利用水力和渗透作用减轻园艺豌豆荚的盐度胁迫

G. Tamindžić, J. Červenski, D. Milošević, Z. Nikolić, S. Vlajić, D. Jovičić, Maja Ignjatov
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引用次数: 0

摘要

摘要 盐碱化是全球农业生产成功所面临的最大挑战之一。然而,种子处理可能是提高种子萌发和植物初期生长发育的有效方法。本实验旨在评估不同的催芽方法对盐胁迫下豌豆(Pisum sativum L.)栽培品种的种子质量参数和早期生长的影响。三种不同栽培品种的豌豆种子分别用水(水浸)、KNO3 溶液(0.5%)和 PEG 6000 溶液(-0.5 兆帕)在黑暗中浸种 24 小时。利用发芽试验,在饱和 120 mM NaCl 的滤纸间对未催芽和催芽的种子进行催芽。结果清楚地表明,在盐水胁迫下,经过催芽处理的豌豆种子的各项指标均大大高于未经过催芽处理的种子。此外,用 KNO3 和 PEG 溶液给种子打底比水打底更能有效地提高豌豆的种子质量和初期生长。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Alleviation of Salinity Stress in Garden PEA Using Hydro- and Osmopriming
Summary Salinity is one of the greatest challenges of successful agricultural production worldwide. However, seed priming might be efficient practice for enhancing seed germination and initial plant growth and development. This experiment was undertaken with the aim of assessing the impact of different priming methods on seed quality parameters and early growth of garden pea (Pisum sativum L.) cultivars under salinity stress. Pea seeds of three different cultivars were primed with water (hydropriming), KNO3 solution (0.5%), and PEG 6000 solution (-0.5 MPa) for 24h in the dark. Unprimed and primed seeds were germinated between filter papers saturated with 120 mM NaCl using the germination test. The results clearly showed that the examined parameters of primed pea seeds were substantially greater than the parameters of unprimed seeds under saline stress. Moreover, seed priming with KNO3 and PEG solutions were more effective in improving seed quality and initial growth in garden peas than hydropriming.
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