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首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Association of sugar content QTL and PQL with physiological traits relevant to frost damage resistance in pea under field and controlled conditions.
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Association of sugar content QTL and PQL with physiological traits relevant to frost damage resistance in pea under field and controlled conditions.

机译:在田间和受控条件下,糖含量QTL和PQL与豌豆抗霜冻害相关的生理特性相关。

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摘要

To increase yield in pea (Pisum sativum L.), autumn sowing would be preferable. Hence, frost tolerance of pea became a major trait of interest for breeders. In order to better understand the cold acclimation in pea, Champagne a frost tolerant line and Terese, a frost sensitive line, and their recombinant inbred lines (RIL) were studied. RIL frost tolerance was evaluated by a frost damage scale under field as well as controlled conditions. A quantitative trait loci (QTL) approach was used to identify chromosomal regions linked to frost tolerance. The detected QTL explained from 6.5 to 46.5% of the phenotypic variance. Amongst them, those located on linkage groups 5 and 6 were consistent with over all experiments, in field as well as in controlled environments. In order to improve the understanding of the frost tolerance mechanisms, several cold acclimation key characters such as concentration of sugars, electrolyte leakage, osmotic pressure, and activity of RuBisCO were assessed. Some of these physiological QTL colocalised with QTL for frost damage, in particular two raffinose QTL on LG5 and LG6 and one RuBisCO activity QTL on LG6, explaining 8.8 to 27.0% of the phenotypic variance. In addition, protein quantitative loci were mapped; some of them colocalised with frost damage and physiological QTL on LG5 and LG6, explaining 16.0-43.6% of the phenotypic variance. Raffinose metabolism and RuBisCO activity and its effect on photosynthesis might play a major role in cold acclimation of pea.
机译:为了增加豌豆(Pisum sativum L.)的产量,秋季播种是可取的。因此,豌豆的抗冻性成为育种者关注的主要特征。为了更好地了解豌豆的冷驯化,研究了耐霜冻的香槟系和对霜冻敏感的特蕾斯系及其重组自交系(RIL)。通过在野外以及在受控条件下的霜冻破坏量表来评估RIL的霜冻耐受性。使用定量性状位点(QTL)方法来鉴定与抗冻性相关的染色体区域。检测到的QTL解释了表型差异的6.5%至46.5%。其中,位于连接群5和6上的那些与所有实验(在野外以及在受控环境中)一致。为了增进对防冻机理的理解,评估了几个冷驯化关键特性,例如糖浓度,电解质泄漏,渗透压和RuBisCO的活性。其中一些生理性QTL与QTL共同定位于霜冻损害,特别是LG5和LG6上的两个棉子糖QTL和LG6上的一个RuBisCO活性QTL,解释了表型变异的8.8%至27.0%。另外,对蛋白质定量位点作图。其中一些与LG5和LG6上的霜冻损害和生理QTL共同定位,解释了16.0-43.6%的表型变异。棉子糖代谢和RuBisCO活性及其对光合作用的影响可能在豌豆的冷驯化中起主要作用。

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