微生物增磷促进芥菜(Brassica Juncea L.)生长的磷肥效率

M. Sembiring, S. Alifa, Bintang
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引用次数: 9

摘要

andiol是由火山灰形成的土地,磷酸盐(P)的可用性存在问题,因此磷肥的使用变得无效。受火山喷发的影响。锡纳朋的pH值为4.83,影响土壤中磷的有效性。本研究旨在探讨微生物增磷和SP36(肥料)用量对受火山喷发影响的Andisol土地上芥菜(Brassica juncea L.)磷肥效率和生长的影响。Sinabung。本研究采用2因素、3个重复的因子随机区组设计。第一个因素是微生物磷酸盐增溶,即不施用(M0), 30 mL洋葱伯克氏菌(M1), 30 mL嗜松Talaromyces pinophilus (M2)。第二个因子为sp36,分别为0g、0.325g、0.65g、0.975g、1.3 g 5个水平,分别为P0 = 0%、P1 = 25% = 50%、P3 = 75%、P5 = 100%,测定土壤pH、全磷、速效磷、吸磷量、株高、地上部干重。研究结果表明,施SP36为推荐用量的25%,可提高施磷效率,改善受火山喷发影响的安迪索地区芥菜的生长。Sinabung。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phosphate Fertilization Efficiency Through The Use Of Microbial Phosphate Solubilization To Boost Growth Of Mustard (Brassica Juncea L.) in Andisol Affected By Sinabung Earuption
Andisol is a land formed by volcanic ash and has a problem in the availability of phosphate (P), as a result the use of P fertilizer becomes ineffective. Andisol affected by the eruption of Mount. Sinabung has pH 4.83 which can affect the availability of P in the soil. The purpose of this research was to determine the effect of Microbial Phosphate Solubilization application and SP36 (fertilizer) dose to the efficiency of P fertilizing and growth of mustard (Brassica juncea L.) in Andisol land affected by the eruption of Mount. Sinabung. This research used factorial randomized block design with 2 factors and 3 replications. The first factor was Microbial Phosphate Solubilization i.e. without application (M0), 30 mL Burkholderia cepacia (M1), 30 mL Talaromyces pinophilus (M2). The second factor was SP 36 with five levels i.e. P0 = 0%, P1 = 25% = 50% P3, P4 = 75%, and P5 = 100% of the recommended dose (0g, 0.325g, 0.65g, 0.975g and 1.3 g). The measured parameters were soil pH, P-total, P-available, P uptake, plant height, shoot dry weight. The research results showed that Talaromyces pinophilus with SP36 25% of the recommended dose improved the efficiency of P fertilizing and the growth of mustard in Andisol affected by the eruption of Mount. Sinabung.
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