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Overexpression of a calcium-dependent protein kinase gene enhances growth of rice under low-nitrogen conditions

机译:钙依赖性蛋白激酶基因的过表达促进了低氮条件下水稻的生长

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The excessive amounts of nitrogen applied in current farming systems can cause environmental problems. There is therefore a need to improve the ability of crop plants to utilize nitrogenous fertilizers. We screened for nitrogen deficiency-tolerant lines among transgenic rice plants that overexpressed full-length cDNAs (FL-cDNAs) corresponding to low-nitrogen response genes, genes related to nitrogen metabolism, and genes related to carbon metabolism. We found that overexpression of OsCPK12 FL-cDNA, encoding a calcium-dependent protein kinase ( CDPK), conferred tolerance to low-nitrogen stress in rice. After two weeks of low-nitrogen treatment, dry weights of shoots from OsCPK12-overexpressing plants were greater than those from control plants. Furthermore, total nitrogen contents of OsCPK12-overexpressing plants were higher than those of the control plants. Our findings suggest that OsCPK12 is involved in the signal transduction pathway(s) in the low-nitrogen stress response and may be useful in engineering crop plants with improved tolerance to low nitrogen levels.
机译:当前耕作系统中过量使用的氮会导致环境问题。因此,需要提高农作物利用含氮肥料的能力。我们筛选了过表达全长cDNA(FL-cDNA)的转基因水稻植物中的耐缺氮品系,该全长cDNA与低氮反应基因,与氮代谢有关的基因以及与碳代谢有关的基因相对应。我们发现,OsCPK12 FL-cDNA的过表达,编码钙依赖性蛋白激酶(CDPK),赋予了水稻低氮胁迫耐受性。经过两周的低氮处理后,过表达OsCPK12的植物的芽的干重大于对照植物的。此外,过表达OsCPK12的植物的总氮含量高于对照植物。我们的发现表明,OsCPK12参与了低氮胁迫响应的信号转导途径,并且可能在工程作物中对低氮水平具有更高的耐受性。

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