Faculty of Science and Technology, Libera Università di Bolzano, Piazza Università 5, Bolzano, 39100, Italy.
Department of Biology, University of Padova, Via 8 Febbraio 1848, 2, Padova, 35122, Italy.
Environ Microbiol. 2021 Mar;23(3):1702-1716. doi: 10.1111/1462-2920.15407. Epub 2021 Feb 16.
Questionnaires on farming conditions were retrieved from 2129 dairy farms and clustered, resulting in 106 representative raw cow's milk samples analysed in winter and summer. Substantiating the efficiency of our survey, some farming conditions affected the milk physicochemical composition. Culturing identified several species of lactic acid bacteria (LAB) per milk, whose number increased through 16S ribosomal RNA (rRNA) gene sequencing and shotgun metagenome analyses. Season, indoor versus outdoor housing, cow numbers, milk substitutes, ratio cattle/rest area, house care system during lactation, and urea and medium-chain fatty acids correlated with the overall microbiome composition and the LAB diversity within it. Shotgun metagenome detected variations in gene numbers and uniqueness per milk. LAB functional pathways differed among milk samples. Focusing on amino acid metabolisms and matching the retrieved annotated genes versus non-starter lactic acid bacteria (NSLAB) references from KEGG and corresponding to those identified, all samples had the same gene spectrum for each pathway. Conversely, gene redundancy varied among samples and agreed with NSLAB diversity. Milk samples with higher numbers of NSLAB species harboured higher number of copies per pathway, which would enable steady-state towards perturbations. Some farming conditions, which affected the microbiome richness, also correlated with the NSLAB composition and functionality.
从 2129 个奶牛场中检索了有关养殖条件的调查问卷,并进行了聚类,结果在冬季和夏季分析了 106 个具有代表性的生牛乳样本。我们的调查结果表明,一些养殖条件会影响牛奶的理化组成。通过对 16S 核糖体 RNA(rRNA)基因测序和鸟枪法宏基因组分析,鉴定出每毫升牛奶中存在多种乳酸菌(LAB)。结果表明,季节、室内与室外饲养、奶牛数量、牛奶替代品、牛/休息区比例、泌乳期房屋护理系统以及尿素和中链脂肪酸与整体微生物群落组成及其内的 LAB 多样性相关。鸟枪法宏基因组检测到了每个样本中基因数量和独特性的变化。不同的牛奶样本中 LAB 功能途径存在差异。聚焦于氨基酸代谢,并将检索到的与 KEGG 中的非发酵乳酸菌(NSLAB)参考相对应的注释基因与鉴定出的基因进行匹配,所有样本在每个途径中都具有相同的基因谱。相反,样本之间的基因冗余度存在差异,且与 NSLAB 的多样性一致。含有更多 NSLAB 种类的牛奶样本具有更高的每条途径的拷贝数,这将使它们能够在受到干扰时达到稳定状态。一些影响微生物丰富度的养殖条件也与 NSLAB 的组成和功能相关。