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大豆(Glycine max L. Merr.)种质资源根系性状的鉴定。

Characterization of a soybean (Glycine max L. Merr.) germplasm collection for root traits.

机构信息

Department of Plant and Environmental Sciences, Clemson University, Clemson, South Carolina, United States of America.

Pee Dee Research and Education Center, Clemson University, Florence, South Carolina, United States of America.

出版信息

PLoS One. 2018 Jul 11;13(7):e0200463. doi: 10.1371/journal.pone.0200463. eCollection 2018.

Abstract

Root systems that improve resource uptake and penetrate compacted soil (hardpan) are important for improving soybean (Glycine max L. Merr.) productivity in optimal and sub-optimal environments. The objectives of this research were to evaluate a soybean germplasm collection of 49 genotypes for root traits, determine whether root traits are related with plant height, shoot dry weight, chlorophyll index, and seed size, and identify genotypes that can penetrate a hardpan. Plants were maintained under optimal growth conditions in a greenhouse. Single plants were grown in mesocosms, constructed of two stacked columns (top and bottom columns had 25 and 46 cm height, respectively, and 15 cm inside diameter) with a 2-cm thick wax layer (synthetic hardpan; penetration resistance, 1.5 MPa at 30°C) in between. Plants were harvested at 42 days after planting. Significant genetic variability was observed for root traits in the soybean germplasm collection, and genotypes that penetrated the synthetic hardpan were identified. Genotypes NTCPR94-5157, NMS4-1-83, and N09-13128 were ranked high and PI 424007 and R01-581F were ranked low for most root traits. Shoot dry weight and chlorophyll index were positively related with total root length, surface area, and volume, and fine root length (Correlation coefficient, r ≥ 0.60 and P-value < 0.0001 for shoot dry weight and r ≥ 0.37 and P-value < 0.01 for chlorophyll index]. Plant height was negatively correlated with total root surface area, total root volume, and average root diameter (|r| ≥ 0.29, P-value < 0.05). Seed size was not correlated with any root traits. The genetic variability identified in this research for root traits and penetration are critical for soybean improvement programs in choosing genotypes with improved root characteristics to increase yield in stressful or optimum environments.

摘要

根系改善资源吸收并穿透紧实土壤(硬结)对于提高最佳和次优环境下大豆(Glycine max L. Merr.)的生产力非常重要。本研究的目的是评估 49 个大豆种质资源的根系性状,确定根系性状与株高、地上部干重、叶绿素指数和种子大小的关系,并鉴定能够穿透硬结的基因型。植物在温室中最佳生长条件下维持。在中间有 2 厘米厚的蜡层(合成硬结;在 30°C 时,穿透阻力为 1.5 MPa)的两个堆叠柱(顶部和底部柱的高度分别为 25 和 46 厘米,内径为 15 厘米)中生长单株。在种植后 42 天收获植物。在大豆种质资源中观察到根系性状存在显著的遗传变异,并鉴定出穿透合成硬结的基因型。NTCPR94-5157、NMS4-1-83 和 N09-13128 基因型在大多数根系性状方面排名较高,而 PI 424007 和 R01-581F 排名较低。地上部干重和叶绿素指数与总根长、表面积和体积以及细根长呈正相关(相关系数 r≥0.60,P 值<0.0001 用于地上部干重和 r≥0.37,P 值<0.01 用于叶绿素指数)。株高与总根表面积、总根体积和平均根直径呈负相关(|r|≥0.29,P 值<0.05)。种子大小与任何根系性状均不相关。本研究中鉴定的根系性状和穿透性的遗传变异对于选择具有改良根系特征的基因型以提高胁迫或最佳环境下产量的大豆改良计划至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83ed/6040769/eac7f877a636/pone.0200463.g001.jpg

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