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组成型过表达钙传感器 CBL5 可赋予拟南芥耐渗透或干旱胁迫。

Constitutive overexpression of the calcium sensor CBL5 confers osmotic or drought stress tolerance in Arabidopsis.

机构信息

Department of Plant and Microbial Biology, University of California, Berkeley, CA 94720, USA.

出版信息

Mol Cells. 2010 Feb 28;29(2):159-65. doi: 10.1007/s10059-010-0025-z.

Abstract

Calcium serves as a critical messenger in many adaptation and developmental processes. Cellular calcium signals are detected and transmitted by sensor molecules such as calcium-binding proteins. In plants, the calcineurin B-like protein (CBL) family represents a unique group of calcium sensors and plays a key role in decoding calcium transients by specifically interacting with and regulating a family of CBL-interacting protein kinases (CIPKs). In this study, we report the role of Arabidopsis CBL5 gene in high salt or drought tolerance. CBL5 gene is expressed significantly in green tissues, but not in roots. CBL5 was not induced by abiotic stress conditions such as high salt, drought or low temperature. To determine whether the CBL5 gene plays a role in stress response pathways, we ectopically expressed the CBL5 protein in transgenic Arabidopsis plants (35S-CBL5) and examined plant responses to abiotic stresses. CBL5-overexpressing plants displayed enhanced tolerance to high salt or drought stress. CBL5 overexpression also rendered plants more resistant to high salt or hyperosmotic stress during early development (i.e., seed germination) but did not alter their response to abiscisic acid (ABA). Furthermore, overexpression of CBL5 alters the gene expression of stress gene markers, such as RD29A, RD29B and Kin1 etc. These results suggest that CBL5 may function as a positive regulator of salt or drought responses in plants.

摘要

钙在许多适应和发育过程中起着关键的信使作用。细胞内的钙信号被传感器分子如钙结合蛋白检测和传递。在植物中,钙调磷酸酶 B 类似蛋白(CBL)家族代表了一类独特的钙传感器,通过与一组 CBL 相互作用蛋白激酶(CIPK)特异性相互作用和调节,在解码钙瞬变方面发挥着关键作用。在这项研究中,我们报告了拟南芥 CBL5 基因在耐高盐或干旱方面的作用。CBL5 基因在绿色组织中表达显著,但不在根中表达。CBL5 不受高盐、干旱或低温等非生物胁迫条件的诱导。为了确定 CBL5 基因是否在应激反应途径中发挥作用,我们在转基因拟南芥植物(35S-CBL5)中外源表达了 CBL5 蛋白,并检测了植物对非生物胁迫的反应。CBL5 过表达植株对高盐或干旱胁迫表现出增强的耐受性。CBL5 过表达还使植物在早期发育(即种子萌发)期间对高盐或高渗胁迫更具抗性,但不改变它们对脱落酸(ABA)的反应。此外,CBL5 的过表达改变了应激基因标记物的基因表达,如 RD29A、RD29B 和 Kin1 等。这些结果表明,CBL5 可能作为植物中盐或干旱反应的正调节剂发挥作用。

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