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Screening physiology of rice drought stress protein

机译:水稻干旱胁迫蛋白的筛选生理

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Achieving drought tolerance in rice requires a deeper understanding of the relationship between possible physiological mechanisms available for water stress tolerance and the identification of expressed proteins under adverse conditions. An investigation was carried out at N.D. U.A. T, Kumarganj, Faizabad. The introgression lines and checks were sown under drought stress and control (irrigated) condition. Drought stress situation was applied 60 days after sowing, while in case of control condition optimum moisture was maintained by frequent irrigations. The rice leaves were selected from drought and control conditions, four introgression lines were selected for 12% acryl amide gel electrophoresis, along with two checks 1R 64 and NDR 97. Out of fourintrogression lines two lines IR 82870-26 and IR 82870-29 were susceptible and other two lines IR 82870-2 and IR 82870-11 were drought tolerant. The leaf protein produced novel bandings patterns in two lines IR 82870-2 and IR 82870-11 rice genotypes which also exhibited good response under drought environment.
机译:实现水稻的耐旱性需要更深入地了解可用于水分胁迫的可能生理机制与在不利条件下鉴定表达蛋白之间的关系。在美国北达科他州进行了调查。 T,库玛甘杰,法扎巴德。在干旱胁迫和控制(灌溉)条件下播种渗种系和检查。播种后60天施加干旱胁迫状况,而在控制条件下,通过频繁灌溉保持最佳水分。从干旱和控制条件中选择稻叶,选择四个渗入系进行12%丙烯酰胺凝胶电泳,以及两个检查1R 64和NDR97。在四个渗入系中,两个系IR 82870-26和IR 82870-29为易感株系,其他两个品系IR 82870-2和IR 82870-11都耐旱。叶蛋白在两个水稻系IR 82870-2和IR 82870-11的基因型上产生了新颖的条带模式,在干旱环境下也表现出良好的响应。

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