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DNA 连接酶 I 在拟南芥种子发育中发挥母源效应。

DNA LIGASE I exerts a maternal effect on seed development in Arabidopsis thaliana.

机构信息

Temasek Life Sciences Laboratory, 1 Research Link, National University of Singapore, 117604 Singapore.

出版信息

Development. 2010 Jan;137(1):73-81. doi: 10.1242/dev.041020.

Abstract

Maternal effects are defined by mutations that affect the next generation when they are maternally inherited. To date, most indepth studies of maternal effects in plants have attributed their origin to genomic imprinting that restricts expression to the maternal allele. The DNA glycosylase DEMETER (DME) removes methylated cytosine residues, causing transcriptional activation of the maternal allele of imprinted genes. In this study, we show that loss-of-function of the major DNA LIGASE I (AtLIG1) in Arabidopsis thaliana causes maternal effects in the endosperm, which is the seed tissue that nurtures embryo development. AtLIG1 expression is not imprinted and has a limited impact on imprinted gene expression. Genetic interaction analyses further indicate that AtLIG1 acts downstream of DME. The removal of methylated cytosine residues by DME involves the creation of DNA single-strand breaks and our results suggest that AtLIG1 repairs these breaks.

摘要

母本效应是指当突变通过母本遗传传递给下一代时,会影响下一代的特征。迄今为止,对植物母本效应的深入研究大多归因于基因组印记,这种机制限制了等位基因的表达仅限于母本等位基因。去甲基化酶 DEMETER(DME)可以去除甲基化的胞嘧啶残基,导致印记基因的母本等位基因的转录激活。在这项研究中,我们表明拟南芥主要 DNA 连接酶 I(AtLIG1)的功能丧失会导致胚乳中的母本效应,胚乳是滋养胚胎发育的种子组织。AtLIG1 的表达不受印记的影响,对印记基因的表达影响有限。遗传相互作用分析进一步表明,AtLIG1 作用于 DME 的下游。DME 通过去除甲基化的胞嘧啶残基,会产生 DNA 单链断裂,我们的结果表明 AtLIG1 修复了这些断裂。

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