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RNA测序揭示温度变化下参与水稻雄性生殖发育的基因

RNA Sequencing Reveals Rice Genes Involved in Male Reproductive Development under Temperature Alteration.

作者信息

Khlaimongkhon Sudthana, Chakhonkaen Sriprapai, Tongmark Keasinee, Sangarwut Numphet, Panyawut Natjaree, Wasinanon Thiwawan, Sikaewtung Kannika, Wanchana Samart, Mongkolsiriwatana Chareerat, Chunwonges Julapark, Muangprom Amorntip

机构信息

Center for Agricultural Biotechnology, Kasetsart University, Kamphaeng Saen Campus, Kamphaeng Saen 73140, Thailand.

Center of Excellence on Agricultural Biotechnology: (AG-BIO/PERDO-CHE), Bangkok 10900, Thailand.

出版信息

Plants (Basel). 2021 Mar 30;10(4):663. doi: 10.3390/plants10040663.

Abstract

Rice ( L.) is one of the most important food crops, providing food for nearly half of the world population. Rice grain yields are affected by temperature changes. Temperature stresses, both low and high, affect male reproductive development, resulting in yield reduction. Thermosensitive genic male sterility (TGMS) rice is sterile at high temperature and fertile at low temperature conditions, facilitating hybrid production, and is a good model to study effects of temperatures on male development. Semithin sections of the anthers of a TGMS rice line under low (fertile) and high (sterile) temperature conditions showed differences starting from the dyad stage, suggesting that genes involved in male development play a role during postmeiotic microspore development. Using RNA sequencing (RNA-Seq), transcriptional profiling of TGMS rice panicles at the dyad stage revealed 232 genes showing differential expression (DEGs) in a sterile, compared to a fertile, condition. Using qRT-PCR to study expression of 20 selected DEGs using panicles of TGMS and wild type rice plants grown under low and high temperature conditions, revealed that six out of the 20 selected genes may be unique to TGMS, while the other 14 genes showed common responses to temperatures in both TGMS and wild-type rice plants. The results presented here would be useful for further investigation into molecular mechanisms controlling TGMS and rice responses to temperature alteration.

摘要

水稻(Oryza sativa L.)是最重要的粮食作物之一,为世界近一半人口提供食物。水稻产量受温度变化影响。低温和高温胁迫都会影响雄性生殖发育,导致产量降低。温敏核雄性不育(TGMS)水稻在高温下不育,在低温条件下可育,有利于杂交制种,是研究温度对雄性发育影响的良好模型。对一个TGMS水稻品系在低温(可育)和高温(不育)条件下花药的半薄切片观察发现,从二分体阶段开始就存在差异,这表明参与雄性发育的基因在减数分裂后小孢子发育过程中发挥作用。利用RNA测序(RNA-Seq)技术,对二分体阶段TGMS水稻幼穗进行转录组分析,发现与可育条件相比,不育条件下有232个基因呈现差异表达(DEGs)。利用qRT-PCR技术,对在低温和高温条件下生长的TGMS和野生型水稻植株的幼穗中20个选定的DEGs的表达情况进行研究,结果表明,在选定的20个基因中,有6个可能是TGMS特有的,而其他14个基因在TGMS和野生型水稻植株中对温度表现出共同响应。本文的研究结果将有助于进一步探究控制TGMS的分子机制以及水稻对温度变化的响应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e33f/8066911/69efb63a3f1d/plants-10-00663-g001.jpg

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