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耐热性鉴定小麦品种的耐热性指标。

Heat stress tolerance indices for identification of the heat tolerant wheat genotypes.

机构信息

Department of Genetics and Plant Breeding, Chaudhary Charan Singh Haryana Agricultural University, Hisar, Haryana, 125 004, India.

Department of Molecular Biology, Biotechnology and Bioinformatics, Chaudhary Charan Singh Haryana Agricultural University, Hisar, Haryana, 125 004, India.

出版信息

Sci Rep. 2023 Jul 5;13(1):10842. doi: 10.1038/s41598-023-37634-8.

Abstract

Heat stress is one of the major challenges in wheat cultivation because it coincides with the flowering period and limits the crop productivity. This study was conducted for evaluation of 50 wheat genotypes to identify the heat stress tolerant genotypes for improvement of stress tolerance. All genotypes were cultivated for two consecutive years (2018-2020) under normal and late sown conditions. The results of the study revealed that the combined analysis of variance indicated significant variations among genotypes for all the studied stress indices. The reduction in mean grain yield of all genotypes under stress condition as compared to non-stress condition, indicating that the heat stress significantly affect the grain yield. The correlation analysis showed that the negative correlation of tolerance index and stress susceptibility percentage index with the grain yield of genotypes under heat stress condition (Ys) and a highly positive correlation of stress tolerance index, mean productivity, geometric mean, harmonic mean and mean relative performance with grain yield (Yp and Ys) under both conditions, helped accurately to identify the desirable genotypes. From the results obtained from principal component, biplot and cluster analysis, it was reported that HD 2967, WH 1249, HI 1617, WH 1202, WH 1021 and WH 1142 are suitable and good yielding genotypes under both conditions. Thus, above genotypes can be used for cultivation at high temperature or as genetic resources for introducing genetic variations in wheat genotypes to improve stress tolerance.

摘要

热应激是小麦种植的主要挑战之一,因为它与花期相吻合,限制了作物的生产力。本研究对 50 个小麦基因型进行了评估,以鉴定耐热基因型,提高其对胁迫的耐受性。所有基因型在正常和晚播条件下连续两年(2018-2020 年)进行种植。研究结果表明,方差的综合分析表明,所有研究的应激指标在基因型之间存在显著差异。与非胁迫条件下相比,所有基因型在胁迫条件下的平均籽粒产量降低,表明热应激显著影响籽粒产量。相关分析表明,在热应激条件下(Ys),耐性指数和胁迫敏感百分比指数与基因型的籽粒产量呈负相关,而在两种条件下,耐性指数、平均生产力、几何平均值、调和平均值和平均相对表现与籽粒产量(Yp 和 Ys)呈高度正相关,有助于准确鉴定理想基因型。从主成分、双标图和聚类分析的结果来看,HD 2967、WH 1249、HI 1617、WH 1202、WH 1021 和 WH 1142 是在两种条件下均适宜且产量较高的基因型。因此,上述基因型可用于高温条件下的种植,或作为遗传资源,引入小麦基因型的遗传变异,以提高其对胁迫的耐受性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e534/10322891/9095b156ba93/41598_2023_37634_Fig1_HTML.jpg

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