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小麦5A染色体上的两个基因座调控着抗冻和冻敏基因型中cor14b基因依赖于低温的差异表达。

Two loci on wheat chromosome 5A regulate the differential cold-dependent expression of the cor14b gene in frost-tolerant and frost-sensitive genotypes.

作者信息

Vágújfalvi A, Crosatti C, Galiba G, Dubcovsky J, Cattivelli L

机构信息

Agricultural Institute of the Hungarian Academy of Sciences, Martonvásár.

出版信息

Mol Gen Genet. 2000 Mar;263(2):194-200. doi: 10.1007/s004380051160.

DOI:10.1007/s004380051160
PMID:10778737
Abstract

Although cold acclimation in cereals involves the expression of many cold-regulated genes, genetic studies have shown that only very few chromosomal regions carry loci that play an important role in frost tolerance. To investigate the genetic relationship between frost tolerance and the expression of cold-regulated genes, the expression and regulation of the wheat homolog of the barley cold-regulated gene cor14b was studied at various temperatures in frost-sensitive and frost-tolerant wheat genotypes. At 18/15 degrees C (day/night temperatures) frost-tolerant plants accumulated cor14b mRNAs and expressed COR14b proteins, whereas the sensitive plants did not. This result indicates that the threshold temperature for induction of the wheat cor14b homolog is higher in frost-resistant plants, and allowed us to use this polymorphism in a mapping approach. Studies made with chromosome substitution lines showed that the polymorphism for the threshold induction temperature of the wheat cor14b homolog is controlled by a locus(i) located on chromosome 5A of wheat, while the cor14b gene was mapped in Triticum monococcum on the long arm of chromosome 2Am. The analysis of single chromosome recombinant lines derived from a cross between Chinese Spring/Triticum spelta 5A and Chinese Spring/Cheyenne 5A identified two loci with additive effects that are involved in the genetic control of cor14b mRNA accumulation. The first locus was tightly linked to the marker psr911, while the second one was located between the marker Xpsr2021 and Frost resistance 1 (Fr1).

摘要

尽管谷物中的冷驯化涉及许多冷调控基因的表达,但遗传研究表明,只有极少数染色体区域携带在抗冻性中起重要作用的基因座。为了研究抗冻性与冷调控基因表达之间的遗传关系,在霜冻敏感和抗冻的小麦基因型中,研究了大麦冷调控基因cor14b的小麦同源基因在不同温度下的表达和调控。在18/15摄氏度(日/夜温度)下,抗冻植物积累cor14b mRNA并表达COR14b蛋白,而敏感植物则不积累和表达。这一结果表明,抗冻植物中小麦cor14b同源基因诱导的阈值温度更高,这使我们能够在定位方法中利用这种多态性。对染色体代换系的研究表明,小麦cor14b同源基因诱导阈值温度的多态性由位于小麦5A染色体上的一个基因座控制,而cor14b基因在一粒小麦中定位在2Am染色体的长臂上。对中国春/斯卑尔脱小麦5A和中国春/夏延5A杂交产生的单染色体重组系的分析,确定了两个具有加性效应的基因座,它们参与了cor14b mRNA积累的遗传控制。第一个基因座与标记psr911紧密连锁,而第二个基因座位于标记Xpsr2021和抗冻性1(Fr1)之间。

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