Uji Kombinasi Pupuk Anorganik Dan Pupuk Bio-Organik P Terhadap Ketersediaan P Dalam Tanah, Serapan P Tanaman, Dan Populasi Bakteri Pelarut Fosfat Pada Tanaman Kedelai (Glycine Max L. Merrill)

Baiq Fitri Pebrianti R.P, Lolita Endang Susilowati, Zaenal Arifin, Mansur Mashum, Rika Andriati Sukma Dewi
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Abstract

The application of bio-organic P fertilizer alongside inorganic fertilizers plays a crucial role in increasing available phosphorus (P) for plants while also aiming to reduce and optimize the use of inorganic fertilizers. This combination is expected to enhance crop yields, balance nutrient availability, and improve soil structure. The objective of this research was to investigate the impact of the combination of inorganic and bio-organic P fertilizers on soil P availability, P uptake in soybean plants, and the population of Phosphate-Solubilizing Bacteria (PSB) during the vegetative phase. The research utilized an experimental approach with four treatments. Each treatment involved five randomly selected samples, resulting in a total of 20 experimental units. The study was conducted from March to July 2019 in paddy fields in Semoyang Village, Praya Timur Subdistrict, Central Lombok Regency. The treatments used were as follows: P1 (50% of the recommended inorganic fertilizer + 10 g of bio-organic P fertilizer per plant), P2 (75% of the recommended inorganic fertilizer + 10 g of bio-organic P fertilizer per plant), P3 (100% of the recommended inorganic fertilizer), and the control group (without any treatment). The parameters analyzed in this study were the available P content in the soil, soil pH, dry weight of biomass, P uptake in plants, and the population of Phosphate-Solubilizing Bacteria. The results demonstrated that the treatments involving the combination of inorganic and bio-organic P fertilizers showed improvements in all tested parameters compared to using only inorganic fertilizers. The soil pH ranged from 6.56 to 6.64, available soil P ranged from 13.2 to 17.33 ppm, dry weight of biomass ranged from 8.2 to 11.01 grams, P uptake in plants ranged from 10.69 to 16.76 mg per plant, and the population of PSB ranged from 1.14×106 cfu/g to 4.56×107 cfu/g.
无机肥料和生物有机钾肥组合对大豆(Glycine Max L. Merrill)作物土壤钾供应量、植物钾吸收量和磷溶解细菌数量的测试
在施用无机肥料的同时施用生物有机磷肥,对于增加植物的可用磷量起着至关重要的作用,同时还能减少和优化无机肥料的使用。这种组合有望提高作物产量、平衡养分供应并改善土壤结构。本研究的目的是调查无机和生物有机钾肥的结合对土壤中钾的可用性、大豆植株对钾的吸收以及无性期磷溶解细菌(PSB)数量的影响。研究采用了四种处理的实验方法。每个处理随机抽取五个样本,共 20 个实验单元。研究于 2019 年 3 月至 7 月在龙目岛中部普拉亚蒂穆尔分区思莫阳村的稻田中进行。采用的处理如下P1(推荐无机肥的 50%+每株 10 克生物有机 P 肥)、P2(推荐无机肥的 75%+每株 10 克生物有机 P 肥)、P3(推荐无机肥的 100%)和对照组(无任何处理)。本研究分析的参数包括土壤中的可利用磷含量、土壤 pH 值、生物量干重、植物对磷的吸收以及磷酸盐溶解细菌的数量。结果表明,与只使用无机肥料相比,无机磷肥和生物有机磷肥结合使用的处理在所有测试参数上都有所改善。土壤 pH 值在 6.56 至 6.64 之间,土壤可利用钾在 13.2 至 17.33ppm 之间,生物量干重在 8.2 至 11.01 克之间,植物对钾的吸收量在 10.69 至 16.76 毫克/株之间,PSB 的数量在 1.14×106 cfu/g 至 4.56×107 cfu/g 之间。
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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