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在热应激条件下春小麦粉质仪和拉伸仪相关特性的 QTL 分析。

QTL analysis of farinograph and mixograph related traits in spring wheat under heat stress conditions.

机构信息

Biotechnology Laboratory, Crop Science Department, Faculty of Agriculture, University of Alexandria, Alexandria, Egypt.

College of Food Sciences and Agriculture, King Saud University, Riyadh, Saudi Arabia.

出版信息

Mol Biol Rep. 2020 Jul;47(7):5477-5486. doi: 10.1007/s11033-020-05638-6. Epub 2020 Jul 6.

Abstract

Farinograph and mixograph-related parameters are key elements in wheat end-products quality. Understanding the genetic control of these traits and the influence of environmental factors such as heat stress, and their interaction are critical for developing cultivars with improved for those traits. To identify QTL for six farinograph and three mixograph traits, two double haploid (DH) populations (Yecora Rojo × Ksu106 and Klasic × Ksu105) were used in experiments conducted at Riyadh and Al Qassim locations under heat stress. Single nucleotide polymorphism (SNP) markers were used to determine the number of QTLs controlling these parameters. The genetic analysis of farinograph and mixograph-related traits showed considerable variation with transgressive segregation regardless of heat stress conditions in both locations. A total of 108 additive QTLs were detected for the six farinograph and three mixograph traits in the Yecora Rojo × Ksu106 population in both locations under heat treatments. These QTLs were distributed over all 21 wheat chromosomes except 3A. Similarly, in Klassic × Ksu105 population, there were an additional 68 QTLs identified over the two locations and were allocated on all chromosomes except 1D, 2A, 6A, and 6D. In population (Yecora Rojo × Ksu106), the QTL on chromosome 7A (Excalibur_c62415_288) showed significant effects for farinograph and mixograph traits (FDDT, FDST, FBD, M × h8, and M × t) under normal and heat stress condition at both locations. Interestingly, several QTLs that are related to farinograph and mixograph traits, which showed stable expression under both locations, were detected on chromosome 7A in population (Klassic × Ksu105). Results from this study show the quantitative nature of the genetic control of the studied traits and constitute a step toward identifying major QTLs that can be sued molecular-marker assisted breeding to develop new improved quality wheat cultivars.

摘要

粉质仪和拉伸仪相关参数是小麦终端产品质量的关键要素。了解这些性状的遗传控制以及热应激等环境因素的影响及其相互作用,对于开发具有改良这些性状的品种至关重要。为了鉴定六个粉质仪和三个拉伸仪性状的 QTL,在利雅得和卡塞姆两个地点的热应激条件下,使用两个双单倍体(DH)群体(Yecora Rojo×Ksu106 和 Klassic×Ksu105)进行了实验。单核苷酸多态性(SNP)标记用于确定控制这些参数的 QTL 数量。粉质仪和拉伸仪相关性状的遗传分析表明,无论两个地点的热应激条件如何,都存在相当大的变异和超亲分离。在 Yecora Rojo×Ksu106 群体中,共检测到 108 个加性 QTL 控制六个粉质仪和三个拉伸仪性状,在两个地点的热处理下。这些 QTL 分布在 21 条小麦染色体上,除 3A 染色体外。同样,在 Klassic×Ksu105 群体中,在两个地点共鉴定到另外 68 个 QTL,分布在除 1D、2A、6A 和 6D 之外的所有染色体上。在群体(Yecora Rojo×Ksu106)中,染色体 7A 上的 QTL(Excalibur_c62415_288)在两个地点的正常和热应激条件下对粉质仪和拉伸仪性状(FDDT、FDST、FBD、M×h8 和 M×t)表现出显著影响。有趣的是,在群体(Klassic×Ksu105)中,在染色体 7A 上检测到与粉质仪和拉伸仪性状相关的几个 QTL,这些性状在两个地点均表现出稳定表达。本研究结果表明,所研究性状的遗传控制具有数量性状的性质,这是朝着鉴定可用于分子标记辅助育种以开发新的改良品质小麦品种的主要 QTL 迈出的一步。

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