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Interactions between Anaerobic Fungi and Methanogens in the Rumen and Their Biotechnological Potential in Biogas Production from Lignocellulosic Materials

机译:木质纤维素材料瘤胃瘤中厌氧真菌和甲烷的相互作用及其生物化纤维素材料生产中的生物技术潜力

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摘要

Anaerobic fungi in the digestive tract of herbivores are one of the critical types of fiber-degrading microorganisms present in the rumen. They degrade lignocellulosic materials using unique rhizoid structures and a diverse range of fiber-degrading enzymes, producing metabolic products such as H2/CO2, formate, lactate, acetate, and ethanol. Methanogens in the rumen utilize some of these products (e.g., H2 and formate) to produce methane. An investigation of the interactions between anaerobic fungi and methanogens is helpful as it provides valuable insight into the microbial interactions within the rumen. During the last few decades, research has demonstrated that anaerobic fungi stimulate the growth of methanogens and maintain methanogenic diversity. Meanwhile, methanogens increase the fiber-degrading capability of anaerobic fungi and stimulate metabolic pathways in the fungal hydrogenosome. The ability of co-cultures of anaerobic fungi and methanogens to degrade fiber and produce methane could potentially be a valuable method for the degradation of lignocellulosic materials and methane production.
机译:在食草动物的消化道中的厌氧真菌是瘤胃中存在的近期纤维降解微生物之一。它们使用独特的根茎结构和各种纤维降解酶降低木质纤维素材料,产生代谢产物,例如H 2 / CO 2,甲酸,甲酸酯,乙酸盐和乙醇。瘤胃中的甲烷剂利用这些产品中的一些(例如,H 2和甲酸)产生甲烷。对厌氧真菌和甲烷基因之间相互作用的研究有助于,因为它为瘤胃内的微生物相互作用提供了有价值的洞察力。在过去的几十年中,研究表明,厌氧真菌刺激甲烷的生长并保持甲烷的多样性。同时,甲烷酮增加了厌氧真菌的纤维降解能力,并刺激真菌氢质中的代谢途径。厌氧真菌和甲烷转化纤维和生产甲烷的共同培养的能力可能是一种有价值的木质纤维素材料和甲烷生产的方法。

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