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氢化酶体,基于代谢联系将厌氧真菌与利用氢的微生物配对以促进生物质利用。

Hydrogenosome, Pairing Anaerobic Fungi and H-Utilizing Microorganisms Based on Metabolic Ties to Facilitate Biomass Utilization.

作者信息

Ma Jing, Zhong Pei, Li Yuqi, Sun Zhanying, Sun Xiaoni, Aung Min, Hao Lizhuang, Cheng Yanfen, Zhu Weiyun

机构信息

Laboratory of Gastrointestinal Microbiology, National Center for International Research on Animal Gut Nutrition, Nanjing Agricultural University, Nanjing 210095, China.

Department of Animal Nutrition, University of Veterinary Science, Nay Pyi Taw 15013, Myanmar.

出版信息

J Fungi (Basel). 2022 Mar 24;8(4):338. doi: 10.3390/jof8040338.

Abstract

Anaerobic fungi, though low in abundance in rumen, play an important role in the degradation of forage for herbivores. When only anaerobic fungi exist in the fermentation system, the continuous accumulation of metabolites (e.g., hydrogen (H) and formate) generated from their special metabolic organelles-the hydrogenosome-inhibits the enzymatic reactions in the hydrogenosome and reduces the activity of the anaerobic fungi. However, due to interspecific H transfer, H produced by the hydrogenosome can be used by other microorganisms to form valued bioproducts. This symbiotic interaction between anaerobic fungi and other microorganisms can be used to improve the nutritional value of animal feeds and produce value-added products that are normally in low concentrations in the fermentation system. Because of the important role in the generation and further utilization of H, the study of the hydrogensome is increasingly becoming an important part of the development of anaerobic fungi as model organisms that can effectively improve the utilization value of roughage. Here, we summarize and discuss the classification and the process of biomass degradation of anaerobic fungi and the metabolism and function of anaerobic fungal hydrogensome, with a focus on the potential role of the hydrogensome in the efficient utilization of biomass.

摘要

厌氧真菌虽然在瘤胃中的丰度较低,但在草食动物的草料降解中发挥着重要作用。当发酵系统中仅存在厌氧真菌时,其特殊代谢细胞器——氢化酶体产生的代谢产物(如氢气(H)和甲酸)持续积累,会抑制氢化酶体中的酶促反应,并降低厌氧真菌的活性。然而,由于种间氢转移,氢化酶体产生的H可被其他微生物利用以形成有价值的生物产品。厌氧真菌与其他微生物之间的这种共生相互作用可用于提高动物饲料的营养价值,并生产发酵系统中通常浓度较低的增值产品。由于在H的产生和进一步利用中具有重要作用,氢化酶体的研究日益成为将厌氧真菌开发为可有效提高粗饲料利用价值的模式生物的重要组成部分。在此,我们总结并讨论厌氧真菌的分类、生物质降解过程以及厌氧真菌氢化酶体的代谢和功能,重点关注氢化酶体在生物质高效利用中的潜在作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7953/9026988/e70ff60f40af/jof-08-00338-g001.jpg

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