Ahmed, Chao Shen, Anam Qadir Khan, Muhammad Atif Wahid, Muhammad Shaban, Zhongxu Lin
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引用次数: 3

摘要

背景:细胞中正在进行的分子过程可以靶向微卫星DNA,这是一种重复的DNA,由于长度变化和基序不完善。这种遗传变异背后的突变机制已经在不同的生物体中得到了广泛的研究。然而,关于倍化对非编码DNA的影响尚不清楚。倍化是一种在植物中普遍存在的基因组内容复制的进化过程。结果:研究了不同来源植物物种基因组序列的全基因组基序不完善模式,并利用多种分析工具探究了微卫星重复序列密度、不完善度和微卫星长度之间的特征关系。此外,比较基因组学方法有助于探索微卫星在棉属植物进化中的保护足迹。基于我们的研究结果,在13个基因组中发现重复长度的基序不完善与不完善微卫星的基因组丰度密切相关。微卫星衰减估计表明,长基序重复的衰减较慢,这导致了棉属植物中5-nt重复基序的优势丰度。短基序重复数在棉系进化过程中衰减迅速,导致2-nt重复数急剧减少,其中“AT”基序类型在棉花四倍体栽培中出现了衰落。结论:该结果可为通过棉花基因组属特异性特征的进化探索简单非编码遗传元件(即重复元件)的比较进化足迹提供指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A comparative genomics approach revealed evolutionary dynamics of microsatellite imperfection and conservation in genus <i>Gossypium</i>.

A comparative genomics approach revealed evolutionary dynamics of microsatellite imperfection and conservation in genus <i>Gossypium</i>.

A comparative genomics approach revealed evolutionary dynamics of microsatellite imperfection and conservation in genus <i>Gossypium</i>.

A comparative genomics approach revealed evolutionary dynamics of microsatellite imperfection and conservation in genus Gossypium.

Background: Ongoing molecular processes in a cell could target microsatellites, a kind of repetitive DNA, owing to length variations and motif imperfection. Mutational mechanisms underlying such kind of genetic variations have been extensively investigated in diverse organisms. However, obscure impact of ploidization, an evolutionary process of genome content duplication prevails mostly in plants, on non-coding DNA is poorly understood.

Results: Genome sequences of diversely originated plant species were examined for genome-wide motif imperfection pattern, and various analytical tools were employed to canvass characteristic relationships among repeat density, imperfection and length of microsatellites. Moreover, comparative genomics approach aided in exploration of microsatellites conservation footprints in Gossypium evolution. Based on our results, motif imperfection in repeat length was found intricately related to genomic abundance of imperfect microsatellites among 13 genomes. Microsatellite decay estimation depicted slower decay of long motif repeats which led to predominant abundance of 5-nt repeat motif in Gossypium species. Short motif repeats exhibited rapid decay through the evolution of Gossypium lineage ensuing drastic decrease of 2-nt repeats, of which, "AT" motif type dilapidated in cultivated tetraploids of cotton.

Conclusion: The outcome could be a directive to explore comparative evolutionary footprints of simple non-coding genetic elements i.e., repeat elements, through the evolution of genus-specific characteristics in cotton genomes.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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