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Exploring influential plant traits for enhancing upland cotton yield under salt stress

机译:探索在盐胁迫下提高陆地棉产量的重要植物性状

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This research was conducted to explore genetic material that can yield better under salt stress conditions. The experiment was laid out using 27 upland cotton genotypes in a RCBD 2 factorial arrangement with two replications. Saline water (NaCl at 20 dS/m) was applied after satisfactory emergence was achieved. The crop was raised to maturity and data relating to yield, fiber quality and ionic traits were recorded. Analysis of variance showed significant variations in the germplasm. Plant height, bolls per plant, boll weight, GOT%, staple length, staple strength, K+ and K+/Na+ ratio under salinity stress showed a highly significant correlation with seed-cotton yield. The highest direct effect on seedcotton yield per plant was exhibited by bolls per plant and boll weight. The results from the correlation and path coefficient analyses revealed that although the K+/Na+ ratio had a strong positively significant association with seedcotton yield, its direct effect on the seed-cotton yield was negative and thus selection on the basis of K+/Na+ may not be fruitful. Hence, only indirect selection through bolls per plant and boll weight may be effective in increasing the seedcotton yield per plant under salinity stress.
机译:进行了这项研究,以探索在盐胁迫条件下可以产生更好产量的遗传材料。使用RCBD 2因子排列的27种陆地棉基因型进行了两次重复实验,进行了该实验。达到满意的出水效果后,加盐水(20 dS / m的NaCl)。将农作物长成成熟,并记录有关产量,纤维质量和离子性状的数据。方差分析显示种质有显着差异。在盐分胁迫下,株高,单株铃,铃重,GOT%,短纤维长度,短纤维强度,K + 和K + / Na + 比与籽棉产量高度相关。 。对每株种子棉的产量的最高直接影响表现为每株铃和铃重。相关性和路径系数分析的结果表明,尽管K + / Na + 比值与籽棉产量有很强的正相关,但对籽棉产量的直接影响是负的,因此选择K + / Na + 的基础可能没有成果。因此,在盐分胁迫下,仅通过铃兰和铃兰重量的间接选择可能有效地提高了单株种子棉的产量。

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