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基于产量的耐旱性指数评估了基因型与环境互作下棉花种质资源的耐旱性。

Yield-based drought tolerance index evaluates the drought tolerance of cotton germplasm lines in the interaction of genotype-by-environment.

机构信息

College of Agronomy, Xinjiang Agricultural University, Urumqi, China.

出版信息

PeerJ. 2023 Jan 10;11:e14367. doi: 10.7717/peerj.14367. eCollection 2023.

Abstract

BACKGROUND

Cotton is an economically important crop in China, and drought has seriously affected cotton production. Understanding genetic variation, genotype ×environment interactions, and the associations between these traits is critical for developing improved cotton varieties with high drought tolerance.

METHODS

To screen ideal drought-resistant cotton germplasm lines and excellent genotypes, the yield traits of 103 cotton germplasm lines were analyzed. Cotton resource material was planted under normal watering and water deficit conditions for three consecutive years. The yield traits under normal irrigation and water stress conditions were measured, and then five screening indicators were calculated based on the cotton yield per plant under the two water treatments to determine the ideal genotype and most accurate identification indicators.

RESULTS

The results of correlation analysis and principal component analysis showed that the geometric mean productivity (GMP), mean productivity (MP), and stress tolerance index (STI) were significantly positively correlated with yield under water stress and could be used to distinguish genotypes with high drought tolerance. Among the experimental germplasm lines, some had higher STI and GMP values, indicating their higher drought tolerance. This result indicates that best linear unbiased prediction (BLUP) analysis of the STI and GMP under drought stress can effectively improve screening for drought tolerance in cotton germplasm lines. The results from the screening index, three-dimensional map, and genotype ×environment (GGE) biplots were consistent with the above results. We determined that CQJ-5, Xin lu zao 45, Bellsno, Zhong R 2016 and ND 359-5 are drought-tolerant genotypes that can be used to breed drought-tolerant germplasm lines that produce high and stable yields.

摘要

背景

棉花是中国重要的经济作物,干旱严重影响了棉花的产量。了解遗传变异、基因型与环境互作以及这些性状之间的关联,对于培育具有高耐旱性的改良棉花品种至关重要。

方法

为了筛选理想的耐旱棉花种质资源和优良基因型,对 103 份棉花种质资源的产量性状进行了分析。在连续三年的时间里,将棉花资源材料种植在正常浇水和缺水两种条件下。在正常灌溉和水分胁迫两种条件下测量了棉花的产量性状,然后根据两种水分处理下棉花单株产量计算了五个筛选指标,以确定理想的基因型和最准确的鉴定指标。

结果

相关性分析和主成分分析的结果表明,几何平均生产力(GMP)、平均生产力(MP)和胁迫耐受指数(STI)与水分胁迫下的产量呈显著正相关,可以用于区分具有高耐旱性的基因型。在实验的种质资源中,有些种质资源的 STI 和 GMP 值较高,表明其耐旱性较高。这一结果表明,对干旱胁迫下的 STI 和 GMP 进行最佳线性无偏预测(BLUP)分析,可以有效提高棉花种质资源耐旱性的筛选效率。筛选指标、三维图谱和基因型与环境(GGE)双标图的结果与上述结果一致。我们确定 CQJ-5、新陆早 45、Bellsno、中 R2016 和 ND359-5 是耐旱的基因型,可以用来培育具有高产和稳定产量的耐旱性种质资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b66/9838200/6b405544a023/peerj-11-14367-g001.jpg

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