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Transcriptomic Analysis Reveals New Insights into High-Temperature-Dependent Glume-Unclosing in an Elite Rice Male Sterile Line

机译:转录组学分析揭示了水稻雄性不育系中高温依赖的解胶的新见解

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摘要

Glume-unclosing after anthesis is a widespread phenomenon in hybrid rice and also a maternal hereditary trait. The character of Glume-unclosing in rice male sterile lines also seriously influences germination rate and the commercial quality of hybrid rice seeds. We validated that the type of glume-unclosing after anthesis in the elite rice thermo-sensitive genic male sterile (TGMS) line RGD-7S was caused by high temperature. Transcriptomic sequencing of rice panicles was performed to explore the change of transcript profiles under four conditions: pre- and post-anthesis under high temperature (HRGD0 and HRGD1), and pre- and post-anthesis under low temperature (LRGD0 and LRGD1). We identified a total of 14,540 differentially expressed genes (DEGs) including some heat shock factors (HSFs) across the four samples. We found that more genes were up-regulated than down-regulated in the sample pair HRGD1vsHRGD0. These up-regulated genes were significantly enriched in the three biological processes of carbohydrate metabolism, response to water and cell wall macromolecular metabolism. Simultaneously, we also found that the HSF gene OsHsfB1 was specially up-regulated in HRGD1vsHRGD0. However, the down-regulated DEGs in LRGD1vsLRGD0 were remarkably clustered in the biological process of carbohydrate metabolism. This suggests that carbohydrate metabolism may play a key role in regulation of glume-unclosing under high temperature in RGD-7S. We also analyzed the expression pattern of genes enriched in carbohydrate metabolism and several HSF genes under different conditions and provide new insights into the cause of rice glume-unclosing.
机译:花后开胶是杂交水稻中普遍存在的现象,也是母体遗传性状。水稻雄性不育系中的脱粒特性也严重影响了杂交水稻种子的发芽率和商业品质。我们验证了精英水稻热敏基因雄性不育系(TGMS)RGD-7S中花后开颖的类型是由高温引起的。水稻穗的转录组测序研究了四种条件下转录物谱的变化:高温下的花前和花后(HRGD0和HRGD1),以及低温下的花前和花后(LRGD0和LRGD1)。我们在四个样本中总共鉴定了14,540个差异表达基因(DEG),其中包括一些热激因子(HSF)。我们发现样本对HRGD1vsHRGD0中上调的基因多于下调的基因。这些上调的基因显着丰富了碳水化合物代谢,对水和细胞壁大分子代谢的三个生物学过程。同时,我们还发现HSF基因OsHsfB1在HRGD1vsHRGD0中被特别上调。然而,LRGD1vsLRGD0中下调的DEGs在碳水化合物代谢的生物学过程中明显聚集。这表明在RGD-7S中,碳水化合物的代谢可能在调节高温下的颖花解开中起关键作用。我们还分析了在不同条件下富含碳水化合物代谢的基因和几种HSF基因的表达模式,并为了解水稻颖花解开的原因提供了新见解。

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