ISOLATION AND IDENTIFICATION OF AZOTOBACTER OF SOME TYPE OF LAND USE IN JEGU VILLAGES

Ni Nengah Soniari, I. W. D. Atmaja
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Abstract

Conventional farming systems have a negative impact on the life of Azotobacter. Through the results of this study, we want to provide information on the existence of Azotobacter in several rhizosphere of cultivated plants, and looking for isolates that have advantages as biofertilizers and decomposers. This research is an exploration of bacteria Azotobacter spp. from several plant rhizosphere namely: organic and inorganic rice paddy, cassava, coconut, and chocolate. Three samples was taken from each type of land use, so that the number of isolate sources were 15 samples. All analyzes were conducted at Soil Biology Laboratory, Faculty of Agriculture Udayana University. This study aims to find isolates of Azotobacter spp. which is superior to be utilized as biofertilizer and decomposer. Parameters used to support isolation and identification results are total population of bacteria Azotobacter spp., soil respiration, gram staining, halo zone and optical density. The results showed that organic rice rhizosphere was the best isolate source compared with inorganic rice rhizosphere, coconut, cassava and chocolate. Isolate from this organic rice rhizosphere has the highest total population (40.10 cfu x107g-1 soil), on positive catalase test yield bubbles and optical density (average 1.217ABS at 550 nm wavelength). While the superior isolates of Azotobacter spp. As biofertilizer and decomposer candidates are TSO2 isolates (samples from organic rice plant rhizosphere) with soil respiration rate (8.057mgC-CO2 kg-1 soil/day), high optical density (1.147 ABS on spectrophotometer with 550 nm wavelength) and highest halo zone diameter (10 mm).
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结古村某土地利用类型固氮菌的分离鉴定
传统的耕作制度对固氮菌的寿命有负面影响。通过本研究的结果,我们希望提供关于几种栽培植物根际中存在固氮菌的信息,并寻找具有生物肥料和分解者优势的分离株。本研究对有机和无机水稻、木薯、椰子和巧克力等几种植物根际的固氮细菌进行了探索。每种土地利用类型各取3个样本,分离源数量为15个样本。所有分析均在乌达亚那大学农学院土壤生物学实验室进行。本研究旨在寻找具有生物肥料和分解者优势的固氮菌分离株。用于支持分离和鉴定结果的参数有:细菌总数、土壤呼吸、革兰氏染色、光晕带和光密度。结果表明,有机水稻根际比无机水稻根际、椰子根际、木薯根际和巧克力根际为最佳分离源。该有机水稻根际分离物的总数量最高(40.10 cfu × 107g-1土壤),过氧化氢酶阳性测试产气泡和光密度最高(550 nm波长平均为1.217ABS)。作为生物肥料和分解者的最佳分离株是TSO2分离株(有机水稻根际样品),土壤呼吸速率为8.057mg - co2 kg-1 soil/day,光密度高(分光光度计为1.147 ABS,波长为550 nm),光晕区直径最高(10 mm)。
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