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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,编码推定的长期无量化RNA,影响水稻中的胰穗结构

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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.
机译:表观遗传因素拓宽了真核生物中的表型多样性。 Epialleles还可以为作物育种提供新的遗传来源,但在水稻中已经确定了与农业特征有关的血糖。在这里,我们鉴定了EPI-SP,QuIse eP的函数血髓素(表观遗传短穗,OS01G0356951),其编码推定的长度非编码RNA。 EPI-SP植物显示了一种致密和短的胰胨表型,一种以半组织方式遗传的农艺学上重要的表型。我们没有发现ESP中的任何核苷酸序列变化。相反,我们发现在ESP基因的转录终止区(TTR)中发现了低甲基化,这导致ESP在EPI-SP植物中的异位表达。亚硫酸氢盐分析显示,连续313-BP区域中26cgs和13℃的甲基化状态对于esp表达的调节至关重要。因此,我们的工作鉴定了一种独特的稻米EPIALLE,并表明ESP的表观遗传改性与水稻中的穗结构调节有关。

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