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编码叶绿体氨基酸选择性通道蛋白的基因的高表达水平与谷物的冷驯化相关。

High expression level of a gene coding for a chloroplastic amino acid selective channel protein is correlated to cold acclimation in cereals.

作者信息

Baldi P, Grossi M, Pecchioni N, Valè G, Cattivelli L

机构信息

Istituto Sperimentale per la Cerealicoltura, Fiorenzuola d'Arda (PC), Italy.

出版信息

Plant Mol Biol. 1999 Sep;41(2):233-43. doi: 10.1023/a:1006375332677.

Abstract

A cold-regulated gene (cor tmc-ap3) coding for a putative chloroplastic amino acid selective channel protein was isolated from cold-treated barley leaves combining the differential display and the 5'-RACE techniques. Cor tmc-ap3 is expressed at low level under normal growing temperature, and its expression is strongly enhanced after cold treatment. A positive correlation between the expression of cor tmc-ap3 and frost tolerance was found both among barley cultivars and among cereal species. The COR TMC-AP3 protein was expressed in vitro, purified and used to raise a polyclonal antibody. Western analysis showed that the cor tmc-ap3 gene product is localized to the chloroplastic outer envelope fraction, supporting its putative function. The frost-resistant winter cultivar Onice accumulated COR TMC-AP3 more rapidly and at a higher level than the frost-susceptible spring cultivar Gitane. After 28 days of cold acclimation the winter cultivar had about 2-fold more protein than the spring genotype. All these results suggest that an increased amount of a chloroplastic amino acid selective channel protein could be required for cold acclimation in cereals. Hypotheses about the role of COR TMC-AP3 during the hardening process are discussed.

摘要

利用差异显示和5'-RACE技术,从经低温处理的大麦叶片中分离出一个编码假定叶绿体氨基酸选择性通道蛋白的冷调控基因(cor tmc-ap3)。Cor tmc-ap3在正常生长温度下低水平表达,低温处理后其表达强烈增强。在大麦品种间和谷类物种间,均发现cor tmc-ap3的表达与抗冻性呈正相关。COR TMC-AP3蛋白在体外表达、纯化后用于制备多克隆抗体。Western分析表明,cor tmc-ap3基因产物定位于叶绿体的外膜部分,这支持了其假定功能。抗冻冬性品种Onice比易受冻害的春性品种Gitane更快且更高水平地积累COR TMC-AP3。经过28天的低温驯化后,冬性品种的该蛋白含量比春性基因型约多两倍。所有这些结果表明,谷类作物低温驯化可能需要增加叶绿体氨基酸选择性通道蛋白的量。文中还讨论了COR TMC-AP3在硬化过程中的作用假说。

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