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与农艺性状相关的面包小麦和硬粒小麦平台表型根系结构的遗传分析

Genetic Analysis of Platform-Phenotyped Root System Architecture of Bread and Durum Wheat in Relation to Agronomic Traits.

作者信息

Colombo Michel, Roumet Pierre, Salon Christophe, Jeudy Christian, Lamboeuf Mickael, Lafarge Stéphane, Dumas Anne-Valérie, Dubreuil Pierre, Ngo Wa, Derepas Brice, Beauchêne Katia, Allard Vincent, Le Gouis Jacques, Rincent Renaud

机构信息

AGAP, Univ Montpellier, CIRAD, INRAE, Institut Agro, Montpellier, France.

CEFE, Univ Montpellier, CNRS, EPHE, IRD, Montpellier, France.

出版信息

Front Plant Sci. 2022 Mar 25;13:853601. doi: 10.3389/fpls.2022.853601. eCollection 2022.

Abstract

Roots are essential for water and nutrient uptake but are rarely the direct target of breeding efforts. To characterize the genetic variability of wheat root architecture, the root and shoot traits of 200 durum and 715 bread wheat varieties were measured at a young stage on a high-throughput phenotyping platform. Heritability of platform traits ranged from 0.40 for root biomass in durum wheat to 0.82 for the number of tillers. Field phenotyping data for yield components and SNP genotyping were already available for all the genotypes. Taking differences in earliness into account, several significant correlations between root traits and field agronomic performances were found, suggesting that plants investing more resources in roots in some stressed environments favored water and nutrient uptake, with improved wheat yield. We identified 100 quantitative trait locus (QTLs) of root traits in the bread wheat panels and 34 in the durum wheat panel. Most colocalized with QTLs of traits measured in field conditions, including yield components and earliness for bread wheat, but only in a few environments. Stress and climatic indicators explained the differential effect of some platform QTLs on yield, which was positive, null, or negative depending on the environmental conditions. Modern breeding has led to deeper rooting but fewer seminal roots in bread wheat. The number of tillers has been increased in bread wheat, but decreased in durum wheat, and while the root-shoot ratio for bread wheat has remained stable, for durum wheat it has been increased. Breeding for root traits or designing ideotypes might help to maintain current yield while adapting to specific drought scenarios.

摘要

根系对于水分和养分吸收至关重要,但很少成为育种工作的直接目标。为了表征小麦根系结构的遗传变异性,在高通量表型分析平台上,对200个硬粒小麦品种和715个面包小麦品种的根和地上部性状在幼苗期进行了测定。平台性状的遗传力范围从硬粒小麦根生物量的0.40到分蘖数的0.82。所有基因型的产量构成因素的田间表型数据和单核苷酸多态性基因分型数据均已可得。考虑到早熟性的差异,发现根性状与田间农艺性能之间存在若干显著相关性,这表明在某些胁迫环境下,在根系中投入更多资源的植株有利于水分和养分吸收,从而提高小麦产量。我们在面包小麦群体中鉴定出100个根性状的数量性状位点(QTL),在硬粒小麦群体中鉴定出34个。大多数与田间条件下测定的性状的QTL共定位,包括面包小麦的产量构成因素和早熟性,但仅在少数环境中如此。胁迫和气候指标解释了一些平台QTL对产量的不同影响,其影响根据环境条件为正、零或负。现代育种已使面包小麦的生根更深,但种子根数量减少。面包小麦的分蘖数增加了,但硬粒小麦的分蘖数减少了,并且面包小麦的根冠比保持稳定,而硬粒小麦的根冠比增加了。针对根性状进行育种或设计理想型可能有助于在适应特定干旱情景的同时维持当前产量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a52/8992431/37910b4b29c7/fpls-13-853601-g001.jpg

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