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首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Varietal and chromosome 2H locus-specific frost tolerance in reproductive tissues of barley (Hordeum vulgare L.) detected using a frost simulation chamber
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Varietal and chromosome 2H locus-specific frost tolerance in reproductive tissues of barley (Hordeum vulgare L.) detected using a frost simulation chamber

机译:使用霜冻模拟室检测大麦(Hordeum vulgare L.)生殖组织的品种和染色体2H基因座特异性霜冻耐受性

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摘要

Exposure of flowering cereal crops to frost can cause sterility and grain damage, resulting in significant losses. However, efforts to breed for improved low temperature tolerance in reproductive tissues (LTR tolerance) has been hampered by the variable nature of natural frost events and the confounding effects of heading time on frost-induced damage in these tissues. Here, we establish conditions for detection of LTR tolerance in barley under reproducible simulated frost conditions in a custom-built frost chamber. An ice nucleator spray was used to minimize potential effects arising from variation in naturally occurring extrinsic nucleation factors. Barley genotypes differing in their field tolerance could be distinguished. Additionally, an LTR tolerance quantitative trait locus (QTL) on the long arm of barley chromosome 2H could be detected in segregating families. In a recombinant family, the QTL was shown to be separable from the effects of the nearby flowering time locus Flt-2L. At a minimum temperature of -3.5A degrees C for 2 h, detection of the LTR tolerance locus was dependent on the presence of the nucleator spray, suggesting that the tolerance relates to freezing rather than chilling, and that it is not the result of plant-encoded variation in ice-nucleating properties of the tiller surface.
机译:开花的谷物作物遭受霜冻可能会导致不育和谷物受损,从而造成重大损失。然而,由于天然霜冻事件的可变性质以及抽头时间对这些组织中霜冻引起的损害的混杂影响,阻碍了繁殖以提高生殖组织的低温耐受性(LTR耐受性)的努力。在这里,我们建立了在定制的霜室内可再现的模拟霜冻条件下检测大麦LTR耐受性的条件。使用冰核发生器喷雾以使由于自然发生的外在成核因子变化而引起的潜在影响最小化。大麦基因型的田间耐性不同。此外,大麦染色体2H的长臂上的LTR耐受定量性状基因座(QTL)可以在分离的家庭中检测到。在重组家族中,QTL与附近开花时间基因座Flt-2L的作用是可分离的。在最低温度-3.5A的温度下放置2小时,对LTR耐性基因座的检测取决于成核剂喷雾的存在,这表明耐性与冷冻有关,而不是与寒冷有关,而不是植物产生的结果分the表面冰成核特性的编码变化。

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