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首页> 外文期刊>Frontiers in Plant Science >Molecular and Functional Characterization of a Wheat B2 Protein Imparting Adverse Temperature Tolerance and Influencing Plant Growth
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Molecular and Functional Characterization of a Wheat B2 Protein Imparting Adverse Temperature Tolerance and Influencing Plant Growth

机译:小麦B2蛋白的分子和功能表征影响逆温耐受性并影响植物生长。

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Genomic attempts were undertaken to elucidate the plant developmental responses to heat stress, and to characterize the roles of B2 protein in mediating those responses. A wheat expressed sequence tag for B2 protein was identified which was cloned and characterized to assess its functional relevance causing plant growth and development during stress adaptation. Here, we show that wheat B2 protein is highly expressed in root and shoot tissues as well as in developing seed tissues under high temperature stress conditions. Morphological studies of transgenic Arabidopsis overexpressing gene encoding wheat B2 protein and Δ b2 mutant plants were studied at major developmental stages. The stunted growth phenotype of mutant plants, together with hypocotyl and root elongation analysis of transgenic plants showed that B2 protein exhibits a crucial role in plant growth and development. Additional physiological analyses highlights the role of B2 protein in increased tolerance to heat and cold stresses by maintaining high chlorophyll content, strong activity of photosystem II and less membrane damage of overexpression transgenics as compared with the wild-type. Furthermore, the constitutive overexpression of TaB2 in Arabidopsis resulted in ABA hypersensitivity. Taken together, these studies suggest a novel perspectives of B2 protein in plant development and in mediating the thermal stress tolerance.
机译:进行了基因组尝试,以阐明植物对热胁迫的发育应答,并表征B2蛋白在介导这些应答中的作用。鉴定了小麦表达的B2蛋白的序列标签,将其克隆并表征以评估其功能相关性,从而在逆境适应期间引起植物生长和发育。在这里,我们显示了小麦B2蛋白在高温胁迫条件下在根和芽组织以及发育中的种子组织中高表达。在主要发育阶段研究了转基因拟南芥过表达编码小麦B2蛋白和Δb2突变植物的基因的形态学研究。突变植物的发育迟缓生长表型,以及对转基因植物的胚轴和根伸长分析表明,B2蛋白在植物的生长发育中起着至关重要的作用。额外的生理分析突出了B2蛋白与野生型相比,通过维持高的叶绿素含量,光系统II的强活性以及过表达转基因的膜破坏更少,在提高对热和冷胁迫的耐受性中的作用。此外,拟南芥中TaB2的组成型过表达导致ABA超敏反应。综上所述,这些研究提出了B2蛋白在植物发育和介导热胁迫耐受性方面的新观点。

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