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Expression pattern and core region analysis of AtMPK3 promoter in response to environmental stresses 被引量:3
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作者 GAO Fei1,2, SU Qi1, FAN YunLiu1& WANG Lei1 1Biotechnology Research Institute/National Key Facility for Crop Gene Resources and Genetic Improvement, Chinese Academy of Agricultural Science, Beijing 100081, China 2College of Life and Environmental Sciences, Minzu University of China, Beijing 100081, China 《Science China(Life Sciences)》 SCIE CAS 2010年第11期1315-1321,共7页
The protein kinase AtMPK3,a component of the MAP kinase cascade,plays an important role in stress signal transduction in plant cells. To clarify how AtMPK3 is regulated at the transcriptional level in response to vari... The protein kinase AtMPK3,a component of the MAP kinase cascade,plays an important role in stress signal transduction in plant cells. To clarify how AtMPK3 is regulated at the transcriptional level in response to various environmental factors, the 1016-bp promoter sequence upstream of the transcription start site of the AtMPK3 gene was isolated. Analyses of the promoter sequence using plant promoter databases revealed that the AtMPK3 promoter contains many potential cis-acting elements involved in environmental stress responses. We constructed four deletion mutants of the AtMPK3 promoter, and introduced the intact and truncated promoter sequences fused to the β-glucuronidase (GUS) gene into Arabidopsis. GUS histochemical staining and quantitative fluorometric GUS assays were performed to visualize and compare the expression patterns in response to different environmental stimuli. The region between-188 and-62 upstream of the transcription start site was identified as the essential DNA sequence of the AtMPK3 promoter for responses to drought, high salinity, low temperature, and wounding. These results advance our understanding of the molecular mechanisms controlling AtMPK3 expression in response to different environmental stimuli. 展开更多
关键词 ARABIDOPSIS THALIANA atmpk3 PROMOTER STRESS
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拟南芥AtMPK3启动子应逆境信号的表模和必需区域分析 被引量:3
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作者 高飞 苏琦 +1 位作者 范云六 王磊 《中国科学:生命科学》 CSCD 北大核心 2010年第10期963-969,共7页
蛋白激酶AtMPK3参与MAPK级联途径,在植物逆境信号转中起重要作用.为深入研究AtMPK3因在转录水平上应各种环境胁迫的分子制,本研究从拟南芥因组中分离了AtMPK3因转录起位点上游1016bp的启动子序列,对其进行了生物信息学分析.对该启动子... 蛋白激酶AtMPK3参与MAPK级联途径,在植物逆境信号转中起重要作用.为深入研究AtMPK3因在转录水平上应各种环境胁迫的分子制,本研究从拟南芥因组中分离了AtMPK3因转录起位点上游1016bp的启动子序列,对其进行了生物信息学分析.对该启动子进行了系列缺失突变,并将完整启动子和缺失启动子片段与GUS报告因融合,转因入拟南芥中.携带AtMPK3启动子及其各种缺失突变体的转因植株在干旱、高盐、低温、械损伤等胁迫条件的GUS组织化学染色和荧光定量分析表明,AtMPK3启动子应干旱、高盐、低温、械损伤逆境信号的必需元件位于启动子序列中转录起位点上游-188~-62区域内,揭了AtMPK3启动子在不同环境胁迫条件下的表模的差异.本研究结果有助于阐述AtMPK3因在转录水平上应不同胁迫信号分子制. 展开更多
关键词 拟南芥 atmpk3 启动子 逆境
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