首页> 外文期刊>Euphytica >Improved frost tolerance and winter hardiness in proline overaccumulating winter wheat mutants obtained by in vitro-selection is associated with increased carbohydrate, soluble protein and abscisic acid (ABA) levels
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Improved frost tolerance and winter hardiness in proline overaccumulating winter wheat mutants obtained by in vitro-selection is associated with increased carbohydrate, soluble protein and abscisic acid (ABA) levels

机译:通过体外选择获得的脯氨酸过量积累的冬小麦突变体,提高的抗冻性和抗寒性与碳水化合物,可溶性蛋白和脱落酸(ABA)水平的提高有关

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摘要

In previous studies in vitro-selection of proline overaccumulating lines of winter wheat (Triticum sativum L. cv. Jo 3063) with increased frost tolerance was reported. These traits were found to be genetically stable. In the present study the improvement of frost tolerance (winter hardiness) under field conditions is confirmed for F7 progenies of the mutants. Moreover, the mutants accumulated higher levels of glucose and fructose, soluble protein and abscisic acid (ABA) in addition to proline than the wild type under cold hardening conditions in a growth chamber as well as under cold hardening field conditions. ABA and proline levels peaked when the temperature decreased, whereas carbohydrate levels increased more slowly at decreasing temperature. Soluble protein levels also increased during cold hardening, but in addition showed sharp declines during frost periods. Increased carbohydrate levels of the mutants were associated with lower osmotic potential values. The differences in carbohydrate, protein and ABA levels between the mutants and the wild type are probably due to pleiotropic effects of the mutation. Keywords Abscisic acid (ABA) - Carbohydrates - Frost tolerance - Hydroxyproline (Hyp) - Proline - Soluble protein - Winter survival
机译:在先前的研究中,已报道了对霜冻耐受性增强的冬小麦脯氨酸过分积累系(Triticum sativum L. cv。Jo 3063)的选择。发现这些特征在遗传上是稳定的。在本研究中,证实了突变体的F 7 后代在野外条件下提高了抗冻性(抗寒性)。此外,与脯氨酸相比,突变体在生长室中的冷硬化条件下以及在冷淬火的野外条件下,除脯氨酸外还积累了更高水平的葡萄糖和果糖,可溶性蛋白和脱落酸(ABA)。当温度降低时,ABA和脯氨酸水平达到峰值,而在温度降低时,碳水化合物水平升高得更慢。可溶性蛋白质水平在冷硬化过程中也有所增加,但此外在霜冻期显着下降。突变体的碳水化合物水平升高与渗透势值降低有关。突变体与野生型之间碳水化合物,蛋白质和ABA水平的差异可能是由于突变的多效性所致。脱落酸(ABA)-碳水化合物-耐冻性-羟脯氨酸(Hyp)-脯氨酸-可溶性蛋白-冬季存活

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