大麦脱氢蛋白多基因家族的表达与抗冻性的发展。

B Zhu, D W Choi, R Fenton, T J Close
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引用次数: 172

摘要

Dehydrins (DHNs;LEA D11)是植物蛋白的典型家族之一,在脱水、低温、渗透胁迫或ABA处理或种子成熟过程中积累。我们之前发现,编码低分子量DHNs的三个基因(Dhn1, Dhn2和Dhn9)位于大麦染色体5H的一个15厘米区域,该区域与一个耐寒性QTL重叠,而编码低分子量和高分子量DHNs的其他Dhn基因位于染色体3H, 4H和6H上。在这里,我们研究了特定的Dhn基因在与冬季表型表达相关的条件下的表达。在4摄氏度的环境下生长的植物或在加州河滨的田地里生长的植物也表现出了类似的、中等水平的抗冻能力,这与低分子量Dhn基因的活性相吻合。在加拿大萨斯卡通种植的Dicktoo(耐受性较强的品种)和Morex(耐受性较差的品种)的低分子量DHNs基因表达水平高于Riverside的相同品种,Dicktoo的表达高于Morex。脱水或冻融也能诱导低分子量DHNs基因的表达,表明田间冻融的脱水成分诱导低分子量DHNs基因的低表达。这些观察结果与假设一致,即主要的低温诱导dhn有助于植物细胞适应更强的寒冷,然后包括适应冻融循环期间的脱水。染色体5h编码的DHNs在适应更强的寒冷方面的作用似乎是可能的,尽管它不是Dicktoo x Morex种群中冬季耐寒性主要遗传变异的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Expression of the barley dehydrin multigene family and the development of freezing tolerance.

Dehydrins (DHNs; LEA D11) are one of the typical families of plant proteins that accumulate in response to dehydration, low temperature, osmotic stress or treatment with abscisic acid (ABA), or during seed maturation. We previously found that three genes encoding low-molecular-weight DHNs (Dhn1, Dhn2 and Dhn9) map within a 15-cM region of barley chromosome 5H that overlaps a QTL for winterhardiness, while other Dhn genes encoding low- and high-molecular-weight DHNs are located on chromosomes 3H, 4H and 6H. Here we examine the expression of specific Dhn genes under conditions associated with expression of the winterhardiness phenotype. Plants grown at 4 degrees C or in the field in Riverside, California developed similar, modest levels of freezing tolerance, coinciding with little low-MW Dhn gene activity. Dicktoo (the more tolerant cultivar) and Morex (the less tolerant) grown in Saskatoon, Canada expressed higher levels of expression of genes for low-MW DHNs than did the same cultivars in Riverside, with expression being higher in Dicktoo than Morex. Dehydration or freeze-thaw also evoked expression of genes for low MW DHNs, suggesting that the dehydration component of freeze-thaw in the field induces low expression of genes encoding low-MW DHNs. These observations are consistent with the hypothesis that the major chilling-induced DHNs help to prime plant cells for acclimation to more intense cold, which then involves adaptation to dehydration during freeze-thaw cycling. A role for chromosome 5H-encoded DHNs in acclimation to more intense cold seems possible, even though it is not the basis of the major heritable variation in winterhardiness within the Dicktoo x Morex population.

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