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大麦茎形态性状的多环境全基因组关联图谱分析

Multi-environment genome -wide association mapping of culm morphology traits in barley.

作者信息

Bretani Gianluca, Shaaf Salar, Tondelli Alessandro, Cattivelli Luigi, Delbono Stefano, Waugh Robbie, Thomas William, Russell Joanne, Bull Hazel, Igartua Ernesto, Casas Ana M, Gracia Pilar, Rossi Roberta, Schulman Alan H, Rossini Laura

机构信息

Department of Agricultural and Environmental Sciences - Production, Landscape, Agroenergy, Università degli Studi di Milano, Milan, Italy.

Council for Agricultural Research and Economics, Research Centre for Genomics and Bioinformatics, Fiorenzuola d'Arda, Italy.

出版信息

Front Plant Sci. 2022 Sep 23;13:926277. doi: 10.3389/fpls.2022.926277. eCollection 2022.

Abstract

In cereals with hollow internodes, lodging resistance is influenced by morphological characteristics such as internode diameter and culm wall thickness. Despite their relevance, knowledge of the genetic control of these traits and their relationship with lodging is lacking in temperate cereals such as barley. To fill this gap, we developed an image analysis-based protocol to accurately phenotype culm diameters and culm wall thickness across 261 barley accessions. Analysis of culm trait data collected from field trials in seven different environments revealed high heritability values (>50%) for most traits except thickness and stiffness, as well as genotype-by-environment interactions. The collection was structured mainly according to row-type, which had a confounding effect on culm traits as evidenced by phenotypic correlations. Within both row-type subsets, outer diameter and section modulus showed significant negative correlations with lodging (<-0.52 and <-0.45, respectively), but no correlation with plant height, indicating the possibility of improving lodging resistance independent of plant height. Using 50k iSelect SNP genotyping data, we conducted multi-environment genome-wide association studies using mixed model approach across the whole panel and row-type subsets: we identified a total of 192 quantitative trait loci (QTLs) for the studied traits, including subpopulation-specific QTLs and 21 main effect loci for culm diameter and/or section modulus showing effects on lodging without impacting plant height. Providing insights into the genetic architecture of culm morphology in barley and the possible role of candidate genes involved in hormone and cell wall-related pathways, this work supports the potential of loci underpinning culm features to improve lodging resistance and increase barley yield stability under changing environments.

摘要

在具有中空节间的谷类作物中,抗倒伏性受节间直径和茎壁厚度等形态特征的影响。尽管这些特征具有相关性,但在大麦等温带谷类作物中,缺乏对这些性状的遗传控制及其与倒伏关系的了解。为了填补这一空白,我们开发了一种基于图像分析的方案,以准确地对261份大麦种质的茎直径和茎壁厚度进行表型分析。对在七个不同环境的田间试验中收集的茎性状数据进行分析,结果显示,除了厚度和硬度外,大多数性状的遗传力值都很高(>50%),同时还存在基因型与环境的互作。该种质收集主要按行型构建,表型相关性表明这对茎性状有混杂效应。在两个行型亚组中,外径和截面模量与倒伏均呈显著负相关(分别为<-0.52和<-0.45),但与株高无相关性,这表明有可能在不依赖株高的情况下提高抗倒伏性。利用50k iSelect SNP基因分型数据,我们采用混合模型方法在整个群体和行型亚组中进行了多环境全基因组关联研究:我们共鉴定出192个研究性状的数量性状位点(QTL),包括亚群体特异性QTL以及21个影响茎直径和/或截面模量的主效位点,这些位点对倒伏有影响但不影响株高。这项工作为大麦茎形态的遗传结构以及参与激素和细胞壁相关途径的候选基因的可能作用提供了见解,支持了决定茎特征的位点在改善抗倒伏性和提高大麦在变化环境下产量稳定性方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4aff/9539552/9b80bd349527/fpls-13-926277-g001.jpg

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