Seed priming and GA3 field application enhanced growth, yield and postharvest quality of okra

Saroj Dhakal, Jahidul Hassan, M. R. Rajib, Totan Kumar Ghosh, J. Gomasta, Md. Sanaullah Biswas, Yukio Ozaki, Shayla Hedayet Shanta, Md. Mamunur Rahman
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Abstract

Highly nutritive and antioxidants-enriched okra (Abelmoschus esculentus) gets sub-optimal field yield due to the irregular germination coupled with non-synchronized harvests. Hence, the research aimed at assessing the combined impact of seed priming and field-level gibberellic acid (GA3) foliar spray on the yield and post-harvest quality of okra. The lab studies were conducted using a complete randomized design (CRD), while the field trials were performed following a factorial randomized complete block design (RCBD) with three replications. Okra seeds were subjected to ten different priming methods to assess their impact on seed germination and seeding vigor. In the premier step, okra seeds were subjected to ten different priming methods, like hydro priming for 6, 12, and 18 h, halo priming with 3% NaCl at 35 ℃, 45 ℃, and 60 ℃, acid priming with 80% H2SO4 for 2.5, 5, and 10 min. Based on the observation, hydro priming for 12 h exhibited the best germination rate (90%), followed by halo seed priming at 60 ℃ and acid priming for 5 min. Furthermore, the halo priming at 60 ℃ demonstrated the greatest seedling vigor index (1965), whereas acid priming for 5 min resulted in favorable outcomes in terms of early emergence in 2.66 days. In addition, varying concentrations of GA3 (0, 100, 200, and 300 ppm) were also administered to the best three primed seedlings for evaluating their field performance. The findings indicated that applying GA3 at a concentration of 300 ppm to seedlings raised through acid priming (80% H2SO4 for 5 min) resulted in improved leaf length, reduced time to flowering (first and 50%) and harvest, increased pod diameter, individual pod weight, and yield per plant (735.16 g). Additionally, the treatment involving GA3 at 300 ppm with halo priming (3% NaCl) at 60 ℃ exhibited the longest shelf life (21 days) of okra with the lowest levels of rotting (6.73%) and color change (1.12) in the polyethylene storage condition.
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种子打底和田间施用 GA3 可提高秋葵的生长、产量和收获后的品质
富含高营养和抗氧化剂的秋葵(Abelmoschus esculentus)由于发芽不规律和收获不同步,田间产量不理想。因此,该研究旨在评估种子催芽和田间赤霉素(GA3)叶面喷施对秋葵产量和收获后品质的综合影响。实验室研究采用的是完全随机设计(CRD),而田间试验采用的是三次重复的因子随机完全区组设计(RCBD)。对秋葵种子采用了十种不同的催芽方法,以评估它们对种子萌发和播种活力的影响。第一步,对秋葵种子进行十种不同的催芽方法,如 6、12 和 18 小时的水催芽,35 ℃、45 ℃ 和 60 ℃ 下用 3% NaCl 进行晕催芽,2.5、5 和 10 分钟用 80% H2SO4 进行酸催芽。观察结果表明,水力催芽 12 小时的发芽率最高(90%),其次是 60 ℃ 的光晕催芽和 5 分钟的酸性催芽。此外,60 ℃ 的光晕引种显示出最高的幼苗活力指数(1965),而 5 分钟的酸性引种则在 2.66 天内获得了早出苗的良好结果。此外,还对最好的三株秧苗施用了不同浓度的 GA3(0、100、200 和 300 ppm),以评估其田间表现。研究结果表明,对通过酸性打底(80% H2SO4 5 分钟)培育的秧苗施用浓度为 300 ppm 的 GA3 可改善叶片长度,缩短开花(初花和 50%)和收获时间,增加豆荚直径、单个豆荚重量和单株产量(735.16 克)。此外,在聚乙烯贮藏条件下,GA3(百万分之 300)与 60 ℃ 光晕处理(3%NaCl)混合处理的秋葵货架期(21 天)最长,腐烂率(6.73%)和颜色变化(1.12)最低。
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