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长非编码 RNA 调控光敏感雄性不育,这是杂交水稻的重要组成部分。

A long noncoding RNA regulates photoperiod-sensitive male sterility, an essential component of hybrid rice.

机构信息

National Key Laboratory of Crop Genetic Improvement and National Centre of Plant Gene Research, Huazhong Agriculture University, Wuhan 430070, China.

出版信息

Proc Natl Acad Sci U S A. 2012 Feb 14;109(7):2654-9. doi: 10.1073/pnas.1121374109. Epub 2012 Jan 30.

Abstract

Hybrid rice has greatly contributed to the global increase of rice productivity. A major component that facilitated the development of hybrids was a mutant showing photoperiod-sensitive male sterility (PSMS) with its fertility regulated by day length. Transcriptome studies have shown that large portions of the eukaryotic genomic sequences are transcribed to long noncoding RNAs (lncRNAs). However, the potential roles for only a few lncRNAs have been brought to light at present. Thus, great efforts have to be invested to understand the biological functions of lncRNAs. Here we show that a lncRNA of 1,236 bases in length, referred to as long-day-specific male-fertility-associated RNA (LDMAR), regulates PSMS in rice. We found that sufficient amount of the LDMAR transcript is required for normal pollen development of plants grown under long-day conditions. A spontaneous mutation causing a single nucleotide polymorphism (SNP) between the wild-type and mutant altered the secondary structure of LDMAR. This change brought about increased methylation in the putative promoter region of LDMAR, which reduced the transcription of LDMAR specifically under long-day conditions, resulting in premature programmed cell death (PCD) in developing anthers, thus causing PSMS. Thus, a lncRNA could directly exert a major effect on a trait like a structure gene, and a SNP could alter the function of a lncRNA similar to amino acid substitution in structural genes. Molecular elucidating of PSMS has important implications for understanding molecular mechanisms of photoperiod regulation of many biological processes and also for developing male sterile germplasms for hybrid crop breeding.

摘要

杂交水稻极大地促进了全球水稻生产力的提高。促成杂种发展的一个主要因素是一种表现出光周期敏感雄性不育(PSMS)的突变体,其育性受日长调节。转录组研究表明,真核基因组序列的很大一部分被转录为长非编码 RNA(lncRNA)。然而,目前仅揭示了少数几个 lncRNA 的潜在作用。因此,必须投入大量努力来了解 lncRNA 的生物学功能。在这里,我们展示了一个长度为 1236 个碱基的 lncRNA,称为长日特异性雄性可育相关 RNA(LDMAR),它调节水稻中的 PSMS。我们发现,在长日条件下生长的植物中,需要足够数量的 LDMAR 转录本才能正常花粉发育。一个导致野生型和突变型之间单核苷酸多态性(SNP)的自发突变改变了 LDMAR 的二级结构。这种变化导致 LDMAR 假定启动子区域的甲基化增加,特别是在长日条件下,LDMAR 的转录减少,导致发育中的花药程序性细胞死亡(PCD),从而导致 PSMS。因此,lncRNA 可以像结构基因一样直接对一个性状产生主要影响,而 SNP 可以改变 lncRNA 的功能,类似于结构基因中的氨基酸替换。PSMS 的分子阐明对于理解许多生物学过程的光周期调节的分子机制以及开发用于杂交作物育种的雄性不育种质具有重要意义。

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