Wang Haibo, Zhan Jinshun, Jiang Haoyun, Jia Haobin, Pan Yue, Zhong Xiaojun, Huo Junhong, Zhao Shengguo
Jiangxi Province Key Laboratory of Animal Green and Healthy Breeding, Institute of Animal Husbandry and Veterinary, Jiangxi Academy of Agricultural Science, Nanchang 330200, China.
College of Animal Science and Technology, Gansu Agricultural University, Lanzhou 730070, China.
Animals (Basel). 2024 Aug 3;14(15):2256. doi: 10.3390/ani14152256.
The objective of this experiment was to explore the effects of three-way hybridization on rumen microbes and metabolites in sheep using rumen metagenomics and metabolomics. Healthy Hu and CAH (Charolais × Australian White × Hu) male lambs of similar birth weight and age were selected for short-term fattening after intensive weaning to collect rumen fluid for sequencing. Rumen metagenomics diversity showed that Hu and CAH sheep were significantly segregated at the species, KEGG-enzyme, and CAZy-family levels. Moreover, the CAH significantly increased the ACE and Chao1 indices. Further, correlation analysis of the abundance of the top 80 revealed that the microorganisms were interrelated at the species, KEGG-enzyme, and CAZy-family levels. Overall, the microbiome significantly affected metabolites of the top five pathways, with the strongest correlation found with succinic acid. Meanwhile, species-level microbial markers significantly affected rumen differential metabolites. In addition, rumen microbial markers in Hu sheep were overall positively correlated with down-regulated metabolites and negatively correlated with up-regulated metabolites. In contrast, rumen microbial markers in CAH lambs were overall negatively correlated with down-regulated metabolites and positively correlated with up-regulated metabolites. These results suggest that three-way crossbreeding significantly affects rumen microbial community and metabolite composition, and that significant interactions exist between rumen microbes and metabolites.
本实验的目的是利用瘤胃宏基因组学和代谢组学探究三元杂交对绵羊瘤胃微生物和代谢产物的影响。选择出生体重和年龄相近的健康湖羊和夏洛莱×澳洲白×湖羊(CAH)雄性羔羊,在集约化断奶后进行短期育肥,采集瘤胃液进行测序。瘤胃宏基因组学多样性分析表明,湖羊和CAH绵羊在物种、KEGG酶和碳水化合物活性酶家族(CAZy)水平上存在显著分离。此外,CAH显著增加了ACE和Chao1指数。进一步对前80种微生物丰度的相关性分析表明,这些微生物在物种、KEGG酶和CAZy家族水平上相互关联。总体而言,微生物群落对前五条代谢途径的代谢产物有显著影响,其中与琥珀酸的相关性最强。同时,物种水平的微生物标志物显著影响瘤胃差异代谢产物。此外,湖羊的瘤胃微生物标志物总体上与下调的代谢产物呈正相关,与上调的代谢产物呈负相关。相反,CAH羔羊的瘤胃微生物标志物总体上与下调的代谢产物呈负相关,与上调的代谢产物呈正相关。这些结果表明,三元杂交显著影响瘤胃微生物群落和代谢产物组成,且瘤胃微生物与代谢产物之间存在显著的相互作用。