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Characterization of Stress-Responsive CIPK Genes in Rice for Stress Tolerance Improvement1[W]

机译:水稻逆境胁迫响应CIPK基因的鉴定[1] [W]

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摘要

Plants respond to adverse environments by initiating a series of signaling processes that often involves diverse protein kinases, including calcineurin B-like protein-interacting protein kinases (CIPKs). In this study, putative CIPK genes (OsCIPK01–OsCIPK30) in the rice (Oryza sativa) genome were surveyed for their transcriptional responses to various abiotic stresses. The results showed that 20 OsCIPK genes were differentially induced by at least one of the stresses, including drought, salinity, cold, polyethylene glycol, and abscisic acid treatment. Most of the genes induced by drought or salt stress were also induced by abscisic acid treatment but not by cold. A few CIPK genes containing none of the reported stress-responsive cis-elements in their promoter regions were also induced by multiple stresses. To prove that some of these stress-responsive OsCIPK genes are potentially useful for stress-tolerance improvement, three CIPK genes (OsCIPK03, OsCIPK12, and OsCIPK15) were overexpressed in japonica rice ‘Zhonghua 11’. Transgenic plants overexpressing the transgenes OsCIPK03, OsCIPK12, and OsCIPK15 showed significantly improved tolerance to cold, drought, and salt stress, respectively. Under cold and drought stresses, OsCIPK03- and OsCIPK12-overexpressing transgenic plants accumulated significantly higher contents of proline and soluble sugars than the wild type. Putative proline synthetase and transporter genes had significantly higher expression level in the transgenic plants than in the wild type. The differentially induced expression of OsCIPK genes by different stresses and the examples of improved stress tolerance of the OsCIPK transgenic rice suggest that rice CIPK genes have diverse roles in different stress responses and some of them may possess potential usefulness in stress-tolerance improvement of rice.
机译:植物通过启动一系列信号传导过程来应对不利环境,这些信号传导过程通常涉及多种蛋白激酶,包括钙调磷酸酶B样蛋白相互作用蛋白激酶(CIPK)。在这项研究中,调查了水稻(Oryza sativa)基因组中假定的CIPK基因(OsCIPK01–OsCIPK30)对各种非生物胁迫的转录反应。结果表明,至少20种OsCIPK基因被干旱,盐分,寒冷,聚乙二醇和脱落酸处理中的至少一种胁迫诱导。干旱或盐胁迫诱导的大多数基因也都是由脱落酸诱导的,而不是由寒冷诱导的。多个CIPK基因在其启动子区域中均不包含任何已报道的应激反应顺式元件。为了证明其中一些胁迫应答性OsCIPK基因可能对改善胁迫耐受性有用,在粳稻“中华11”中过表达了三个CIPK基因(OsCIPK03,OsCIPK12和OsCIPK15)。过表达转基因OsCIPK03,OsCIPK12和OsCIPK15的转基因植物分别显示出对寒冷,干旱和盐胁迫的显着改善的耐受性。在寒冷和干旱胁迫下,过表达OsCIPK03和OsCIPK12的转基因植物积累的脯氨酸和可溶性糖含量明显高于野生型植物。推定的脯氨酸合成酶和转运蛋白基因在转基因植物中的表达水平明显高于野生型。 OsCIPK基因在不同胁迫下的差异诱导表达以及提高OsCIPK转基因水稻的胁迫耐受性的例子表明,水稻CIPK基因在不同胁迫响应中具有多种作用,其中一些可能在提高水稻的抗逆性方面具有潜在的实用性。

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