Seed Priming Enhances Seed Germination and Morphological Traits of Lactuca sativa L. under Salt Stress

Bikash Adhikari, O. J. Olorunwa, T. C. Barickman
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引用次数: 7

Abstract

Seed germination is the stage in which plants are most sensitive to abiotic stress, including salt stress (SS). SS affects plant growth and performance through ion toxicity, decreasing seed germination percentage and increasing the germination time. Several priming treatments were used to enhance germination under SS. The objectives of this study were (1) to identify priming treatments to shorten the emergence period, (2) to evaluate priming treatments against the SS, and (3) to induce synchronized seed germination. Salt-sensitive ‘Burpee Bibb’ lettuce seeds were treated with 0.05% potassium nitrate, 3 mM gibberellic acid, and distilled water. All the primed and non-primed seeds were subjected to 100 mM sodium chloride (NaCl) or 0 mM NaCl (control). The seven-day experiment, arranged in a complete randomized block design with four replications, was conducted in a growth chamber maintained with 16/8 h photoperiod (light/dark), 60% relative humidity, and a day/night temperature of 22/18 °C. The result indicated that hydro-primed (HP) seeds were better synchronized under SS. Similarly, fresh mass (FM) and dry mass (DM) of cotyledon, hypocotyl, and radicle were the highest in HP lettuce regardless of SS. Electrolyte leakage was the lowest in the HP lettuce, while other priming methods under SS increased membrane permeability, leading to osmotic stress and tissue damage. Overall, hydro-priming can be a good priming method for synchronizing germination and increasing FM and DM by creating the least osmotic stress and ion toxicity in lettuce under SS.
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盐胁迫下种子激发对油菜种子萌发及形态性状的影响
种子萌发是植物对非生物胁迫(包括盐胁迫)最敏感的阶段。SS通过离子毒性影响植物生长和性能,降低种子发芽率,延长萌发时间。本研究的目的是:(1)确定缩短萌发期的启动处理;(2)评价启动处理对SS的影响;(3)诱导种子同步萌发。用0.05%硝酸钾、3mm赤霉素酸和蒸馏水处理对盐敏感的‘Burpee Bibb’莴苣种子。所有处理过和未处理过的种子分别处理100 mM氯化钠(NaCl)和0 mM氯化钠(对照)。试验采用完全随机区组设计,共4个重复,在光周期16/8 h(光/暗)、相对湿度60%、昼夜温度22/18℃的生长室内进行。结果表明,水浸处理的种子同步效果较好。同样,在不同的水浸处理下,HP生菜子叶、下胚轴和胚根的鲜质量(FM)和干质量(DM)最高,电解质渗漏最低,而其他水浸处理增加了膜透性,导致渗透胁迫和组织损伤。综上所述,在SS胁迫下,水浸处理能使生菜的渗透胁迫和离子毒性最小,是一种较好的同步萌发和提高发芽率和DM的处理方法。
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