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首页> 外文期刊>Molecular Genetics and Genomics >Over-expression of calcium-dependent protein kinase 13 and calreticulin interacting protein 1 confers cold tolerance on rice plants
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Over-expression of calcium-dependent protein kinase 13 and calreticulin interacting protein 1 confers cold tolerance on rice plants

机译:钙依赖性蛋白激酶13和钙网蛋白相互作用蛋白1的过表达赋予水稻植株耐寒性

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Calcium is a ubiquitous signaling molecule and changes in cytosolic calcium concentration are involved in plant responses to various stimuli. The rice calcium-dependent protein kinase 13 (CDPK13) and calreticulin interacting protein 1 (CRTintP1) have previously been reported to be involved in cold stress response in rice. In this study, rice lines transformed with sense CDPK13 or CRTintP1 constructs were produced and used to investigate the function of these proteins. When the plants were incubated at 5°C for 3 days, leaf blades of both the sense transgenic and vector control rice plants became wilted and curled. When the plants were transferred back to non-stress conditions after cold treatment, the leaf blades died, but the sheaths remained green in the sense transgenic rice plants. Expression of CDPK13 or CRTintP1 was further examined in several rice varieties including cold-tolerant rice varieties. Accumulation of these proteins in the cold-tolerant rice variety was higher than that in rice varieties that are intermediate in their cold tolerance. To examine whether over-expression of CDPK13 and CRTintP1 would have any effect on the proteins or not, sense transgenic rice plants were analyzed using proteomics. The 2D-PAGE profiles of proteins from the vector control were compared with those of the sense transgenic rice plants. Two of the proteins that differed between these lines were calreticulins. The results suggest that CDPK13, calreticulin and CRTintP1 might be important signaling components for response to cold stress in rice.
机译:钙是一种普遍存在的信号分子,胞质钙浓度的变化与植物对各种刺激的反应有关。水稻钙依赖性蛋白激酶13(CDPK13)和钙网蛋白相互作用蛋白1(CRTintP1)先前已被报道参与水稻的冷胁迫响应。在这项研究中,产生了用有义CDPK13或CRTintP1构建体转化的水稻品系,并用于研究这些蛋白质的功能。当将植物在5℃下温育3天时,有义转基因和载体对照水稻植物的叶片都枯萎并且卷曲。冷处理后将植物转移回非胁迫条件时,叶片死亡,但在有义转基因水稻植物中,鞘仍保持绿色。 CDPK13或CRTintP1的表达在包括耐寒水稻品种在内的多个水稻品种中进行了进一步检查。这些蛋白质在耐寒性水稻品种中的积累高于耐寒性中等的水稻品种。为了检查CDPK13和CRTintP1的过表达是否会对蛋白质产生任何影响,使用蛋白质组学技术分析了有义转基因水稻植株。将来自载体对照的蛋白质的2D-PAGE图谱与有义转基因水稻植物的2D-PAGE图谱进行比较。这些品系之间差异的两种蛋白质是钙网蛋白。结果表明,CDPK13,钙网蛋白和CRTintP1可能是水稻应对冷胁迫的重要信号成分。

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