大豆(Glycine max L. Merr.)耐荫性遗传结构的全基因组关联研究

IF 1.9 3区 农林科学 Q2 AGRONOMY
Crop Science Pub Date : 2025-07-06 DOI:10.1002/csc2.70107
Fengyi Zhang, Jiangyuan Xu, Weidong Wang, Xiulin Liu, Dongdong He, Bixian Zhang, Baolin Liu, Sobhi F. Lamlom, Ahmed M. Abdelghany, Huilong Hong, Yinghui Li, Ren Honglei, Lijuan Qiu
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引用次数: 0

摘要

耐阴性是大豆的关键性状[甘氨酸max (L.)]。稳定。适应间作制度。本研究通过对2022年中国(黑龙江和内蒙古)两种不同环境下的461个不同材料进行全基因组关联分析,研究了大豆遮荫响应的遗传结构。通过评价植物株高(PH)、主茎节数(MSNN)和单株荚果数(PODn)来表征植物对遮荫胁迫的形态响应。主成分分析表明,地理位置是表型变异的主要驱动因素,占总变异的57.4%。遮荫处理显著提高了PH值,同时降低了两个位置的MSNN和PODn,表现出典型的遮荫回避综合征特征。使用82208个高质量单核苷酸多态性(snp)进行全基因组关联研究,鉴定出31个显著的标记-性状关联(p <;6.0E-4)分布在14条染色体上。6个SNP与MSNN相关,20个与PODn相关,5个与PH相关。在两种环境中,显著的稳定关联包括正常条件下与荚果数相关的SNP Gm16_9640074和荫胁迫下与PH相关的SNP Gm08_2576632。环境特异性和稳定遗传位点的鉴定表明大豆遮荫反应的复杂遗传结构。这些发现为研究耐阴性的分子机制提供了有价值的见解,并为开发更适合间作系统的大豆品种确定了有希望的遗传标记,从而有可能在不同的农业生态区加强可持续农业实践。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Genetic architecture of shade tolerance in soybean (Glycine max L. Merr.) revealed by genome-wide association study

Genetic architecture of shade tolerance in soybean (Glycine max L. Merr.) revealed by genome-wide association study

Genetic architecture of shade tolerance in soybean (Glycine max L. Merr.) revealed by genome-wide association study

Genetic architecture of shade tolerance in soybean (Glycine max L. Merr.) revealed by genome-wide association study

Shade tolerance is a critical trait for soybean [Glycine max (L.) Merr.] adaptation to intercropping systems. This study investigated the genetic architecture of shade response in soybean through genome-wide association analysis of 461 diverse accessions evaluated under both normal and shade conditions across two distinct environments in China (Heilongjiang and Inner Mongolia) in the 2022 season. Plant height (PH), main stem node number (MSNN), and pod number per plant (PODn) were assessed to characterize morphological responses to shade stress. Principal component analysis revealed that geographic location was the primary driver of phenotypic variation, explaining 57.4% of total variance. Shade treatment significantly increased PH while reducing MSNN and PODn across both locations, demonstrating classic shade avoidance syndrome traits. Genome-wide association study using 82,208 high-quality single-nucleotide polymorphisms (SNPs) identified 31 significant marker-trait associations (p < 6.0E-4) distributed across 14 chromosomes. Six SNPs were associated with MSNN, 20 with PODn, and five with PH. Notable stable associations included SNP Gm16_9640074 for pod number under normal conditions and Gm08_2576632 for PH under shade stress across both environments. The identification of both environment-specific and stable genetic loci demonstrates the complex genetic architecture underlying shade response in soybean. These findings provide valuable insights into the molecular mechanisms of shade tolerance and identify promising genetic markers for developing soybean varieties better adapted to intercropping systems, potentially enhancing sustainable agricultural practices in diverse agroecological zones.

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来源期刊
Crop Science
Crop Science 农林科学-农艺学
CiteScore
4.50
自引率
8.70%
发文量
197
审稿时长
3 months
期刊介绍: Articles in Crop Science are of interest to researchers, policy makers, educators, and practitioners. The scope of articles in Crop Science includes crop breeding and genetics; crop physiology and metabolism; crop ecology, production, and management; seed physiology, production, and technology; turfgrass science; forage and grazing land ecology and management; genomics, molecular genetics, and biotechnology; germplasm collections and their use; and biomedical, health beneficial, and nutritionally enhanced plants. Crop Science publishes thematic collections of articles across its scope and includes topical Review and Interpretation, and Perspectives articles.
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