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Epigenetic modification of ESP encoding a putative long noncoding RNA affects panicle architecture in rice

机译:ESP的表观遗传修饰编码一个假定的长非编码RNA影响水稻的穗构型

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摘要

Epigenetic variants broaden phenotypic diversity in eukaryotes. Epialleles may also provide a new genetic source for crop breeding, but very few epialleles related to agricultural traits have been identified in rice. Here, we identified Epi-sp, a gain-of-function epiallele of the rice ESP (Epigenetic Short Panicle, Os01g0356951), which encodes a putative long noncoding RNA. The Epi-sp plants show a dense and short panicle phenotype, an agronomically important phenotypes that is inherited in a semidominant manner. We did not find any nucleotide sequence variation in ESP. Instead, we found hypomethylation in the transcriptional termination region (TTR) of ESP gene, which caused ectopic expression of ESP in Epi-sp plants. Bisulfite analysis revealed that the methylation status of 26 CGs and 13 CHGs within a continuous 313-bp region is essential for the regulation of ESP expression. Thus, our work identified a unique rice epiallele and demonstrated that epigenetic modification of ESP is associated with the regulation of panicle architecture in rice.Electronic supplementary materialThe online version of this article (10.1186/s12284-019-0282-1) contains supplementary material, which is available to authorized users.
机译:表观遗传变异扩大了真核生物的表型多样性。上等位基因也可能为作物育种提供新的遗传来源,但是在水稻中很少发现与农业性状有关的等位基因。在这里,我们确定了Epi-sp,这是水稻ESP(表观遗传短穗,Os01g0356951)的一种功能增强的等位基因,其编码一个假定的长非编码RNA。 Epi-sp植物表现出密集而短的穗表型,这是一种以半显性方式遗传的重要的农学表型。我们在ESP中未发现任何核苷酸序列变异。相反,我们在ESP基因的转录终止区(TTR)中发现了甲基化不足,这导致Epi-sp植物中ESP的异位表达。亚硫酸氢盐分析表明,连续313bp区域内26个CG和13个CHG的甲基化状态对于调节ESP表达至关重要。因此,我们的工作确定了独特的水稻等位基因,并证明了ESP的表观遗传修饰与水稻穗构型的调节有关。电子补充材料本文的在线版本(10.1186 / s12284-019-0282-1)包含补充材料,可供授权用户使用。

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