Effect of integrated nutrient management on growth, yield, and soil nutrient status in okra (Abelmoschus esculentus cv. Arka Anamika)

Shraddha Khasu Magar, Bimala Poudel, Roshni Dhungana, S. Rawal, S. Thapa, K. Bhusal, Santoshi Malla
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Abstract

Okra (Abelmoschus esculentus cv. Arka Anamika) is one of the most widely grown vegetable crops in the tropics during the spring, summer, and Kharif seasons. One of the major constraints of low productivity of okra and soil deterioration is due to the inappropriate and sole use of synthetic fertilizer. So, to address the yield gap, an experiment was conducted in Gokuleshwor, Baitadi Nepal from 23rd March to 15th July 2021 to study the effect of integrated nutrient management (INM) on growth, and yield and soil nutrient status in okra". The experiment was laid out in a randomized complete block design (RCBD) with 8 treatments and 3 replication T8 gave maximum plant height (37.21 cm), stem diameter (4.04 cm), numbers of leaves (14.33), and a number of pods (8.07) and minimum plant height (23.18 cm) and a number of leaves (9.00) were observed in T3 whereas minimum steam diameter (2.87cm) a and number of pods (2.87) were observed in T6. It was observed that treatment T8 produced a maximum yield (2.10 kg) and treatment T3 produces the minimum yield (1.24 kg). Highest post-harvest available nitrogen (0.1167%), phosphorus (85.20 kg/ha), potassium (229.61 kg/ha), organic matter (2.31%) and pH (6.25) was found in treatment T8. This study suggests integrating vermicompost and synthetic fertilizer as a potential source for better growth, and high yield of okra thus more experiments on dosage optimization and SSNM should be focused onwards for long term sustainability.
综合养分管理对秋葵生长、产量及土壤养分状况的影响Arka Anamika)
秋葵(秋葵)冬青(Arka Anamika)是热带地区春季、夏季和秋季种植最广泛的蔬菜作物之一。黄秋葵生产力低下和土壤退化的主要制约因素之一是不适当和单一使用合成肥料。因此,为了解决产量差距,我们于2021年3月23日至7月15日在尼泊尔Baitadi的Gokuleshwor进行了一项试验,研究综合营养管理(INM)对秋葵生长、产量和土壤养分状况的影响。试验采用随机完全区组设计(RCBD),共8个处理,3个重复,其中T3的株高(37.21 cm)、茎粗(4.04 cm)、叶数(14.33)、荚数(8.07)最高,T6的株高(23.18 cm)、叶数(9.00)最低,蒸腾直径(2.87cm)和荚数(2.87)最低。结果表明,处理T8产量最高(2.10 kg),处理T3产量最低(1.24 kg)。收获后速效氮(0.1167%)、磷(85.20 kg/ hm2)、钾(229.61 kg/ hm2)、有机质(2.31%)和pH(6.25)均以T8处理最高。综上所述,蚯蚓堆肥与合成肥料相结合是提高秋葵生长和高产的潜在来源,因此,为了实现秋葵的长期可持续发展,应进一步开展用量优化和SSNM试验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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