水稻低温应答基因OsLCL3的分离与功能鉴定
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转基因生物新品种培育重大专项(2013ZX08009-003-002)


Isolating and characterizing one low-temperature-responsive
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    摘要:

    为探明水稻响应低温的分子机制,改良水稻对低温的抗性,从水稻低温诱导表达谱中挑选了1个受低温诱导的基因OsLCL3,通过实时定量PCR和启动子驱动GUS报告基因转化水稻的方法验证其功能。对OsLCL3进行同源蛋白搜索,发现它属于DUF761超家族,并对这个超家族中的部分蛋白序列进行了系统树分析;通过水稻原生质体瞬时表达系统,初步确定OsLCL3蛋白定位于细胞核和细胞质中。在水稻中超量表达OsLCL3基因,并对转基因植株进行低温胁迫处理,发现超量表达OsLCL3的植株在低温胁迫下的电导率显著低于野生型对照植株,胁迫后超量表达植株的存活率显著高于野生型对照植株。结果表明,OsLCL3可能在水稻对低温的应答中起着重要作用。

    Abstract:

    To better understand the molecular mechanism of rice (Oryza sativa L.) in response to cold stress and further improve its tolerance to cold stress,a cold-responsive gene OsLCL3 was screened from cold stress expression profiles of rice gene chips.OsLCL3 was confirmed to be induced by low temperature (4℃) strongly with real-time fluorescent quantitative PCR and the expression of GUS reporter gene expression in stable transgenic rice driven by the promoter of OsLCL3.Homologous protein sequence analysis showed that OsLCL3 and its homologous proteins belong to DUF761 super family.Phylogenetic analysis of part members of this family including four homologs in rice genome was conducted.Subcellular localization analysis of OsLCL3 in rice protoplast showed that it was localized in nucleus and cytoplasm.Transgenic rice lines with over-expressing OsLCL3 were obtained and three of them were tested for low temperature stress tolerance.Results showed that the electrical conductivity of overexpression lines under the low temperature stress was significantly lower than that of wild type plants.The survival rate of overexpression lines was significantly higher than that of wild type plants.These results indicate that OsLCL3 may play an important role in low temperature response in rice.

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黄建平,熊立仲.水稻低温应答基因OsLCL3的分离与功能鉴定[J].华中农业大学学报,2016,35(2):1-9

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  • 收稿日期:2015-03-18
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  • 在线发布日期: 2016-03-02
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