Yan Jingwei, Guan Li, Sun Yue, Zhu Yuan, Liu Lei, Lu Rui, Jiang Mingyi, Tan Mingpu, Zhang Aying
College of Life Sciences, Nanjing Agricultural University, Nanjing 210095, China These authors contributed equally to this work.
College of Life Sciences, Nanjing Agricultural University, Nanjing 210095, China.
Plant Cell Physiol. 2015 May;56(5):883-96. doi: 10.1093/pcp/pcv014. Epub 2015 Feb 2.
Brassinosteroids (BRs) have been shown to enhance stress tolerance by inducing antioxidant defense systems. However, the mechanisms of BR-induced antioxidant defense in plants remain to be determined. In this study, the role of calcium (Ca(2+)) and maize calcium/calmodulin-dependent protein kinase (CCaMK), ZmCCaMK, in BR-induced antioxidant defense, and the relationship between ZmCCaMK and Ca(2+) in BR signaling were investigated. BR treatment led to a significant increase in cytosolic Ca(2+) concentration in protoplasts from maize mesophyll, and Ca(2+) was shown to be required for BR-induced antioxidant defense. Treatment with BR induced increases in gene expression and enzyme activity of ZmCCaMK in maize leaves. Transient overexpression and silencing of ZmCCaMK in maize protoplasts demonstrated that ZmCCaMK was required for BR-induced antioxidant defense. The requirement for CCaMK was further investigated using a loss-of-function mutant of OsCCaMK, the orthologous gene of ZmCCaMK in rice. Consistent with the findings in maize, BR treatment could not induce antioxidant defense in the rice OsCCAMK mutant. Furthermore, Ca(2+) was required for BR-induced gene expression and activation of ZmCCaMK, while ZmCCaMK was shown to enhance the BR-induced increase in cytosolic Ca(2+) concentration. Moreover, our results also showed that ZmCCaMK and H2O2 influenced each other. These results indicate that Ca(2+) works together with ZmCCaMK in BR-induced antioxidant defense, and there are two positive feedback loops between Ca(2+) or H2O2 and ZmCCaMK in BR signaling in maize.
油菜素甾醇(BRs)已被证明可通过诱导抗氧化防御系统来增强植物的胁迫耐受性。然而,BR诱导植物抗氧化防御的机制仍有待确定。在本研究中,研究了钙(Ca²⁺)和玉米钙/钙调蛋白依赖性蛋白激酶(CCaMK),即ZmCCaMK,在BR诱导的抗氧化防御中的作用,以及ZmCCaMK与Ca²⁺在BR信号传导中的关系。BR处理导致玉米叶肉原生质体中胞质Ca²⁺浓度显著增加,并且Ca²⁺被证明是BR诱导的抗氧化防御所必需的。BR处理诱导了玉米叶片中ZmCCaMK的基因表达和酶活性增加。在玉米原生质体中瞬时过表达和沉默ZmCCaMK表明,ZmCCaMK是BR诱导的抗氧化防御所必需的。使用水稻中ZmCCaMK的直系同源基因OsCCaMK的功能缺失突变体进一步研究了对CCaMK的需求。与在玉米中的发现一致,BR处理不能诱导水稻OsCCAMK突变体中的抗氧化防御。此外,Ca²⁺是BR诱导的ZmCCaMK基因表达和激活所必需的,而ZmCCaMK被证明可增强BR诱导的胞质Ca²⁺浓度增加。此外,我们的结果还表明ZmCCaMK和H₂O₂相互影响。这些结果表明,Ca²⁺与ZmCCaMK共同参与BR诱导的抗氧化防御,并且在玉米的BR信号传导中,Ca²⁺或H₂O₂与ZmCCaMK之间存在两个正反馈环。