Zhou Jieqiang, Wang Yingfeng, Li Jiangfeng, Song Zijian, Xiao Yunhua, Deng Huabing, Liu Xiong, Chen Qiuhong, Tang Wenbang, Zhang Guilian
College of Agronomy, Hunan Agricultural University, Changsha 410128, China.
State Key Laboratory of Hybrid Rice, Changsha 410128, China.
Int J Mol Sci. 2025 Mar 29;26(7):3161. doi: 10.3390/ijms26073161.
Screening and breeding more resistant heat stress restorer lines represent an effective approach to addressing the decline in hybrid rice seed production caused by heat stress (HS). However, the molecular mechanisms affecting the differences in the heat resistance of anthers under HS remain unclear. This study compared the gene expression patterns of two hybrid rice restorer lines with differing heat resistances under HS and discusses the mechanisms of the heat response in rice. Under heat stress, 247 DEGs were co-expressed across varieties and were involved in biological processes such as protein processing and carbon metabolism, with heat shock proteins being the most ubiquitous. Interestingly, a substantial enrichment of genes related to non-structural carbohydrates and ATP was observed among the unique DEGs in R996 and R4628. Simultaneously, the contents of non-structural carbohydrates and ATP levels in the young spikes of R996 were significantly higher than those in R4628. This suggests that starch, soluble sugars and ATP play significant roles in heat tolerance during the flowering stage of rice. Overall, this study provides novel insights into the molecular mechanisms underlying heat stress resistance in indica rice restorer lines and informs future strategies for the genetic improvement of heat tolerance in these varieties.
筛选和培育更耐热的恢复系是解决热胁迫导致杂交水稻制种产量下降问题的有效途径。然而,热胁迫下影响花药耐热性差异的分子机制仍不清楚。本研究比较了两个耐热性不同的杂交水稻恢复系在热胁迫下的基因表达模式,并探讨了水稻热响应的机制。在热胁迫下,247个差异表达基因在不同品种间共表达,参与蛋白质加工和碳代谢等生物学过程,其中热休克蛋白最为普遍。有趣的是,在R996和R4628的独特差异表达基因中,观察到与非结构性碳水化合物和ATP相关的基因大量富集。同时,R996幼穗中非结构性碳水化合物含量和ATP水平显著高于R4628。这表明淀粉、可溶性糖和ATP在水稻开花期的耐热性中发挥重要作用。总体而言,本研究为籼稻恢复系耐热性的分子机制提供了新见解,并为这些品种耐热性的遗传改良提供了未来策略。