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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Excellent N-fixing and P-solubilizing traits in earthworm gut-isolated bacteria: A vermicompost based assessment with vegetable market waste and rice straw feed mixtures
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Excellent N-fixing and P-solubilizing traits in earthworm gut-isolated bacteria: A vermicompost based assessment with vegetable market waste and rice straw feed mixtures

机译:蚯蚓肠道细菌中的优异的N-固定和P溶化性状:基于蔬菜市场废物和稻草饲料混合物的基于蠕动的评估

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摘要

Vermicomposting is a dependable waste recycling technology which greatly augments N and P levels mainly through microbial action. This paper aims to identify efficient N-fixing (NFB) and P-solubilizing (PSB) bacteria from earthworm intestines. Various combinations of vegetable market waste, rice straw, and cowdung were fed to two earthworm species (Eisenia fetida and Perionyx excavatus). Total organic C decreased, pH shifted towards neutrality, and NPK availability, and microbial (NFB, PSB, and total bacteria) population increased remarkably during vermicomposting with E. fetida. Therefore, 45 NFB and 34 PSB strains isolated from Eisenia gut were initially screened, their inter-dominance assessed, and 8 prolific strains were identified through 16SrRNA sequencing. Interestingly, two novel N-fixing strains of Kluyvera ascorbata emerged as an efficient biofertilizer candidate. Moreover, both N-fixing and P-solubilizing strains of Serratia and Bacillus were isolated from earthworm gut. All the isolated strains significantly improved soil health and facilitated crop growth as compared to commercial biofertilizers. (C) 2016 Elsevier Ltd. All rights reserved.
机译:蠕动是一种可靠的废物回收技术,主要通过微生物作用大大增加了N和P水平。本文旨在鉴定蚯蚓肠道的有效的N-固定(NFB)和P溶解(PSB)细菌。蔬菜市场废物,稻草和豇豆的各种组合被喂给两种蚯蚓种类(艾西尼亚·芬内达和疝气Eccavatus)。总有机C下降,致髓鞘与E.Fetida的蛭虫期间,在蛭染过程中,对中性的PH转移到中立性和微生物(NFB,PSB和总细菌)的群体增加。因此,最初筛选了从艾西哥肠道中分离的45个NFB和34个PSB菌株,通过16SRNA测序来鉴定它们的间基位,并通过16SRNA测序鉴定出8种多产菌株。有趣的是,两种新的N-Cuting的Kluyvera ascorbata菌株作为有效的生物分析器候选者出现。此外,从蚯蚓肠道中分离出水土和芽孢杆菌的n固定和p溶解菌株。与商业生物元化器相比,所有分离的菌株均显着改善土壤健康和促进的作物生长。 (c)2016 Elsevier Ltd.保留所有权利。

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