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棉花(棉属)基因型和组织中的遗传及DNA甲基化变化

Genetic and DNA methylation changes in cotton (Gossypium) genotypes and tissues.

作者信息

Osabe Kenji, Clement Jenny D, Bedon Frank, Pettolino Filomena A, Ziolkowski Lisa, Llewellyn Danny J, Finnegan E Jean, Wilson Iain W

机构信息

CSIRO, Plant Industry, ACT, Australia.

出版信息

PLoS One. 2014 Jan 20;9(1):e86049. doi: 10.1371/journal.pone.0086049. eCollection 2014.

Abstract

In plants, epigenetic regulation is important in normal development and in modulating some agronomic traits. The potential contribution of DNA methylation mediated gene regulation to phenotypic diversity and development in cotton was investigated between cotton genotypes and various tissues. DNA methylation diversity, genetic diversity, and changes in methylation context were investigated using methylation-sensitive amplified polymorphism (MSAP) assays including a methylation insensitive enzyme (BsiSI), and the total DNA methylation level was measured by high-performance liquid chromatography (HPLC). DNA methylation diversity was greater than the genetic diversity in the selected cotton genotypes and significantly different levels of DNA methylation were identified between tissues, including fibre. The higher DNA methylation diversity (CHG methylation being more diverse than CG methylation) in cotton genotypes suggest epigenetic regulation may be important for cotton, and the change in DNA methylation between fibre and other tissues hints that some genes may be epigenetically regulated for fibre development. The novel approach using BsiSI allowed direct comparison between genetic and epigenetic diversity, and also measured CC methylation level that cannot be detected by conventional MSAP.

摘要

在植物中,表观遗传调控在正常发育以及调控一些农艺性状方面起着重要作用。我们在棉花基因型和不同组织之间研究了DNA甲基化介导的基因调控对棉花表型多样性和发育的潜在贡献。使用包括甲基化不敏感酶(BsiSI)的甲基化敏感扩增多态性(MSAP)分析方法研究了DNA甲基化多样性、遗传多样性以及甲基化背景的变化,并通过高效液相色谱(HPLC)测定了总DNA甲基化水平。在所选择的棉花基因型中,DNA甲基化多样性大于遗传多样性,并且在包括纤维在内的不同组织之间鉴定出了显著不同水平的DNA甲基化。棉花基因型中较高的DNA甲基化多样性(CHG甲基化比CG甲基化更多样化)表明表观遗传调控可能对棉花很重要,并且纤维与其他组织之间DNA甲基化的变化暗示一些基因可能在纤维发育过程中受到表观遗传调控。使用BsiSI的新方法允许直接比较遗传多样性和表观遗传多样性,并且还测量了传统MSAP无法检测到CC甲基化水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b520/3896429/77a49b3a3f87/pone.0086049.g001.jpg

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