Valeris-Chacin Robert, Sponheim Amanda, Fano Eduardo, Isaacson Richard, Singer Randall S, Nerem Joel, Leite Fernando L, Pieters Maria
Department of Veterinary and Biomedical Sciences, College of Veterinary Medicine, University of Minnesota, Saint Paul, MN 55108, USA.
Department of Veterinary Population Medicine, College of Veterinary Medicine, University of Minnesota, Saint Paul, MN 55108, USA.
Microorganisms. 2021 Jan 27;9(2):252. doi: 10.3390/microorganisms9020252.
The association of the lower respiratory tract microbiome in pigs with that of other tissues and environment is still unclear. This study aimed to describe the microbiome of tracheal and oral fluids, air, and feces in the late stage of infection in pigs, and assess the association between the tracheal microbiome and those from air, feces, and oral fluids. Tracheal fluids (n = 73), feces (n = 71), oropharyngeal fluids (n = 8), and air (n = 12) were collected in seeder pigs (inoculated with ) and contact pigs (113 days post exposure to seeder pigs). After DNA extraction, the V4 region from 16S rRNA gene was sequenced and reads were processed using Divisive Amplicon Denoising Algorithm (DADA2). and were among the top five genera identified in all sample types. in tracheal fluids was associated with a reduction of diversity and increment of , , and in tracheal fluids, as well as a reduction of and in feces. Air contributed in a greater proportion to bacteria in the trachea compared with feces and oral fluids. In conclusion, evidence suggests the existence of complex interactions between bacterial communities from distant and distinct niches.
猪下呼吸道微生物群与其他组织及环境微生物群之间的关联仍不明确。本研究旨在描述猪感染后期气管和口腔分泌物、空气及粪便中的微生物群,并评估气管微生物群与空气、粪便及口腔分泌物中微生物群之间的关联。在接种(某种物质)的种猪和接触种猪(接触种猪113天后)中收集气管分泌物(n = 73)、粪便(n = 71)、口咽分泌物(n = 8)及空气(n = 12)。DNA提取后,对16S rRNA基因的V4区域进行测序,并使用分区扩增子去噪算法(DADA2)处理读数。(某些菌属名称)在所有样本类型中均位列鉴定出的前五个菌属。气管分泌物中的(某种菌属)与气管分泌物中多样性降低以及(其他某些菌属)增加相关,同时与粪便中(某些菌属)减少相关。与粪便和口腔分泌物相比,空气对气管中细菌的贡献比例更大。总之,有证据表明来自不同且遥远生态位的细菌群落之间存在复杂的相互作用。