Multi-omics strategy reveals potential role of antimicrobial resistance and virulence factor genes responsible for Simmental diarrheic calves caused by Escherichia coli
文献类型: 外文期刊
第一作者: Shi, Zhihai
作者: Shi, Zhihai;Lan, Yali;Wang, Yazhou;Yan, Xiangzhou;Xu, Zhaoxue;Ma, Xiaoya;Deng, Tingxian;Hassan, Faiz-ul;Rushdi, Hossam E.;Wang, Wenjia
作者机构:
关键词: antibiotic resistance genes; diarrhea; metagenome; metabolomics; virulence factor genes
期刊名称:MSYSTEMS ( 影响因子:6.4; 五年影响因子:7.3 )
ISSN: 2379-5077
年卷期: 2024 年
页码:
收录情况: SCI
摘要: Escherichia coli (E. coli) is reported to be an important pathogen associated with calf diarrhea. Antibiotic resistance genes (ARGs) and virulence factor genes (VFGs) pose a considerable threat to both animal and human health. However, little is known about the characterization of ARGs and VFGs presented in the gut microbiota of diarrheic calves caused by E. coli. In this study, we used multi-omics strategy to analyze the ARG and VFG profiles of Simmental calves with diarrhea caused by E. coli K99. We found that gut bacterial composition and their microbiome metabolic functions varied greatly in diarrheic calves compared to healthy calves. In total, 175 ARGs were identified, and diarrheal calves showed a significantly higher diversity and abundance of ARGs than healthy calves. Simmental calves with diarrhea showed higher association of VFGs with pili function, curli assembly, and ferrienterobactin transport of E. coli. Co-occurrence patterns based on Pearson correlation analysis revealed that E. coli had a highly significant (P < 0.0001) correlation coefficient (>0.8) with 16 ARGs and 7 VFGs. Metabolomics analysis showed that differentially expressed metabolites in Simmental calves with diarrhea displayed a high correlation with the aforementioned ARGs and VFGs. Phylotype analysis of E. coli genomes showed that the predominant phylogroup B1 in diarrheic Simmental calves was associated with 10 ARGs and 3 VFGs. These findings provide an overview of the diversity and abundance of the gut microbiota in diarrheic calves caused by E. coli and pave the way for further studies on the mechanisms of antibiotic resistance and virulence in the calves affected with diarrhea. IMPORTANCE Simmental is a well-recognized beef cattle breed worldwide. They also suffer significant economic losses due to diarrhea. In this study, fecal metagenomic analysis was applied to characterize the antibiotic resistance gene (ARG) and virulence factor gene (VFG) profiles of diarrheic Simmental calves. We identified key ARGs and VFGs correlated with Escherichia coli isolated from Simmental calves. Additionally, metabolomics analysis showed that differentially expressed metabolites in Simmental calves with diarrhea displayed a high correlation with the aforementioned ARGs and VFGs. Our findings provide an insight into the diversity and abundance of the gut microbiota in diarrheic calves caused by Escherichia coli and pave the way for further studies on the mechanisms of antibiotic resistance and virulence in the diarrheal calves from cattle hosts.
分类号:
- 相关文献
作者其他论文 更多>>
-
Multi-omics analysis provides insight into the genetic basis of proline-derived milk microbiota in buffalo
作者:Deng, Tingxian;Ma, Xiaoya;Duan, Anqin;Lu, Xingrong;Abdel-Shafy, Hamdy
关键词:Buffalo; Metabolites; mGWAS; Metagenome; Milk quality
-
Transcriptome-Wide Association Study Reveals Potentially Candidate Genes Responsible for Milk Production Traits in Buffalo
作者:Wei, Kelong;Lu, Ying;Ma, Xiaoya;Duan, Anqian;Lu, Xingrong;Deng, Tingxian;Abdel-Shafy, Hamdy
关键词:buffalo; causal genes; milk production traits; GWAS; TWAS
-
CX43 and oxidative stress are the targets of BCB staining to predict the developmental potential of buffalo oocytes
作者:Li, MengQi;Yang, ChunYan;Duan, AnQin;Xiao, Peng;Lu, XingRong;Ma, XiaoYa;Xu, YuanYuan;Zheng, Wei;Feng, Chao;Mo, Xia;Huang, ChenQian;Huang, LiQing;Shang, JiangHua;Zheng, HaiYing;Li, MengQi;Xiao, Peng;Yang, ChunYan;Duan, AnQin;Lu, XingRong;Ma, XiaoYa;Zheng, Wei;Feng, Chao;Mo, Xia;Huang, ChenQian;Shang, JiangHua;Zheng, HaiYing;Xiao, Peng
关键词:BCB staining; buffalo oocyte; developmental potential prediction; gap junction; oxidative stress
-
Comparative analyses of copy number variations between swamp buffaloes and river buffaloes
作者:Yang, Lv;Han, Jiazheng;Li, Fan;Han, Xiaotao;Xia, Han;Hua, Guohua;Yang, Liguo;Zhou, Yang;Yang, Lv;Han, Jiazheng;Li, Fan;Han, Xiaotao;Xia, Han;Hua, Guohua;Yang, Liguo;Zhou, Yang;Deng, Tingxian;Quan, Fanfan;Hua, Guohua;Yang, Liguo;Zhou, Yang
关键词:CNV; F-ST; population structure analysis; river buffalo; swamp buffalo
-
Metagenomic and metabolomic analyses reveal the role of gut microbiome-associated metabolites in diarrhea calves
作者:Shi, Zhihai;Wang, Yazhou;Yan, Xiangzhou;Ma, Xiaoya;Duan, Anqin;Deng, Tingxian;Hassan, Faiz-ul;Wang, Wenjia
关键词:calf diarrhea; Xia-nan cattle; metagenomic analysis; metabolomic analysis; microbiota markers
-
Potential of dietary hemp and cannabinoids to modulate immune response to enhance health and performance in animals: opportunities and challenges
作者:Hassan, Faiz-ul;Liu, Chunjie;Li, Yuying;Zhang, Jingmeng;Shi, Pengjun;Lv, Biguang;Lin, Qian;Hassan, Faiz-ul;Bilal, Rana Muhammad;Siddique, Faisal;Mehboob, Maryam;Arain, Muhammad Asif;Chen, Fengming
关键词:animals; cannabinoids; hemp seed; therapeutic potential; anti-oxidant; immunomodulation
-
Integrated analysis of transcriptome and metabolome reveals insights for low-temperature germination in hybrid rapeseeds (Brassica napus L.)
作者:Song, Jiayu;Chen, Yutiao;Zhao, Jianyi;Hong, Xiaofu;Jiang, GenShui;Wang, Wenjia
关键词:Brassica napus L.; Cold stress; Transcriptome; Metabolome