Suppr超能文献

特邀综述——瘤胃微生物群在反刍动物可持续生产中减少肠道甲烷排放方面的作用

- Invited Review - The role of rumen microbiota in enteric methane mitigation for sustainable ruminant production.

作者信息

Shinkai Takumi, Takizawa Shuhei, Fujimori Miho, Mitsumori Makoto

机构信息

NARO Institute of Livestock and Grassland Science, Ibaraki 305-0901, Japan.

出版信息

Anim Biosci. 2024 Feb;37(2):360-369. doi: 10.5713/ab.23.0301. Epub 2023 Nov 2.

Abstract

Ruminal methane production functions as the main sink for metabolic hydrogen generated through rumen fermentation and is recognized as a considerable source of greenhouse gas emissions. Methane production is a complex trait affected by dry matter intake, feed composition, rumen microbiota and their fermentation, lactation stage, host genetics, and environmental factors. Various mitigation approaches have been proposed. Because individual ruminants exhibit different methane conversion efficiencies, the microbial characteristics of low-methane-emitting animals can be essential for successful rumen manipulation and environment-friendly methane mitigation. Several bacterial species, including Sharpea, uncharacterized Succinivibrionaceae, and certain Prevotella phylotypes have been listed as key players in low-methane-emitting sheep and cows. The functional characteristics of the unclassified bacteria remain unclear, as they are yet to be cultured. Here, we review ruminal methane production and mitigation strategies, focusing on rumen fermentation and the functional role of rumen microbiota, and describe the phylogenetic and physiological characteristics of a novel Prevotella species recently isolated from low methane-emitting and high propionate-producing cows. This review may help to provide a better understanding of the ruminal digestion process and rumen function to identify holistic and environmentally friendly methane mitigation approaches for sustainable ruminant production.

摘要

瘤胃甲烷生成是瘤胃发酵产生的代谢性氢气的主要去路,被认为是温室气体排放的重要来源。甲烷生成是一个复杂的性状,受干物质采食量、饲料组成、瘤胃微生物群及其发酵、泌乳阶段、宿主遗传和环境因素影响。已提出了各种缓解方法。由于个体反刍动物表现出不同的甲烷转化效率,低甲烷排放动物的微生物特征对于成功进行瘤胃调控和环境友好型甲烷减排至关重要。包括沙雷氏菌属、未分类的琥珀酸弧菌科以及某些普雷沃氏菌系统型在内的几种细菌已被列为低甲烷排放绵羊和奶牛的关键参与者。未分类细菌的功能特征仍不清楚,因为它们尚未被培养。在此,我们综述瘤胃甲烷生成和减排策略,重点关注瘤胃发酵和瘤胃微生物群的功能作用,并描述最近从低甲烷排放和高丙酸产生奶牛中分离出的一种新型普雷沃氏菌的系统发育和生理特征。本综述可能有助于更好地理解瘤胃消化过程和瘤胃功能,以确定可持续反刍动物生产的整体和环境友好型甲烷减排方法。

相似文献

1
- Invited Review - The role of rumen microbiota in enteric methane mitigation for sustainable ruminant production.
Anim Biosci. 2024 Feb;37(2):360-369. doi: 10.5713/ab.23.0301. Epub 2023 Nov 2.
2
Characteristics of rumen microbiota and isolates found in high propionate and low methane-producing dairy cows.
Front Microbiol. 2024 Jun 3;15:1404991. doi: 10.3389/fmicb.2024.1404991. eCollection 2024.
9
Synergistic Effects of 3-Nitrooxypropanol with Fumarate in the Regulation of Propionate Formation and Methanogenesis in Dairy Cows .
Appl Environ Microbiol. 2022 Mar 22;88(6):e0190821. doi: 10.1128/AEM.01908-21. Epub 2022 Jan 26.
10
Dietary wheat and reduced methane yield are linked to rumen microbiome changes in dairy cows.
PLoS One. 2022 May 19;17(5):e0268157. doi: 10.1371/journal.pone.0268157. eCollection 2022.

引用本文的文献

1
Host-driven remodeling of rumen microbiota supports lactation metabolism in buffalo.
Front Microbiol. 2025 Jun 25;16:1617388. doi: 10.3389/fmicb.2025.1617388. eCollection 2025.
3
'Geophagy' and Clay Minerals: Influencing Ruminal Microbial Fermentation for Methane Mitigation.
Microorganisms. 2025 Apr 10;13(4):866. doi: 10.3390/microorganisms13040866.
5
Exploring the Effect of Gastrointestinal on Growth Performance Traits in Livestock Animals.
Animals (Basel). 2024 Jul 2;14(13):1965. doi: 10.3390/ani14131965.

本文引用的文献

1
Microbial lactate utilisation and the stability of the gut microbiome.
Gut Microbiome (Camb). 2022 May 4;3:e3. doi: 10.1017/gmb.2022.3. eCollection 2022.
2
Climate change responses benefit from a global food system approach.
Nat Food. 2020 Feb;1(2):94-97. doi: 10.1038/s43016-020-0031-z.
3
Single-cell genomics meets human genetics.
Nat Rev Genet. 2023 Aug;24(8):535-549. doi: 10.1038/s41576-023-00599-5. Epub 2023 Apr 21.
4
Prevotella: A Key Player in Ruminal Metabolism.
Microorganisms. 2022 Dec 20;11(1):1. doi: 10.3390/microorganisms11010001.
5
A taxonomic note on the genus Prevotella: Description of four novel genera and emended description of the genera Hallella and Xylanibacter.
Syst Appl Microbiol. 2022 Nov;45(6):126354. doi: 10.1016/j.syapm.2022.126354. Epub 2022 Aug 20.
6
Full adoption of the most effective strategies to mitigate methane emissions by ruminants can help meet the 1.5 °C target by 2030 but not 2050.
Proc Natl Acad Sci U S A. 2022 May 17;119(20):e2111294119. doi: 10.1073/pnas.2111294119. Epub 2022 May 10.
7
sp. nov., isolated from the rumen of cows.
Int J Syst Evol Microbiol. 2022 Mar;72(3). doi: 10.1099/ijsem.0.005278.
8
Metabolic Hydrogen Flows in Rumen Fermentation: Principles and Possibilities of Interventions.
Front Microbiol. 2020 Apr 15;11:589. doi: 10.3389/fmicb.2020.00589. eCollection 2020.
10
Volatile Fatty Acids in Ruminal Fluid Can Be Used to Predict Methane Yield of Dairy Cows.
Animals (Basel). 2019 Nov 20;9(12):1006. doi: 10.3390/ani9121006.

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验