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在 CHH 背景下的甲基化可预测水稻中的重组。

Methylation in the CHH Context Allows to Predict Recombination in Rice.

机构信息

iÓMICAS, Facultad de Ingeniería y Ciencias, Pontificia Universidad Javeriana, Cali 760031, Colombia.

The Alliance of Bioversity International and the International Center for Tropical Agriculture (CIAT), Palmira 763537, Colombia.

出版信息

Int J Mol Sci. 2022 Oct 19;23(20):12505. doi: 10.3390/ijms232012505.

Abstract

DNA methylation is the most studied epigenetic trait. It is considered a key factor in regulating plant development and physiology, and has been associated with the regulation of several genomic features, including transposon silencing, regulation of gene expression, and recombination rates. Nonetheless, understanding the relation between DNA methylation and recombination rates remains a challenge. This work explores the association between recombination rates and DNA methylation for two commercial rice varieties. The results show negative correlations between recombination rates and methylated cytosine counts for all contexts tested at the same time, and for CG and CHG contexts independently. In contrast, a positive correlation between recombination rates and methylated cytosine count is reported in CHH contexts. Similar behavior is observed when considering only methylated cytosines within genes, transposons, and retrotransposons. Moreover, it is shown that the centromere region strongly affects the relationship between recombination rates and methylation. Finally, machine learning regression models are applied to predict recombination using the count of methylated cytosines in the CHH context as the entrance feature. These findings shed light on the understanding of the recombination landscape of rice and represent a reference framework for future studies in rice breeding, genetics, and epigenetics.

摘要

DNA 甲基化是研究最多的表观遗传特征之一。它被认为是调节植物发育和生理的关键因素,并与几个基因组特征的调节有关,包括转座子沉默、基因表达调控和重组率。尽管如此,理解 DNA 甲基化与重组率之间的关系仍然是一个挑战。本研究探讨了两个商业水稻品种的重组率与 DNA 甲基化之间的关系。结果表明,在所有测试的背景下,重组率与甲基化胞嘧啶计数之间呈负相关,而在 CG 和 CHG 背景下,重组率与甲基化胞嘧啶计数之间呈正相关。在 CHH 背景下,也观察到了类似的行为,当只考虑基因、转座子和反转录转座子内的甲基化胞嘧啶时。此外,研究表明着丝粒区域强烈影响重组率与甲基化之间的关系。最后,应用机器学习回归模型,以 CHH 背景下甲基化胞嘧啶计数作为入口特征,预测重组率。这些发现为理解水稻的重组景观提供了线索,并为未来在水稻育种、遗传学和表观遗传学方面的研究提供了参考框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/772a/9604423/74df05255fe7/ijms-23-12505-g001.jpg

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