Department of Soil, Plant and Food Sciences, University of Bari A. Moro, Valenzano, Italy.
Department of Veterinary Medicine, University of Bari A. Moro, Valenzano, Italy.
Microbiol Spectr. 2022 Oct 26;10(5):e0051422. doi: 10.1128/spectrum.00514-22. Epub 2022 Aug 16.
Raw cow milk is one of the most complex and unpredictable food matrices shaped by the interaction between biotic and abiotic factors. Changes in dairy farming conditions impact the quality and safety of milk, which largely depend on seasonality. Changes in microbiome composition and relative metabolic pathways are derived from microbial interactions, as well as from seasonality, mammary, and extramammary conditions (e.g., farm management and outdoor environment). Breeding data from >600 Apulian farms were examined, and the associated physicochemical parameters were processed by a reductionist approach to obtain a raw cow milk sample subset. We investigated the microbiological variability in cultivable and 16S rRNA sequencing microbiota as affected by seasonal fluctuations at two time points (winter and summer seasons). We identified families (, , and ) whose increased abundance during winter may cause a shift toward a pathobiont microbial niche that leads to lower milk quality. Apulian summer season conditions were advantageous to the presence of specific taxa, i.e., (i.e., ) and , which in turn may favor better milk preservation. The strength of this study lies in the microbiological characterization of a wide range of farm management data to achieve a more comprehensive framework of Apulian milk. Specific regional pedoclimatic and management conditions impact the taxa present and their abundances within this ecological food niche. The obtained results lay the groundwork for comparison with other worldwide extensive farming areas.
生牛乳是由生物和非生物因素相互作用形成的最复杂和最不可预测的食品基质之一。奶牛养殖条件的变化会影响牛奶的质量和安全性,而这在很大程度上取决于季节性。微生物组组成和相对代谢途径的变化源自微生物相互作用以及季节性、乳腺和乳腺外条件(例如,农场管理和户外环境)。对来自>600 家普利亚农场的数据进行了检查,并通过简化方法处理了相关的理化参数,以获得生牛乳样本子集。我们研究了在两个时间点(冬季和夏季)受季节性波动影响的可培养和 16S rRNA 测序微生物群的微生物变异性。我们确定了一些家族(,,和),它们在冬季的丰度增加可能导致向病原菌微生物生境转变,从而降低牛奶质量。普利亚夏季的条件有利于特定分类群的存在,例如(即)和,这反过来又可能有利于更好地保存牛奶。本研究的优势在于对广泛的农场管理数据进行微生物学特征分析,以实现对普利亚牛奶更全面的框架。特定的区域土壤气候和管理条件会影响该生态食品生境中存在的分类群及其丰度。所获得的结果为与其他全球广泛的养殖地区进行比较奠定了基础。