Department of Plant Science, University of Manitoba, Winnipeg, R3T2N2, MB, Canada.
Department of Plant Science, University of Manitoba, Winnipeg, R3T2N2, MB, Canada.
Plant Physiol Biochem. 2021 Oct;167:901-910. doi: 10.1016/j.plaphy.2021.08.046. Epub 2021 Sep 1.
Maize (Zea mays) plants over-expressing or suppressing the class 1 Phytoglobin (ZmPgb1.1) were evaluated for their ability to cope with low temperature stress. Cold treatment (10 °C day/4 °C night) depressed several gas exchange parameters including photosynthetic rate, stomatal conductance and transpiration, while elevated the levels of reactive oxygen species (ROS) and ROS-induced damage. These effects were attenuated by the over-expression of ZmPgb1.1, and aggravated when the level of the same gene was suppressed. Combination of transcriptomic and pharmacological studies revealed that over-expression of ZmPgb1.1 suppressed the level of nitric oxide (NO), which lowers the transcription of several Brassinosteroid (BR) biosynthetic and response genes. Cellular BR was required to induce the expression of ZmMPK5, a component of the mitogen-activated protein kinase (MAPK) cascade, which is known to be involved in the regulation of ROS-producing pathways. Experimental reduction of NO content, suppression of BR or inhibition of ZmMPK5 reverted the beneficial effects of ZmPgb1.1 over-expression, and increased plant susceptibility to cold stress through accumulation of ROS. Conversely, tolerance to cold was augmented in the ZmPgb1.1 down-regulating line when the levels of NO or BR were elevated. Together, this study demonstrates a novel role of ZmPgb1.1 in modulating plant performance to cold stress, and integrates the ZmPgb1.1 response in a model requiring NO and BR to alleviate oxidative stress through ZmMPK5.
过量表达或抑制类 1 植物血朊素(ZmPgb1.1)的玉米植株被评估其应对低温胁迫的能力。低温处理(10°C 白天/4°C 夜间)抑制了几个气体交换参数,包括光合速率、气孔导度和蒸腾作用,同时提高了活性氧(ROS)的水平和 ROS 诱导的损伤。ZmPgb1.1 的过表达减轻了这些影响,而当同一基因的水平受到抑制时,这些影响则加剧。转录组学和药理学研究的组合表明,ZmPgb1.1 的过表达抑制了一氧化氮(NO)的水平,从而降低了几种油菜素内酯(BR)生物合成和响应基因的转录。细胞 BR 是诱导丝裂原激活蛋白激酶(MAPK)级联反应的组成部分 ZmMPK5 表达所必需的,该激酶已知参与调节 ROS 产生途径。NO 含量的实验性降低、BR 的抑制或 ZmMPK5 的抑制使 ZmPgb1.1 过表达的有益效果逆转,并通过 ROS 的积累增加植物对低温胁迫的敏感性。相反,当 NO 或 BR 的水平升高时,ZmPgb1.1 下调系对冷胁迫的耐受性增强。总之,这项研究表明 ZmPgb1.1 在调节植物对冷胁迫的性能方面具有新的作用,并将 ZmPgb1.1 反应整合到需要 NO 和 BR 通过 ZmMPK5 缓解氧化应激的模型中。