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The calcium-dependent protein kinase ZmCDPK7 functions in heat-stress tolerance in maize 被引量:10
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作者 Yulong Zhao Hanwei Du +9 位作者 Yankai Wang Huali Wang Shaoyu Yang Chaohai Li Ning Chen Hao Yang Yihao Zhang Yulin Zhu Luyao Yang Xiuli Hu 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2021年第3期510-527,共18页
Global warming poses a serious threat to crops.Calcium-dependent protein kinases(CDPKs)/CPKs play vital roles in plant stress responses,but their exact roles in plant thermotolerance remains elusive.Here,we explored t... Global warming poses a serious threat to crops.Calcium-dependent protein kinases(CDPKs)/CPKs play vital roles in plant stress responses,but their exact roles in plant thermotolerance remains elusive.Here,we explored the roles of heat-induced ZmCDPK7 in thermotolerance in maize.ZmCDPK7-overexpressing maize plants displayed higher thermotolerance,photosynthetic rates,and antioxidant enzyme activity but lower H2 O2 and malondialdehyde(MDA)contents than wild-type plants under heat stress.ZmCDPK7-knockdown plants displayed the opposite patterns.ZmCDPK7 is attached to the plasma membrane but can translocate to the cytosol under heat stress.ZmCDPK7 interacts with the small heat shock protein sHSP17.4,phosphorylates sHSP17.4 at Ser-44 and the respiratory burst oxidase homolog RBOHB at Ser-99,and up regulates their expression.Site-directed mutagenesis of sHSP17.4 to generate a Ser-44-Ala substitution reduced ZmCDPK7’s enhancement of catalase activity but enhanced ZmCDPK7’s suppression of MDA accumulation in heat-stressed maize protoplasts.sHSP17.4,ZmCDPK7,and RBOHB were less strongly upregulated in response to heat stress in the abscisic acid-deficient mutant vp5 versus the wild type.Pretreatment with an RBOH inhibitor suppressed sHSP17.4 and ZmCDPK7 expression.Therefore,abscisic acid-induced ZmCDPK7 functions both upstream and downstream of RBOH and participates in thermotolerance in maize by mediating the phosphorylation of sHSP17.4,which might be essential for its chaperone function. 展开更多
关键词 ABA MAIZE RBOHs sHSP17.4 phosphorylation THERMOTOLERANCE zmcdpk7
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ZmCDPK7增强玉米原生质体的耐热性分析 被引量:3
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作者 杜晗蔚 罗艳敏 +4 位作者 吕闪闪 孙金凤 王延凯 胡秀丽 田志强 《河南农业大学学报》 CSCD 2021年第4期621-630,共10页
以玉米品种郑单958为试验材料,对玉米中40个ZmCDPKs的主要结构进行生物信息学技术分析,显示它们的结构域具有很高的保守性。利用qRT-PCR对这40个ZmCDPKs表达进行分析,发现ZmCDPK7表达显著受高温诱导。通过在玉米叶原生质体瞬时过表达或... 以玉米品种郑单958为试验材料,对玉米中40个ZmCDPKs的主要结构进行生物信息学技术分析,显示它们的结构域具有很高的保守性。利用qRT-PCR对这40个ZmCDPKs表达进行分析,发现ZmCDPK7表达显著受高温诱导。通过在玉米叶原生质体瞬时过表达或沉默ZmCDPK7来分析其作用,结果显示,与无高温胁迫相比,瞬时过表达ZmCDPK7显著促进了高温胁迫诱导的小热休克蛋白sHSP17.4、热休克蛋白HSP70、过氧化氢酶CAT1、抗坏血酸过氧化物酶APX1、呼吸爆发氧化酶同源物RBOHA和RBOHB的表达及CAT和APX的活性增加,但降低了高温胁迫诱导的MDA,H_(2)O_(2)含量增加;而瞬时沉默ZmCDPK7的作用相反。 展开更多
关键词 玉米 zmcdpk7 耐热性 瞬时表达 瞬时沉默
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