首页> 外文期刊>Cereal Research Communications >Juvenile Root Traits Show Limited Correlation with Grain Yield, Yield Components and Grain Mineral Composition Traits in Indian Wheat under Hostile Soils
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Juvenile Root Traits Show Limited Correlation with Grain Yield, Yield Components and Grain Mineral Composition Traits in Indian Wheat under Hostile Soils

机译:幼年根特征显示在敌对土壤中印度小麦的籽粒产量,产量组分和谷物矿物质组合物的相关性有限

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Correlations between juvenile wheat root traits, and grain yield and yield component traits under optimal field conditions have previously been reported in some conditions. The aim of this study was to test the hypothesis that juvenile wheat root traits correlate with yield, yield components and grain mineral composition traits under a range of soil environments in India. A diverse panel of 36 Indian wheat genotypes were grown for ten days in 'pouch and wick' high-throughput phenotyping (HTP) system (20 replicates). Correlations between juvenile root architecture traits, including primary and lateral root length, and grain yield, yield components and grain mineral composition traits were determined, using field data from previously published experiments at six sites in India. Only a limited number of juvenile root traits correlated with grain yield (GYD), yield components, and grain mineral composition traits. A narrow root angle, potentially representing a 'steep' phenotype, was associated with increased GYD and harvest index (HI) averaged across sites and years. Length related root traits were not correlated with GYD or HI at most sites, however, the total length of lateral roots and lateral root number correlated with GYD at a sodic site of pH 9.5. The total length of lateral roots (TLLR) correlated with grain zinc (Zn) concentration at one site. A wider root angle, representing a shallow root system, correlated with grain iron (Fe) concentration at most sites. The total length of all roots (TLAR) and total length of primary roots (TLPR) correlated with grain S concentration at most sites. Narrow root angle in juvenile plants could be a useful proxy trait for screening germplasm for improved grain yield. Lateral root and shallow root traits could potentially be used to improve grain mineral concentrations. The use of juvenile root traits should be explored further in wheat breeding for diverse environments.
机译:在某些条件下,先前报道了少年小麦根部性状和谷物产量和产量分量的谷物产量和产量组分特征的相关性。本研究的目的是测试少年小麦根部特征在印度的一系列土壤环境下与产量,产量组分和谷物矿物组合物相关的假设。在“薄芯”高通量表型(HTP)系统(20重复)中,在“薄芯”高通量表型(HTP)系统中生长了多种36个印度小麦基因型。使用来自印度的六个位点的前所未知的实验,确定了幼年根系结构性质的相关性,包括初级和横向根长,包括初级和横向根长度,产量,产量组分和晶粒矿物组合物特征。只有有限数量的少年根特征与谷物产量(GYD),产量组分和晶粒矿物组合物特征相关。狭窄的根角,可能代表'陡峭的表型,与跨场所和年多年的增加的Gyd和收获指数(HI)相关。然而,长度相关的根部特征在大多数地点和大多数地点没有与Gyd或Hi相关,但是横向根部的总长度与Gyd在pH9.5的钠位点相关。横向根(TLLR)的总长度与一个位点的谷物锌(Zn)浓度相关。较宽的根角度,代表浅根系,与大多数位点的谷物铁(Fe)浓度相关。所有根(TLAR)的总长度和主要根(TLPR)的总长度与大多数位点的谷物浓度相关。少年植物中的狭窄的根角可以是用于筛选种质的有用的代理特性,以改善谷物产量。侧根和浅根特征可能用于改善晶粒矿物浓度。在不同环境的小麦育种中,应进一步探讨使用少年根特征。

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