Institute of Animal Science, University of Hohenheim, Stuttgart, Germany.
Institute of Animal Science, University of Hohenheim, Stuttgart, Germany
G3 (Bethesda). 2020 Jul 7;10(7):2553-2562. doi: 10.1534/g3.120.401424.
It is well known that mammals and avian gut microbiota compositions are shaped by the host genomes and affect quantitative traits. The microbial architecture describes the impact of the microbiota composition on quantitative trait variation and the number and effect distribution of microbiota features. In the present study the gut microbial architecture of feed-related traits phosphorus and calcium utilization, daily gain, feed intake and feed per gain ratio in the domestic poultry model species Japanese quail were assessed by mixed linear models. The ileum microbiota composition was characterized by 16S rRNA amplicon sequencing techniques of growing individuals. The microbiability of the traits was on a similar level as the narrow sense heritability and was highly significant except for calcium utilization. The animal microbial correlation of the traits was substantial. Microbiome-wide association analyses revealed several traits associated and highly significant microbiota features, both on the bacteria genera as well as on the operational taxonomic unit level. Most features were significant for more than one trait, which explained the high microbial correlations. It can be concluded that the traits are polymicrobial determined with some microbiota features with larger effects and many with small effects. The results are important for the development of hologenomic selection schemes for feed-related traits in avian breeding programs that are targeting the host genome and the metagenome simultaneously.
众所周知,哺乳动物和禽类的肠道微生物群落组成受宿主基因组影响,并影响数量性状。微生物结构描述了微生物群落组成对数量性状变异的影响,以及微生物特征的数量和效应分布。在本研究中,通过混合线性模型评估了与饲料相关的性状(磷和钙利用率、日增重、采食量和饲料增重比)在禽类模型物种日本鹌鹑中的肠道微生物结构。通过生长个体的 16S rRNA 扩增子测序技术对回肠微生物群落组成进行了描述。这些性状的微生物可变性与狭义遗传力相当,除了钙利用率外,其余性状均高度显著。动物之间这些性状的微生物相关性很高。全微生物关联分析揭示了一些与性状相关的、高度显著的微生物特征,包括细菌属和操作分类单元水平上的特征。大多数特征与一个以上的性状显著相关,这解释了微生物相关性高的原因。可以得出结论,这些性状是多微生物决定的,一些微生物特征具有较大的效应,而许多特征则具有较小的效应。这些结果对于禽类育种计划中同时针对宿主基因组和宏基因组的与饲料相关的性状的全息基因组选择方案的发展非常重要。