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Comparison of Two Cellulomonas Strains and Their Interaction with Azospirillum brasilense in Degradation of Wheat Straw and Associated Nitrogen Fixation

机译:两种纤维素单胞菌菌株及其与巴西偶氮螺旋菌在小麦秸秆降解和相关固氮中的相互作用的比较

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摘要

A mutant strain of Cellulomonas sp. CS1-17 was compared with Cellulomonas gelida 2480 as the cellulolytic component of a mixed culture which was responsible for the breakdown of wheat straw to support asymbiotic nitrogen fixation by Azospirillum brasilense Sp7 (ATCC 29145). Cellulomonas sp. strain CSI-17 was more efficient than was C. gelida in cellulose breakdown at lower oxygen concentrations and, in mixed culture with A. brasilense, it supported higher nitrogenase activity (C2H2 reduction) and nitrogen fixation with straw as the carbon source. Based on gravimetric determinations of straw breakdown and total N determinations, the efficiency of nitrogen fixation was 72 and 63 mg of N per g of straw utilized for the mixtures containing Cellulomonas sp. and C. gelida, respectively. Both Cellulomonas spp. and Azospirillum spp. exhibited a wide range of pH tolerance. When introduced into sterilized soil, the Cellulomonas sp.-Azospirillum brasilense association was more effective in nitrogen fixation at a pH of 7.0 than at the native soil pH (5.6). This was also true of the indigenous diazotrophic microflora of this soil. The potential implications of this work to the field situation are discussed.
机译:纤维单胞菌sp。的突变株。将CS1-17与纤维素纤维素酶2480作为混合培养物中的纤维素分解成分进行了比较,该纤维素分解成分负责小麦秸秆的分解,以支持巴西细螺旋藻(Azospirillum brasilense Sp7)(ATCC 29145)的非共生固氮。纤维单胞菌在较低的氧浓度下,CSI-17菌株比C. gelida的纤维素分解效率更高,并且在与Brasilense的混合培养中,它支持更高的固氮酶活性(减少C2H2)和用稻草作为碳源固氮。根据重量测定的秸秆分解和总氮含量测定,固氮效率为每克秸秆中含纤维单胞菌属混合物的固氮效率分别为72和63 mg。和C. gelida,分别。两个纤维单胞菌属。和固氮螺菌属。表现出广泛的pH耐受性。当引入无菌土壤中时,Cellulomonas sp.-Azospirillum brasilense协会在7.0的pH下固氮比在天然土壤的pH(5.6)下更有效。这种土壤的原生重氮微生物菌群也是如此。讨论了这项工作对现场情况的潜在影响。

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