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宏基因组学揭示乳用母水牛瘤胃微生物组的年龄效应

An Age Effect of Rumen Microbiome in Dairy Buffaloes Revealed by Metagenomics.

作者信息

Li Long-Ping, Peng Ke-Lan, Xue Ming-Yuan, Zhu Sen-Lin, Liu Jian-Xin, Sun Hui-Zeng

机构信息

Ministry of Education Key Laboratory of Molecular Animal Nutrition, Zhejiang University, Hangzhou 310058, China.

Shaanxi Provincial Engineering and Technology Research Center of Cashmere Goats, Yulin University, Yulin 719000, China.

出版信息

Microorganisms. 2022 Jul 25;10(8):1491. doi: 10.3390/microorganisms10081491.

DOI:10.3390/microorganisms10081491
PMID:35893549
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9332492/
Abstract

Age is an important factor in shaping the gut microbiome. However, the age effect on the rumen microbial community for dairy buffaloes remains less explored. Using metagenomics, we examined the microbial composition and functions of rumen microbiota in dairy Murrah buffaloes of different ages: Y (1 year old), M (3−5 years old), E (6−8 years old), and O (>9 years old). We found that Bacteroidetes and Firmicutes were the predominant phyla, with Prevotella accounting for the highest abundance at the genus level. The proportion of Bacteroides and Methanobrevibacter significantly increased with age, while the abundance of genus Lactobacillus significantly decreased with age (LDA > 3, p < 0.05). Most differed COG and KEGG pathways were enriched in Y with carbohydrate metabolism, while older buffaloes enriched more functions of protein metabolism and the processing of replication and repair (LDA > 2, p < 0.05). Additionally, the functional contribution analysis revealed that the genera Prevotella and Lactobacillus of Y with more functions of CAZymes encoded genes of glycoside hydrolases and carbohydrate esterases for their roles of capable of metabolizing starch and sucrose-associated oligosaccharide enzyme, hemicellulase, and cellulase activities than the other three groups (LDA > 2, p < 0.05), thus affecting the 1-year-old dairy buffalo rumen carbohydrate metabolism. This study provides comprehensive dairy buffalo rumen metagenome data and assists in manipulating the rumen microbiome for improved dairy buffalo production.

摘要

年龄是塑造肠道微生物群的一个重要因素。然而,年龄对奶水牛瘤胃微生物群落的影响仍有待深入研究。我们利用宏基因组学技术,检测了不同年龄的穆拉奶水牛瘤胃微生物群的组成和功能,这些水牛分为四组:Y组(1岁)、M组(3 - 5岁)、E组(6 - 8岁)和O组(9岁以上)。我们发现拟杆菌门和厚壁菌门是主要的门类,普雷沃氏菌在属水平上的丰度最高。拟杆菌属和甲烷短杆菌属的比例随年龄显著增加,而乳酸杆菌属的丰度随年龄显著降低(线性判别分析得分> 3,p < 0.05)。大多数差异的COG和KEGG通路在Y组中富集于碳水化合物代谢,而年龄较大的水牛在蛋白质代谢以及复制和修复过程方面富集了更多功能(线性判别分析得分> 2,p < 0.05)。此外,功能贡献分析表明,Y组的普雷沃氏菌属和乳酸杆菌属具有更多编码糖苷水解酶和碳水化合物酯酶的CAZymes基因功能,能够代谢淀粉和蔗糖相关的低聚糖酶、半纤维素酶和纤维素酶,其功能强于其他三组(线性判别分析得分> 2,p < 0.05),从而影响1岁奶水牛瘤胃的碳水化合物代谢。本研究提供了全面的奶水牛瘤胃宏基因组数据,并有助于调控瘤胃微生物群以提高奶水牛生产性能。

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本文引用的文献

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The microbiome of the buffalo digestive tract.水牛消化道微生物组。
Nat Commun. 2022 Feb 10;13(1):823. doi: 10.1038/s41467-022-28402-9.
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Anim Microbiome. 2021 Jul 1;3(1):44. doi: 10.1186/s42523-021-00103-6.
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Opportunities and Challenges for Improving the Productivity of Swamp Buffaloes in Southeastern Asia.提高东南亚沼泽水牛生产力面临的机遇与挑战
微生物宏基因组和宿主转录组揭示了牦牛从出生到成年瘤胃基因表达、微生物定植及矿物元素代谢协同调控的动态变化。
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