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Association mapping for root architectural traits in durum wheat seedlings as related to agronomic performance

机译:硬粒小麦幼苗根系结构性状与农艺性状的关联图谱

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Association mapping provides useful insights on the genetic architecture of quantitative traits across a large number of unrelated genotypes, which in turn allows an informed choice of the lines to be crossed for a more accurate characterization of major QTLs in a biparental genetic background. In this study, seedlings of 183 durum wheat elite accessions were evaluated in order to identify QTLs for root system architecture (RSA). The QTLs identified were compared with QTLs detected for grain yield and its component traits, plant height and peduncle length measured in a previous study where the same accessions were evaluated in 15 field trials with a broad range of soil moisture availability and productivity (Maccaferri et al. in J Exp Bot 62:409-438, 2011). The following RSA features were investigated in seedlings at the four-leaf stage: seminal root angle, primary root length, total root length, average root length, root number and shoot length. Highly significant differences among accessions were detected for all traits. The highest repeatability (h (2) = 0.72) was observed for seminal root angle. Out of the 48 QTLs detected for RSA, 15 overlapped with QTLs for agronomic traits and/or grain yield in two or more environments. The congruency of the effects of RSA traits and agronomic traits was evaluated. Seminal root angle and root number appear the most promising traits for further studies on the adaptive role of RSA plasticity on field performance in environments differing for water availability. Our results provide novel insights on the genetic control of RSA and its implications on field performance of durum wheat.
机译:关联作图可提供跨大量不相关基因型的数量性状遗传结构的有用见解,从而允许双亲遗传背景下主要基因组的QTL的更准确表征,从而可以明智地选择要杂交的品系。在这项研究中,对183个硬粒小麦优良种质的幼苗进行了评估,以鉴定根系体系结构(RSA)的QTL。将先前鉴定的QTL与检测到的QTL进行比较,以得到谷物产量,其组成特征,株高和花序长的QTL,该研究在15个田间试验中对相同的种质进行了评估,并具有广泛的土壤水分利用率和生产力(Maccaferri等(J Exp Bot 62:409-438,2011)。在四叶期的幼苗中研究了以下RSA特征:精根角,初生根长,总根长,平均根长,根数和枝长。对于所有性状,在种质之间检测到高度显着差异。对于精浆根角观察到最高的重复性(h(2)= 0.72)。在为RSA检测的48个QTL中,有15个在两个或多个环境中与农艺性状和/或谷物产量的QTL重叠。评价了RSA性状和农艺性状的影响的一致性。对于水可利用性不同的环境中,RSA可塑性对田间性能的适应性作用,精子根角和根数似乎是最有希望的特征。我们的结果为RSA的遗传控制及其对硬粒小麦田间表现的影响提供了新颖的见解。

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