盐胁迫条件下腐植酸钾对大豆发芽性状的影响

Öner Canavar, Hatice Kübra Gören, Seçil Küçük Kaya, Feride Öncan Sümer
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引用次数: 0

摘要

研究了盐度和腐植酸钾浓度对大豆发芽的影响。这些发现有助于我们了解盐胁迫下大豆发芽和腐植酸钾的潜在用途。该实验是在土耳其Adnan Menderes大学大田作物系实验室进行的。种子表面消毒,放在滤纸上,放在培养皿中。加入不同浓度的水(对照)、NaCl溶液(3ds - m-1)和k -腐植酸盐溶液。本试验采用因子设计,有2个因子和4个重复。腐植酸钾对发芽率有正向影响。对照、盐度和盐度* k -腐植酸盐施用之间存在显著差异。盐度降低了发芽率。腐植酸钾减轻了盐度的负面影响,提高了发芽率。这些发现表明,在受盐分影响的环境中,腐植酸钾具有提高幼苗成活率和植物整体生产力的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Potassium Humate on Soybean Germination Traits Under Salinity Stress Conditions
This study investigated the effects of salinity and K-humate concentrations on soybean germination. The findings contribute to our knowledge of soybean germination under salt stress and the potential use of potassium humate. The experiment was conducted in the laboratory of the Department of Field Crops at Adnan Menderes University, Turkey. Seeds were surface-sterilized and placed on filter paper in Petri dishes. Different concentrations of water (control), NaCl solution (3 dS m-1), and K-humate solution were added. The experiment followed a factorial design with two factors and four replications. K-humate had a positive impact on germination rate. Significant differences were observed among control, salinity, and salinity * K-humate applications. Salinity reduced germination percentage. K-humate mitigated the negative effects of salinity, improving germination. These findings suggest the potential use of K-humate to enhance seedling establishment and overall plant productivity in salinity-affected environments.
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