Xu Qingshan, Wei Qianqian, Kong Yali, Zhu Lianfeng, Tian Wenhao, Huang Jing, Pan Lin, Jin Qianyu, Zhang Junhua, Zhu Chunquan
State Key Laboratory of Rice Biology, China National Rice Research Institute, Hangzhou 310006, China.
School of Resources and Environmental Engineering, Anhui University, Hefei 230039, China.
Life (Basel). 2022 Jun 2;12(6):833. doi: 10.3390/life12060833.
Cold stress inhibits rice germination and seedling growth. Brassinolide (BR) plays key roles in plant growth, development, and stress responses. In this study, we explored the underlying mechanisms whereby BR helps alleviate cold stress in rice seedlings. BR application to the growth medium significantly increased seed germination and seedling growth of the early rice cultivar "Zhongzao 39" after three days of cold treatment. Specifically, BR significantly increased soluble protein and soluble sugar contents after three days of cold treatment. Moreover, BR stimulated the activity of superoxide dismutase, catalase, peroxidase, and ascorbate peroxidase; thereby alleviating cold-induced damage and increasing glutathione content and the GSH/GSSG ratio while concomitantly reducing HO content. BR upregulated the expression levels of cold-response-related genes, including , , , , , , and and downregulated that of , overall alleviating cold stress symptoms. Thus, BR not only upregulated cellular osmotic content and the antioxidant enzyme system to maintain the physiological balance of reactive oxygen species under cold but, additionally, it regulated the expression of cold-response-related genes to alleviate cold stress symptoms. These results provide a theoretical basis for rice breeding for cold resistance using young seedlings.
低温胁迫会抑制水稻种子萌发和幼苗生长。油菜素内酯(BR)在植物生长、发育及胁迫响应中发挥关键作用。在本研究中,我们探究了BR帮助减轻水稻幼苗低温胁迫的潜在机制。在对“中早39”早稻品种进行三天冷处理后,向生长培养基中施用BR显著提高了种子萌发率和幼苗生长量。具体而言,冷处理三天后,BR显著提高了可溶性蛋白和可溶性糖含量。此外,BR还刺激了超氧化物歧化酶、过氧化氢酶、过氧化物酶和抗坏血酸过氧化物酶的活性;从而减轻冷害并增加谷胱甘肽含量及GSH/GSSG比值,同时降低HO含量。BR上调了包括、、、、、和在内的冷响应相关基因的表达水平,并下调了的表达水平,总体上减轻了低温胁迫症状。因此,BR不仅上调了细胞渗透物质含量和抗氧化酶系统,以维持低温下活性氧的生理平衡,此外,它还调节冷响应相关基因的表达以减轻低温胁迫症状。这些结果为利用幼苗进行水稻抗寒育种提供了理论依据。