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Ruminal methane production: Associated microorganisms and the potential of applying hydrogen-utilizing bacteria for mitigation

机译:瘤胃甲烷的产生:相关的微生物以及应用减氢细菌进行缓解的潜力

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摘要

Methane emission from ruminants not only causes serious environmental problems, but also represents a significant source of energy loss to animals. The increasing demand for sustainable animal production is driving researchers to explore proper strategies to mitigate ruminal methanogenesis. Since hydrogen is the primary substrate of ruminal methanogenesis, hydrogen metabolism and its associated microbiome in the rumen may closely relate to low- and high-methane phenotypes. Using candidate microbes that can compete with methanogens and redirect hydrogen away from methanogenesis as ruminal methane mitigants are promising avenues for methane mitigation, which can both prevent the adverse effects deriving from chemical additives such as toxicity and resistance, and increase the retention of feed energy. This review describes the ruminal microbial ecosystem and its association with methane production, as well as the effects of interspecies hydrogen transfer on methanogenesis. It provides a scientific perspective on using bacteria that are involved in hydrogen utilization as ruminal modifiers to decrease methanogenesis. This information will be helpful in better understanding the key role of ruminal microbiomes and their relationship with methane production and, therefore, will form the basis of valuable and eco-friendly methane mitigation methods while improving animal productivity. (C) 2018 Elsevier B.V. All rights reserved.
机译:反刍动物的甲烷排放不仅造成严重的环境问题,而且是动物能量损失的重要来源。对可持续动物生产的需求不断增长,促使研究人员探索减轻瘤胃甲烷生成的适当策略。由于氢是瘤胃甲烷生成的主要底物,因此瘤胃中氢代谢及其相关的微生物组可能与低甲烷和高甲烷表型密切相关。使用能与产甲烷菌竞争并将氢从产甲烷菌中转移出来的候选微生物作为瘤胃甲烷缓解剂是缓解甲烷的有前途的途径,既可以防止由化学添加剂产生的不利影响,例如毒性和抗性,又可以增加饲料能量的保留。这篇综述描述了瘤胃微生物生态系统及其与甲烷产生的关系,以及种间氢转移对甲烷生成的影响。它提供了关于使用与氢利用有关的细菌作为瘤胃改良剂以减少甲烷生成的科学观点。这些信息将有助于更好地了解瘤胃微生物群的关键作用及其与甲烷产生的关系,因此,将在提高动物生产力的同时,成为有价值和生态友好的甲烷减排方法的基础。 (C)2018 Elsevier B.V.保留所有权利。

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