马尾藻在体外瘤胃发酵过程中减少甲烷排放并影响瘤胃微生物群落

Animals Pub Date : 2024-07-13 DOI:10.3390/ani14142057
Shuai Li, Yi Sun, Tongjun Guo, Wenyou Liu, Xiong Tong, Zhifei Zhang, Jiajie Sun, Yufeng Yang, Shuli Yang, Dagang Li, L. Min
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引用次数: 0

摘要

反刍动物排放的甲烷是温室气体的重要来源。本研究通过体外瘤胃发酵探讨了 S. mcclurei 的甲烷减排效果和机制,旨在确定其作为饲料添加剂的潜力。我们研究了干物质添加量为 2%、5% 和 10% 的冻干和干 S. mcclurei 对体外瘤胃发酵中营养物质降解、瘤胃发酵、甲烷抑制和微生物群落结构的影响。添加量为 2% 的冻干 S. mcclurei 能显著减少 18.85% 的甲烷排放量,并提高粗蛋白降解性。然而,与对照组相比,两种处理的总挥发性脂肪酸和乙酸浓度都较低。微生物的变化包括 Lachnospiraceae_NK3A20_group 和 Ruminococcus 的减少,以及 Selenomonas、Succinivibrio 和 Saccharofermentans 的增加,从而促进了丙酸盐的产生。此外,还观察到甲烷微生物显著减少,这表明甲烷直接得到缓解。冷冻干燥的 S. mcclurei(添加量为 2%)显示出作为一种有效甲烷缓解策略的潜力,对瘤胃发酵的影响极小,微生物群落变化的详细分析也为其提供了支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sargassum mcclurei Mitigating Methane Emissions and Affecting Rumen Microbial Community in In Vitro Rumen Fermentation
Methane emissions from ruminants significantly contribute to greenhouse gases. This study explores the methane mitigation effect and mechanism of S. mcclurei through in vitro rumen fermentation, aiming to establish its potential as a feed additive. We investigated the effects of freeze-dried and dried S. mcclurei at supplementation levels of 2%, 5%, and 10% of dry matter on nutrient degradation, ruminal fermentation, methane inhibition, and microbial community structure in in vitro rumen fermentation. The freeze-dried S. mcclurei at 2% supplementation significantly reduced CH4 emissions by 18.85% and enhanced crude protein degradability. However, total VFA and acetate concentrations were lower in both treatments compared to the control. The microbial shifts included a decrease in Lachnospiraceae_NK3A20_group and Ruminococcus and an increase in Selenomonas, Succinivibrio, and Saccharofermentans, promoting propionate production. Additionally, a significant reduction in Methanomicrobium was observed, indicating direct methane mitigation. Freeze-dried S. mcclurei at a 2% supplementation level shows potential as an effective methane mitigation strategy with minimal impact on rumen fermentation, supported by detailed insights into microbial community changes.
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