Impact of Biofertilizers & Different doses of NPK on Growth and Photosynthetic Pigments of Okra Plant (Abelmoschus Esculentus L. Moench)

Kujur Reena, Khan Heba I, Lal Eugenia P, Verma Lalit Kumar
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Abstract

Okra is an herbaceous hairy annual plant that belongs to the family Malvaceae. It is cultivated in tropical, subtropical, and warm temperate regions around the world. The present work was carried out to study the effect of biofertilizers (Azotobacter + Bacillus) and different concentrations of Nitrogen, Phosphorus, and Potassium i.e.NPK on growth and photosynthetic pigments of okra (Abelmoschus esculentus L. Moench). Okra can be named a multipurpose crop as its various parts such as leaves, buds, flowers, pods, stems and seeds can be used for different purposes [1]. Okra is rich in dietary fiber, vitamins, oils, etc. Application of hazardous fertilizers causes a nutrient imbalance in soil, With respect to reducing the causes due to chemical fertilizers, biofertilizers are suited best to maintain higher productivity and yield of crops. Random block design (RBD) was selected as an experimental design. The treatments combination taken are T0- Control, T1- Azotobacter + 50% NPK, T2- Azotobacter (2.5 kg/ha) + 100% NPK, T3- Bacillus (2.5 kg/ha) + 50% NPK, T4- Bacillus (2.5 kg/ha) + 100% NPK, and T5 with NPK 100%. The final result revealed, that the treatment combination with Azotobacter + 100% NPK (T2) showed the highest value of plant height (65.60 cm), number of leaves per plant(62.36), number of flowers per plant (27.40), and also carotenoid content (2.82 mg/g), chlorophyll a(2.47 mg/g) and chlorophyll b(3.25 mg/g) were observed maximum. So, it can be concluded through this paper that the combination of Azotobacter 2.5 kg/ha + 100% NPK (T2) is suitable for the okra plant for better growth and enhancement of photosynthetic potential in-field practices.
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生物肥料和不同剂量NPK对秋葵生长和光合色素的影响
秋葵是锦葵科的一种草本有毛的一年生植物。它在世界各地的热带、亚热带和暖温带地区都有种植。研究了生物肥料(固氮菌+芽孢杆菌)和不同浓度的氮、磷、钾(NPK)对秋葵(Abelmoschus esculentus L.Moench)生长和光合色素的影响。秋葵可以被称为多用途作物,因为它的各个部分,如叶子、芽、花、荚、茎和种子,都可以用于不同的目的[1]。秋葵富含膳食纤维、维生素、油脂等。施用有害肥料会导致土壤营养失衡。为了减少化肥造成的营养失衡,生物肥料最适合保持较高的生产力和作物产量。选择随机块设计(RBD)作为实验设计。所采用的处理组合为T0-对照、T1-固氮菌+50%NPK、T2-固氮菌(2.5公斤/公顷)+100%NPK、T3-芽孢杆菌(2.5公斤每公顷)+50%NPK、T4-芽孢杆菌。结果表明,固氮菌+100%NPK(T2)处理的株高(65.60cm)、单株叶数(62.36)、单株花数(27.40)最高,类胡萝卜素含量(2.82mg/g)、叶绿素a(2.47mg/g)和叶绿素b(3.25mg/g)最高。因此,通过本文的研究可以得出结论,在田间实践中,固氮菌2.5kg/ha+100%NPK(T2)组合适合秋葵植株生长和提高光合潜力。
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