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Development of compatible lignocellulolytic fungal consortium for rapid composting of rice straw

机译:开发用于稻草快速堆肥的相容性木质纤维素分解真菌财团

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An experiment was conducted to evaluate the potential of lignocellulolytic fungi for rapid composting of rice straw. Forty-nine isolates of fungi were isolated from several natural and induced rice straw composting sources. ten isolates were tested for their potential to decompose lignocellulosic rice straw by assessing their growth rate and biomass production, as well as their ability to decompose lignin and cellulose on rice-straw-powder-amended media. Four isolates (F26, F28, F29, and F44) were selected as potential lignocellulolytic agents for in-vitro compatibility study based on their optimum growth rate, biomass production, and lignocellulolytic activities. Six different interactions were found among four interacting isolates in the form of mutual intermingling, partial mutual intermingling, and inhibition at the contact point. Finally, a consortium of Aspergillus niger (F44) and Trichoderma viride (F26) was tested for in-vitro biodegradation of rice straw. The fungal consortium was able to decompose cellulose, hemicelluloses, lignin, and total carbon significantly (p <= 0.05) over the control. The C/N ratio was reduced to 19.5 from an initial value of 29.3 in three weeks of the biodegradation process, thus showing the potential of this method for use in large-scale composting of rice straw.
机译:进行了一项实验,以评估木质纤维素分解真菌对稻草快速堆肥的潜力。从几种天然稻草堆肥和人工稻草堆肥中分离出四十九种真菌。通过评估其生长速率和生物量生产以及在稻草粉改良培养基上分解木质素和纤维素的能力,测试了十个分离株分解木质纤维素稻草的潜力。根据它们的最佳生长速率,生物量产生和木质纤维素分解活性,选择了四个分离株(F26,F28,F29和F44)作为潜在的木质纤维素分解剂用于体外相容性研究。在四个相互作用的分离物中以相互混合,部分相互混合和抑制接触的形式发现了六个不同的相互作用。最后,测试了黑曲霉(F44)和绿色木霉(F26)的联合体对稻草的体外生物降解。真菌财团能够比对照组显着分解纤维素,半纤维素,木质素和总碳(p <= 0.05)。在三周的生物降解过程中,C / N比从最初的29.3降低到了19.5,因此显示了这种方法在稻草大规模堆肥中的潜力。

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