首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Heat and drought adaptive QTL in a wheat population designed to minimize confounding agronomic effects.
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Heat and drought adaptive QTL in a wheat population designed to minimize confounding agronomic effects.

机译:小麦种群中的热旱适应QTL,旨在最大程度地减少混杂的农艺效应。

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A restricted range in height and phenology of the elite Seri/Babax recombinant inbred line (RIL) population makes it ideal for physiological and genetic studies. Previous research has shown differential expression for yield under water deficit associated with canopy temperature (CT). In the current study, 167 RILs plus parents were phenotyped under drought (DRT), hot irrigated (HOT), and temperate irrigated (IRR) environments to identify the genomic regions associated with stress-adaptive traits. In total, 104 QTL were identified across a combination of 115 traits x 3 environments x 2 years, of which 14, 16, and 10 QTL were associated exclusively with DRT, HOT, and IRR, respectively. Six genomic regions were related to a large number of traits, namely 1B-a, 2B-a, 3B-b, 4A-a, 4A-b, and 5A-a. A yield QTL located on 4A-a explained 27 and 17% of variation under drought and heat stress, respectively. At the same location, a QTL explained 28% of the variation in CT under heat, while 14% of CT variation under drought was explained by a QTL on 3B-b. The T1BL.1RS (rye) translocation donated by the Seri parent was associated with decreased yield in this population. There was no co-location of consistent yield and phenology or height-related QTL, highlighting the utility of using a population with a restricted range in anthesis to facilitate QTL studies. Common QTL for drought and heat stress traits were identified on 1B-a, 2B-a, 3B-b, 4A-a, 4B-b, and 7A-a confirming their generic value across stresses. Yield QTL were shown to be associated with components of other traits, supporting the prospects for dissecting crop performance into its physiological and genetic components in order to facilitate a more strategic approach to breeding.Digital Object Identifier http://dx.doi.org/10.1007/s00122-010-1351-4
机译:优良的Seri / Babax重组自交系(RIL)种群的高度和物候学范围有限,使其非常适合进行生理和遗传研究。先前的研究表明在与冠层温度(CT)相关的水分亏缺下产量的差异表达。在当前的研究中,在干旱(DRT),热灌溉(HOT)和温和灌溉(IRR)环境下对167个RIL及其父母进行了表型鉴定,以鉴定与胁迫适应性状相关的基因组区域。总共在115个特征x 3个环境x 2年的组合中鉴定出104个QTL,其中14个,16个和10个QTL分别与DRT,HOT和IRR相关。六个基因组区域与大量性状相关,即1B-a,2B-a,3B-b,4A-a,4A-b和5A-a。位于4A-a上的产量QTL分别解释了干旱和高温胁迫下27%和17%的变化。在同一位置,通过3B-b上的QTL,QTL解释了热条件下CT的28%变化,而在干旱下14%的CT变化由QTL解释。 Seri亲本捐赠的T1BL.1RS(黑麦)易位与该群体的减产有关。没有一致的产量和物候或与身高相关的QTL在同一地点,这突出了使用花序范围有限的种群来促进QTL研究的效用。在1B-a,2B-a,3B-b,4A-a,4B-b和7A-a上确定了干旱和高温胁迫性状的常见QTL,从而确认了它们在各种胁迫下的通用价值。已证明产量QTL与其他性状的组成部分相关联,支持将作物表现分解为其生理和遗传组成部分的前景,以便促进更具战略意义的育种方法。数字对象标识符http://dx.doi.org/ 10.1007 / s00122-010-1351-4

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