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通过增强维生素B1合成,民猪特定肠道微生物群与宿主冷适应性的协同进化。

Coevolution of specific gut microbiota of Min pig with host cold adaptation through enhanced vitamin B1 synthesis.

作者信息

Chang Yang, Zhang Ziwen, Cai Jiancheng, Wang Chunan, Liu Di, Liu Zhonghua, Xu Chunzhu

机构信息

Key Laboratory of Animal Cellular and Genetic Engineering of Heilongjiang Province, Northeast Agricultural University, Harbin, China.

College of Life Science, Northeast Agricultural University, Harbin, China.

出版信息

Front Microbiol. 2024 Aug 30;15:1448090. doi: 10.3389/fmicb.2024.1448090. eCollection 2024.

Abstract

Min pigs exhibit remarkable cold tolerance, where vitamin B1 synthesis by gut microbiota is crucial for the host's energy metabolism. However, the role of this synthesis in cold adaptation of Min pigs are not yet fully understood. This study utilized 16S rRNA amplicon and metagenomic sequencing to examine seasonal variations in the gut microbiota of Min pigs. Results indicated a significant rise in microbial diversity in winter, with the Bacteroidetes group being the most notably increased. The vitamin B1 biosynthetic pathway was significantly enriched during winter, with six significantly upregulated genes (, and ) showing strong evidence of purifying selection. Among the six vitamin B1 synthesis genes significantly upregulated during winter, the increase was mainly due to a marked elevation in several sequences from specific microbial species. Binding energy analysis revealed that, except for , the average substrate binding energy of the top 10 sequences with the largest seasonal differences was significantly lower than those of the 10 sequences with the smallest differences. Furthermore, most of these sequences were uniquely prevalent in Min pigs and were not found in the homologous sequences of Duroc pigs. Bacteroidetes and Bacteroidales were identified as the primary contributors to these gene sequences. This research provides valuable insights for developing innovative cold-resistant feed and probiotics.

摘要

闽猪表现出显著的耐寒性,其中肠道微生物群合成维生素B1对宿主的能量代谢至关重要。然而,这种合成在闽猪冷适应中的作用尚未完全了解。本研究利用16S rRNA扩增子和宏基因组测序来检测闽猪肠道微生物群的季节性变化。结果表明,冬季微生物多样性显著增加,拟杆菌菌群增加最为明显。维生素B1生物合成途径在冬季显著富集,有六个显著上调的基因(……)显示出强烈的纯化选择证据。在冬季显著上调的六个维生素B1合成基因中,增加主要是由于特定微生物物种的几个序列显著升高。结合能分析表明,除……外,季节性差异最大的前10个序列的平均底物结合能显著低于差异最小的10个序列。此外,这些序列大多在闽猪中独特存在,在杜洛克猪的同源序列中未发现。拟杆菌门和拟杆菌目被确定为这些基因序列的主要贡献者。本研究为开发创新的抗寒饲料和益生菌提供了有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e79/11401075/80ae33c3e66f/fmicb-15-1448090-g0001.jpg

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