水杨酸和赤霉素酸对苦瓜萌发和生长的影响。

Farjana Rauf, Md. Ahsan Ullah, M. Kabir, Md Ashik Mia, Shaila Shermin Tania, Mst. Morsada Khatun, M. Rhaman
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摘要

目的:均匀和快速的发芽和生长是苦瓜成功作物生产的主要障碍,苦瓜是孟加拉国主要的夏季蔬菜。不同信号分子的种子启动可以有效地解决这个问题。因此,本研究旨在探讨水杨酸(SA)和赤霉素酸(GA3)等不同信号分子促进苦瓜萌发和生长的潜力。研究地点和时间:研究于2022年9 - 10月在孟加拉国农业大学种子科学与技术系进行。方法:苦瓜籽分别在1mM、2mM、3mM GA3溶液和3mM、6mM、9mM SA溶液中浸泡1h。以未经处理的种子为对照。种子在培养皿中萌发并收集萌发数据。7 d后移栽,建立第15天记录生长参数。结果:实验结果表明,较低浓度的SA和GA3具有有益的效果,但与对照相比,较高浓度的SA和GA3显著降低了苦瓜的发芽和发育能力。结果表明,3mM SA、6mM SA和1mM GA3处理能显著提高苦瓜的发芽率、芽和根长、幼苗活力、芽和根鲜干重、RWC。结论:与对照相比,SA和GA3预处理对苦瓜发芽率有较好的促进作用。综上所述,3mM SA、6mM SA和1mM GA3对苦瓜种子萌发和生长均有促进作用。
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Influence of Salicylic Acid and Gibberelic Acid on Germination and Growth of Bitter Gourd, Momordica charantia L.
Aim: Uniform and rapid germination and growth is a major barrier to successful crop production of bitter gourd, a major summer vegetable of Bangladesh. Seed priming with different signaling molecules can efficiently confer this problem. Therefore, the present study was conducted to explore the potentiality of different signaling molecules such as salicylic acid (SA) and gibberelic acid (GA3) to increase germination and growth of bitter gourd. Place and Duration of the Study: The study was conducted in the Department of Seed Science and Technology, Bangladesh Agricultural University, from September-October, 2022. Methodology: The bitter gourd seeds were soaked in 1mM, 2mM and 3mM GA3, and 3mM, 6mM and 9mM SA solutions for 1 hour. The untreated seeds were used as control. Seeds were germinated in petri dishes and data on germination was collected. Then seedlings were transplanted to pot after 7 days to record growth parameters at 15th day of establishment. Results: The experiment's findings indicated that lower concentrations of SA and GA3 had a beneficial effect, however greater levels significantly reduced the bitter gourd's ability to germinate and develop in comparison to the control. Findings of the study showed priming concentrations of 3mM SA, 6mM SA, and 1mM GA3, markedly improved the germination percentage, shoot and root length, seedling vigour, and fresh and dry weight of the shoot and root, RWC of bitter gourd. Conclusion: Pretreatment with SA and GA3 was observed to be relatively more efficient in increasing germination of bitter gourd compared with control. Overall, this study suggests that bitter gourd seed priming 3mM SA, 6mM SA, and 1mM GA3 can improve germination and growth.
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