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荷斯坦奶牛与德国西门塔尔牛×荷斯坦牛杂交F1代犊牛肠道微生物群的差异微生物组成及跨界相互作用:细菌和真菌多样性的综合分析

Differential Microbial Composition and Interkingdom Interactions in the Intestinal Microbiota of Holstein and German Simmental × Holstein Cross F1 Calves: A Comprehensive Analysis of Bacterial and Fungal Diversity.

作者信息

Nan Shanshan, Li Jiacheng, Kuang Yu, Feng Jiaqi, Wang Hailiang, Niu Junli, Wu Yanyan, Zhang Wenju, Nie Cunxi

机构信息

College of Animal Science and Technology, Shihezi University, North Street 5, Shihezi 832000, China.

出版信息

Microorganisms. 2024 Feb 28;12(3):486. doi: 10.3390/microorganisms12030486.

Abstract

Calf intestines are colonized by rich and complex microbial communities, playing a crucial role in animal physiology, metabolism, nutrition, and immune function. In this study, we provide insight into the composition of fecal microbial bacteria and fungi, respectively, as well as the cross-kingdom interactions. We investigated the intestinal microbiota of different breeds of calves by characterizing the bacterial and fungal communities in the rectal feces of Holstein calves and German Simmental × Holstein cross F1 generation (GXH) using 16S rRNA and ITS amplicon sequencing techniques. PICRUSt2 (version 2.2.0) were used to determine microbial diversity and function and explore the reasons why Holstein calves are more susceptible to diarrhea. The results revealed no significant difference in the diversity of fecal microbiota among the groups ( > 0.05). We identified and as the dominant bacterial phyla in the fecal bacterial communities of the two breeds of calves. and play important roles in the fungal community but differ in relative abundance. was the dominant genus at the group level for calf fecal microbiota in both breeds. The relative abundance of , -, , and was higher in Holstein calves, and the relative abundance of , , , and was lower than GXH group. and were the dominating genera of fecal fungi in both groups of calves. LEfSe analysis revealed 33 different bacteria and 23 different fungi between the two groups, with more differential strains found in GXH. In addition, the feces fungi-bacteria interkingdom interactions varied among breeds. Thus, the composition and structure of bacterial and fungal communities in calf feces varied by breed, indicating a potential association between breed and microbial communities. We also found differences in the network between bacterial-fungal kingdoms. We explain the reasons for Holstein calves being more prone to diarrhea. This indicated that breed makes differences in calf diarrhea rates by influencing gut microbial composition and interactions.

摘要

小牛肠道中定殖着丰富而复杂的微生物群落,在动物生理、代谢、营养和免疫功能中发挥着关键作用。在本研究中,我们分别深入了解了粪便微生物细菌和真菌的组成,以及跨界相互作用。我们通过使用16S rRNA和ITS扩增子测序技术,对荷斯坦小牛和德国西门塔尔×荷斯坦杂交F1代(GXH)直肠粪便中的细菌和真菌群落进行表征,从而研究了不同品种小牛的肠道微生物群。使用PICRUSt2(版本2.2.0)来确定微生物多样性和功能,并探究荷斯坦小牛更容易患腹泻的原因。结果显示,各组之间粪便微生物群的多样性没有显著差异(>0.05)。我们确定了 和 为两个品种小牛粪便细菌群落中的优势细菌门。 和 在真菌群落中发挥重要作用,但相对丰度有所不同。 在两个品种小牛粪便微生物群的组水平上都是优势属。荷斯坦小牛中 、 - 、 和 的相对丰度较高,而 、 、 和 的相对丰度低于GXH组。 和 是两组小牛粪便真菌中的优势属。LEfSe分析显示两组之间有33种不同的细菌和23种不同的真菌,GXH中发现的差异菌株更多。此外,粪便真菌与细菌之间的跨界相互作用因品种而异。因此,小牛粪便中细菌和真菌群落的组成和结构因品种而异,表明品种与微生物群落之间存在潜在关联。我们还发现了细菌 - 真菌界之间网络的差异。我们解释了荷斯坦小牛更容易患腹泻的原因。这表明品种通过影响肠道微生物组成和相互作用,导致小牛腹泻率存在差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6ff/10972388/6e17c80036ee/microorganisms-12-00486-g001.jpg

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