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利用在哈萨克斯坦种植的英国阿瓦隆×卡丹扎参考作图群体对小麦农艺性状进行QTL定位。

QTL mapping of agronomic traits in wheat using the UK Avalon ×  Cadenza reference mapping population grown in Kazakhstan.

作者信息

Amalova Akerke, Abugalieva Saule, Chudinov Vladimir, Sereda Grigoriy, Tokhetova Laura, Abdikhalyk Alima, Turuspekov Yerlan

机构信息

Institute of Plant Biology and Biotechnology, Almaty, Kazakhstan.

Faculty of Biology and Biotechnology, Al-Farabi Kazakh National University, Almaty, Kazakhstan.

出版信息

PeerJ. 2021 Feb 18;9:e10733. doi: 10.7717/peerj.10733. eCollection 2021.

Abstract

BACKGROUND

The success of wheat production is largely dependent on local breeding projects that focus on the development of high-yielding cultivars with the use of novel molecular tools. One strategy for improving wheat productivity involves the deployment of diverse germplasms with a high potential yield. An important factor for achieving success involves the dissection of quantitative trait loci (QTLs) for complex agronomic traits, such as grain yield components, in targeted environments for wheat growth.

METHODS

In this study, we tested the United Kingdom (UK) spring set of the doubled haploid (DH) reference population derived from the cross between two British cultivars, Avalon (winter wheat) and Cadenza (spring wheat), in the Northern, Central, and Southern regions (Karabalyk, Karaganda, Kyzylorda) of Kazakhstan over three years (2013-2015). The DH population has previously been genotyped by UK scientists using 3647 polymorphic DNA markers. The list of tested traits includes the heading time, seed maturation time, plant height, spike length, productive tillering, number of kernels per spike, number of kernels per meter, thousand kernel weight, and yield per square meter. Windows QTL Cartographer was applied for QTL mapping using the composite interval mapping method.

RESULTS

In total, 83 out of 232 QTLs were identified as stable QTLs from at least two environments. A literature survey suggests that 40 QTLs had previously been reported elsewhere, indicating that this study identified 43 QTLs that are presumably novel marker-trait associations (MTA) for these environments. Hence, the phenotyping of the DH population in new environments led to the discovery of novel MTAs. The identified SNP markers associated with agronomic traits in the DH population could be successfully used in local Kazakh breeding projects for the improvement of wheat productivity.

摘要

背景

小麦生产的成功很大程度上依赖于当地的育种项目,这些项目利用新型分子工具专注于高产栽培品种的培育。提高小麦生产力的一种策略是部署具有高产潜力的多样化种质资源。实现成功的一个重要因素是在小麦生长的目标环境中剖析复杂农艺性状(如产量构成要素)的数量性状位点(QTL)。

方法

在本研究中,我们在哈萨克斯坦北部、中部和南部地区(卡拉巴雷克、卡拉干达、克孜勒奥尔达)对源自两个英国品种阿瓦隆(冬小麦)和卡丹察(春小麦)杂交的双单倍体(DH)参考群体的英国春播组进行了为期三年(2013 - 2015年)的测试。英国科学家此前已使用3647个多态性DNA标记对该DH群体进行了基因分型。测试的性状包括抽穗期、种子成熟时间、株高、穗长、有效分蘖、每穗粒数、每米粒数、千粒重和每平方米产量。使用复合区间作图法,应用Windows QTL Cartographer进行QTL定位。

结果

在232个QTL中,总共鉴定出83个为至少在两个环境中稳定的QTL。文献调查表明,此前在其他地方已报道过40个QTL,这表明本研究鉴定出了43个可能是这些环境中新的标记 - 性状关联(MTA)。因此,在新环境中对DH群体进行表型分析导致发现了新的MTA。在DH群体中鉴定出的与农艺性状相关的SNP标记可成功用于哈萨克斯坦当地的育种项目,以提高小麦生产力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed4e/7897413/b2ecaf719bf8/peerj-09-10733-g001.jpg

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