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Vernalization Duration Requirement in Soft Winter Wheat is Associated with Variation at the Locus

机译:柔软冬小麦的春化持续时间要求与轨迹的变化有关

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摘要

Genetic variation in the factors controlling flowering in wheat (Triticum aestivum L.) allow it to be grown in a wide range of environments. The aim of this study was to identify genetic determinants of flowering time in winter wheat cultivars adapted to regions of the United States differing in latitude and the duration of cold temperatures during winter. Quantitative trait locus (QTL) analysis was performed in a recombinant inbred line (RIL) population from the cross between cultivars NC-Neuse and AGS 2000 that are adapted to the Mid-Atlantic and Southeastern regions, respectively. We identified a QTL for heading date (HD) in the greenhouse after 4 wk of vernalization, designated Qvdr.nc-5BL, which also had a large effect on winter dormancy release and HD when the population was evaluated in the field at locations in North Carolina, Georgia, and Louisiana during 2012 and North Carolina during 2013. However, Qvdr.nc-5BL did not have a significant effect on HD in greenhouse grown plants vernalized for 8 wk or in plants grown in the field at Raleigh, NC during 2011. In those environments where Qvdr.nc-5BL was not significant, a region on chromosome 2B, probably associated with the Ppd-B1 locus, was determined to have a HD effect. Interrogation of the population with gene-based markers for Vrn-B1 and Ppd-B1 suggests that these loci are major determinants of HD in winter wheat and are important for adaptation to diverse growing environments.
机译:遗传变异控制小麦开花(Triticum Aestivum L.)的因素允许其在各种环境中生长。本研究的目的是识别冬小麦品种开花时间的遗传决定因素,适应美国的地区的纬度不同,冬季寒冷温度的持续时间。定量性状基因座(QTL)分析在来自品种NC-Neuse和AGS 2000之间的杂交之间的重组近交系(Ril)群体中分别适应中大西洋和东南部地区。我们在温室内确定了一个QTL,在温室内为期4周,指定QVDR.NC-5BL,在北北方地区的场地评估群体时,对冬季休眠释放和高清的影响也很大Carolina,佐治亚州和路易斯安那州2012年和北卡罗来纳州2013年。然而,QVDR.NC-5BL在2011年罗利,NC在2011年罗利的植物中生长的植物中的温室种植植物的HD对HD有显着影响。在QVDR.NC-5BL不显着的那些环境中,确定了可能与PPD-B1基因座相关联的染色体2B的区域以具有HD效应。对VRN-B1和PPD-B1基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于PPD-B1的载体的询问表明,这些基因座是HD在冬小麦中的主要决定因素,对于适应不同的日益增长的环境是重要的。

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