Zhang Weiyang, Huang Hanghang, Zhou Yujiao, Zhu Kuanyu, Wu Yunfei, Xu Yunji, Wang Weilu, Zhang Hao, Gu Junfei, Xiong Fei, Wang Zhiqin, Liu Lijun, Yang Jianchang
Jiangsu Key Laboratory of Crop Genetics and Physiology/Jiangsu Key Laboratory of Crop Cultivation and Physiology, Agricultural College of Yangzhou University, Yangzhou, China.
Jiangsu Co-Innovation Center for Modern Production Technology of Grain Crops, Yangzhou University, Yangzhou, China.
Plant Cell Environ. 2023 Apr;46(4):1340-1362. doi: 10.1111/pce.14436. Epub 2022 Oct 10.
This study tested the hypothesis that brassinosteroids (BRs) mediate moderate soil-drying (MD) to alleviate spikelet degeneration under high temperature (HT) stress during meiosis of rice (Oryza sativa L.). A rice cultivar was pot-grown and subjected to normal temperature (NT) and HT treatments during meiosis, and two irrigation regimes including well-watered (WW) and MD were imposed to the plants simultaneously. The MD effectively alleviated the spikelet degeneration and yield loss under HT stress mainly via improving root activity and canopy and panicle traits including higher photosynthetic capacity, tricarboxylic acid cycle activity, and antioxidant capacity than WW. These parameters were regulated by BRs levels in plants. The decrease in BRs levels at HT was due mainly to the enhanced BRs decomposition, and the MD could rescue the BRs deficiency at HT via enhancing BRs biosynthesis and impeding decomposition. The connection between BRs and HT was verified by using rice BRs-deficient mutants, transgenic rice lines, and chemical regulators. Similar results were obtained in the open-air field experiment. The results suggest that BRs can mediate the MD to alleviate spikelet degeneration under HT stress during meiosis mainly via enhancing root activity, canopy traits, and young panicle traits of rice.
油菜素甾醇(BRs)介导适度土壤干燥(MD),以减轻水稻(Oryza sativa L.)减数分裂期间高温(HT)胁迫下的小穗退化。将一个水稻品种盆栽,在减数分裂期间进行常温(NT)和高温处理,并同时对植株施加两种灌溉方式,即充分灌溉(WW)和适度土壤干燥(MD)。适度土壤干燥主要通过提高根系活力以及冠层和穗部性状,包括比充分灌溉具有更高的光合能力、三羧酸循环活性和抗氧化能力,有效减轻了高温胁迫下的小穗退化和产量损失。这些参数受植株中油菜素甾醇水平的调控。高温下油菜素甾醇水平的降低主要是由于油菜素甾醇分解增强,而适度土壤干燥可通过增强油菜素甾醇生物合成和抑制分解来挽救高温下的油菜素甾醇缺乏。利用水稻油菜素甾醇缺陷型突变体、转基因水稻品系和化学调节剂验证了油菜素甾醇与高温之间的联系。在露天田间试验中也获得了类似结果。结果表明,油菜素甾醇可介导适度土壤干燥,主要通过增强水稻的根系活力、冠层性状和幼穗性状,来减轻减数分裂期间高温胁迫下的小穗退化。