Possibility of using Bacillus and Trichoderma strains for decomposition of crop residues

Dragana Bjelic Dj., B. Marinković, B. Tintor, M. Ninkov, R. Vasin, S. Zivanov, P. Jaksic
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Abstract

The objective of this study was to investigate the possibility of using microbial strains as residue decomposers and to determine the effect of these strains on chemical and microbial properties in the residue-amended soil. Greenhouse experiment consisted of eight Bacillus treatments, three Trichoderma treatments, and their combination, all applied to non-sterile chernozem soil amended with wheat straw. Incorporation of wheat straw improved soil chemical and microbial properties, while the extent of residue decom?position under microbial strains was intensified. Microbial treatments significantly affected the soil pH, the content of carbonate, total carbon, soil organic carbon, humus, and available phosphorus and potassium. Bacterial and fungal treatments also significantly influenced the total microbial number, ammonifiers, N2-fixers, fungi, actinomycetes, oligotrophs, copiotrophs, and cellulolytic microorganisms. The effect of microbial treatments varied depending on the applied strains and examined properties, with Bacillus strains being more promising residue decomposers compared to Trichoderma strains. The most effective microbial strains could be used as potential decomposers of crop residues.
利用芽孢杆菌和木霉菌株分解作物残余物的可能性
本研究的目的是探讨利用微生物菌株作为残渣分解者的可能性,并确定这些菌株对残渣改良土壤的化学和微生物特性的影响。温室试验包括8个芽孢杆菌处理、3个木霉处理及其组合,均施用于麦秸改良的黑钙土。麦秸的掺入改善了土壤的化学性质和微生物性质,而秸秆的腐烂程度?在微生物菌株下的位置加强。微生物处理对土壤pH、碳酸盐、全碳、土壤有机碳、腐殖质、速效磷和速效钾含量均有显著影响。细菌和真菌处理也显著影响了微生物总数、氨化菌、n2固定菌、真菌、放线菌、寡养菌、共养菌和纤维素降解微生物。微生物处理的效果取决于所施用的菌株和所检查的性质,与木霉菌株相比,芽孢杆菌菌株是更有希望的残渣分解者。最有效的微生物菌株可以作为作物残茬的潜在分解者。
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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