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Genomic Regions Associated with Tolerance to Freezing Stress and Snow Mold in Winter Wheat

机译:冬小麦耐冻性和霉菌性的基因组区域

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摘要

Plants grown through the winter are subject to selective pressures that vary with each year’s unique conditions, necessitating tolerance of numerous abiotic and biotic stress factors. The objective of this study was to identify molecular markers in winter wheat (Triticum aestivum L.) associated with tolerance of two of these stresses, freezing temperatures and snow mold—a fungal disease complex active under snow cover. A population of 155 F2:5 recombinant inbred lines from a cross between soft white wheat cultivars “Finch” and “Eltan” was evaluated for snow mold tolerance in the field, and for freezing tolerance under controlled conditions. A total of 663 molecular markers was used to construct a genetic linkage map and identify marker-trait associations. One quantitative trait locus (QTL) associated with both freezing and snow mold tolerance was identified on chromosome 5A. A second, distinct, QTL associated with freezing tolerance also was found on 5A, and a third on 4B. A second QTL associated with snow mold tolerance was identified on chromosome 6B. The QTL on 5A associated with both traits was closely linked with the Fr-A2 (Frost-Resistance A2) locus; its significant association with both traits may have resulted from pleiotropic effects, or from greater low temperature tolerance enabling the plants to better defend against snow mold pathogens. The QTL on 4B associated with freezing tolerance, and the QTL on 6B associated with snow mold tolerance have not been reported previously, and may be useful in the identification of sources of tolerance for these traits.
机译:整个冬季生长的植物承受的选择性压力会因每年的独特条件而异,因此必须耐受多种非生物和生物胁迫因素。这项研究的目的是鉴定冬小麦(Triticum aestivum L.)的分子标记,其与其中两种压力,冷冻温度和积雪霉菌(一种在雪盖下活跃的真菌病复合物)的耐受性相关。评价了来自软白小麦品种“ Finch”和“ Eltan”之间杂交的155个F2:5重组自交系的田间雪霉耐受性和受控条件下的耐冻性。总共663个分子标记用于构建遗传连锁图谱并鉴定标记-性状关联。在5A染色体上鉴定了一个与耐冻性和耐雪霉性相关的定量性状基因座(QTL)。在5A上还发现了第二个与抗冻性相关的独特QTL,在4B上发现了第三个。在6B号染色体上鉴定出与雪霉耐受性相关的第二个QTL。与这两个性状相关的5A的QTL与Fr-A2(抗冻性A2)基因座紧密相关。其与这两个性状的显着相关性可能是多效性效应或更高的低温耐受性所致,使植物能够更好地防御雪霉病原体。先前尚未报道与耐寒性相关的4B上的QTL和与雪霉耐性相关的6B上的QTL,这可能有助于识别这些性状的耐性来源。

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