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首页> 外文期刊>PLoS One >Influence of Sire Breed on the Interplay among Rumen Microbial Populations Inhabiting the Rumen Liquid of the Progeny in Beef Cattle
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Influence of Sire Breed on the Interplay among Rumen Microbial Populations Inhabiting the Rumen Liquid of the Progeny in Beef Cattle

机译:父系育种对居住在牛肉后代瘤胃液中瘤胃微生物群体之间相互作用的影响

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摘要

This study aimed to evaluate whether the host genetic background impact the ruminal microbial communities of the progeny of sires from three different breeds under different diets. Eighty five bacterial and twenty eight methanogen phylotypes from 49 individuals of diverging sire breed (Angus, ANG; Charolais, CHA; and Hybrid, HYB), fed high energy density (HE) and low energy density (LE) diets were determined and correlated with breed, rumen fermentation and phenotypic variables, using multivariate statistical approaches. When bacterial phylotypes were compared between diets, ANG offspring showed the lowest number of diet-associated phylotypes, whereas CHA and HYB progenies had seventeen and twenty-three diet-associated phylotypes, respectively. For the methanogen phylotypes, there were no sire breed-associated phylotypes; however, seven phylotypes were significantly different among breeds on either diet (P0.05). Sire breed did not influence the metabolic variables measured when high energy diet was fed. A correlation matrix of all pairwise comparisons among frequencies of bacterial and methanogen phylotypes uncovered their relationships with sire breed. A cluster containing methanogen phylotypes M16 (Methanobrevibacter gottschalkii) and M20 (Methanobrevibacter smithii), and bacterial phylotype B62 (Robinsoniella sp.) in Angus offspring fed low energy diet reflected the metabolic interactions among microbial consortia. The clustering of the phylotype frequencies from the three breeds indicated that phylotypes detected in CHA and HYB progenies are more similar among them, compared to ANG animals. Our results revealed that the frequency of particular microbial phylotypes in the progeny of cattle may be influenced by the sire breed when different diets are fed and ultimately further impact host metabolic functions, such as feed efficiency.
机译:这项研究旨在评估宿主的遗传背景是否影响不同饮食下三种不同品种的父亲的后代的瘤胃微生物群落。确定了饲喂高能量密度(HE)和低能量密度(LE)日粮的49个不同父系品种(Angus,ANG,Charolais,CHA和Hybrid,HYB)个体的85种细菌和28种产甲烷菌的系统型。品种,瘤胃发酵和表型变量,使用多元统计方法。当比较饮食之间的细菌系统型时,ANG后代显示出与饮食相关的系统型的数量最少,而CHA和HYB后代分别具有与饮食相关的系统型的十七种和二十三种。对于产甲烷菌的系统型,没有与父系品种相关的系统型。然而,两种饮食中的七个系统型在两个品种之间都存在显着差异(P <0.05)。饲喂高能饮食时,ire公品种不会影响代谢变量。细菌和产甲烷菌种型的频率之间所有成对比较的相关矩阵揭示了它们与父系品种的关系。在低能量饮食的安格斯后代中,含有产甲烷菌种系型M16(Methanobrevibacter gottschalkii)和M20(Methanobrevibacter smithii)以及细菌菌种B62(Robinsoniella sp。)的集群反映了微生物群落之间的代谢相互作用。来自三个品种的系统型频率的聚类表明,与ANG动物相比,在CHA和HYB后代中检测到的系统型更加相似。我们的研究结果表明,当饲喂不同的日粮时,公牛后代中特定微生物系统型的频率可能会受到父代品种的影响,并最终进一步影响宿主的代谢功能,例如饲料效率。

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