首站-论文投稿智能助手
典型文献
Specific inhibition of Streptococcus bovis by endolysin LyJH307 supplementation shifts the rumen microbiota and metabolic pathways related to carbohydrate metabolism
文献摘要:
Background:Endolysins, the bacteriophage-originated peptidoglycan hydrolases, are a promising replacement for antibiotics due to immediate lytic activity and no antibiotic resistance. The objectives of this study were to investigate the lytic activity of endolysin LyJH307 against S. bovis and to explore changes in rumen fermentation and microbiota in an in vitro system. Two treatments were used:1) control, corn grain without LyJH307;and 2) LyJH307, corn grain with LyJH307 (4 U/mL). An in vitro fermentation experiment was performed using mixture of rumen fluid collected from two cannulated Holstein steers (450 ± 30 kg) and artificial saliva buffer mixed as 1:3 ratio for 12 h incubation time. In vitro dry matter digestibility, pH, volatile fatty acids, and lactate concentration were estimated at 12 h, and the gas production was measured at 6, 9, and 12 h. The rumen bacterial community was analyzed using 16S rRNA amplicon sequencing. Results:LyJH307 supplementation at 6 h incubation markedly decreased the absolute abundance of S. bovis (approximately 70%compared to control, P=0.0289) and increased ruminal pH (P=0.0335) at the 12 h incubation. The acetate proportion (P=0.0362) was significantly increased after LyJH307 addition, whereas propionate (P= 0.0379) was decreased. LyJH307 supplementation increased D-lactate (P=0.0340) without any change in L-lactate concentration (P>0.10). There were no significant differences in Shannon's index, Simpson's index, Chao1 estimates, and evenness (P>0.10). Based on Bray-Curtis dissimilarity matrices, the LyJH307 affected the overall shift in microbiota (P=0.097). LyJH307 supplementation induced an increase of 11 genera containing Lachnoclostridium, WCHB1–41, unclassified genus Selenomonadaceae, Paraprevotella, vadinBE97, Ruminococcus gauvreauii group, Lactobacillus, Anaerorhabdus furcosa group, Victivallaceae, Desulfuromonadaceae, and Sediminispirochaeta. The predicted functional features represented by the Kyoto Encyclopedia of Genes and Genomes pathways were changed by LyJH307 toward a decrease of carbohydrate metabolism. Conclusions:LyJH307 caused a reduction of S. bovis and an increase of pH with shifts in minor microbiota and its metabolic pathways related to carbohydrate metabolism. This study provides the first insight into the availability of endolysin as a specific modulator for rumen and shows the possibility of endolysin degradation by rumen microbiota.
文献关键词:
作者姓名:
Hanbeen Kim;Tansol Park;Inhyuk Kwon;Jakyeom Seo
作者机构:
Department of Animal Science,Life and Industry Convergence Research Institute,Pusan National University,1268-50 Samrangjin-ro,Miryang 50463,Republic of Korea;Department of Animal Science and Technology,Chung-Ang University,Anseong-si,Gyeonggi-do 17546,Republic of Korea;EASY BIO,Inc.,Seoul 06253,South Korea
引用格式:
[1]Hanbeen Kim;Tansol Park;Inhyuk Kwon;Jakyeom Seo-.Specific inhibition of Streptococcus bovis by endolysin LyJH307 supplementation shifts the rumen microbiota and metabolic pathways related to carbohydrate metabolism)[J].畜牧与生物技术杂志(英文版),2022(01):209-223
A类:
endolysin,LyJH307,Endolysins,WCHB1,Selenomonadaceae,vadinBE97,Anaerorhabdus,furcosa,Victivallaceae,Desulfuromonadaceae,Sediminispirochaeta
B类:
Specific,inhibition,Streptococcus,bovis,by,supplementation,shifts,rumen,microbiota,metabolic,pathways,related,carbohydrate,metabolism,Background,bacteriophage,originated,peptidoglycan,hydrolases,promising,replacement,antibiotics,due,immediate,lytic,activity,resistance,objectives,this,study,were,investigate,against,explore,changes,fermentation,vitro,system,Two,treatments,control,corn,grain,without,experiment,was,performed,using,mixture,fluid,collected,from,two,cannulated,Holstein,steers,artificial,saliva,buffer,mixed,incubation,In,dry,matter,digestibility,volatile,fatty,acids,lactate,concentration,estimated,gas,production,measured,bacterial,community,analyzed,16S,rRNA,amplicon,sequencing,Results,markedly,decreased,absolute,abundance,approximately,compared,increased,ruminal,acetate,proportion,significantly,after,addition,whereas,propionate,any,There,differences,Shannon,Simpson,Chao1,estimates,evenness,Based,Bray,Curtis,dissimilarity,matrices,affected,overall,induced,genera,containing,Lachnoclostridium,unclassified,genus,Paraprevotella,Ruminococcus,gauvreauii,group,Lactobacillus,predicted,functional,features,represented,Kyoto,Encyclopedia,Genes,Genomes,changed,toward,Conclusions,caused,reduction,minor,its,This,provides,first,insight,into,availability,specific,modulator,shows,possibility,degradation
AB值:
0.493616
相似文献
Chronic exposure to high-density polyethylene microplastic through feeding alters the nutrient metabolism of juvenile yellow perch(Perca flavescens)
Xing Lu;Dong-Fang Deng;Fei Huang;Fabio Casu;Emma Kraco;Ryan J.Newton;Merry Zohn;Swee J.Teh;Aaron M.Watson;Brian Shepherd;Ying Ma;Mahmound A.O.Dawood;Lorena M.Rios Mendoza-School of Freshwater Sciences,University of Wisconsin,Milwaukee,WI 53204,USA;Yangtze River Fisheries Research Institute,Chinese Academy of Fishery Sciences,Wuhan,China;South Carolina Department of Natural Resources,Charleston,SC 29412,USA;USDA/ARS/School of Freshwater Sciences,University of Wisconsin,Milwaukee,WI 53204,USA;School of Veterinary Medicine,Department of Anatomy,Physiology,and Cell Biology,University of California,Davis,CA 95616,USA;Fisheries College,Jimei University,Xiamen,China;Faculty of Agriculture,Kafrelsheikh University,Kafr El-Sheikh,Egypt;Department of Natural Sciences,Marine Resources Research Institute,University of Wisconsin,Superior,WI 54880,USA
Microbiome and ileum transcriptome revealed the boosting effects of selenium yeast on egg production in aged laying hens
Zhexi Liu;Yutao Cao;Yue Ai;Xiaonan Yin;Linli Wang;Mengyao Wang;Bingkun Zhang;Zhengxing Lian;Keliang Wu;Yuming Guo;Hongbing Han-Beijing Key Laboratory of Animal Genetic Improvement,College of Animal Science and Technology,China Agricultural University,Beijing,China;National Engineering Laboratory for Animal Breeding,College of Animal Science and Technology,China Agricultural University,Beijing,China;Key Laboratory of Animal Genetics,Breeding and Reproduction of the Ministry of Agriculture and Rural Affairs,College of Animal Science and Technology,China Agricultural University,Beijing,China;Beijing Alltech Biological Products(China)Co.,Ltd.,Beijing,China;State Key Laboratory of Animal Nutrition,College of Animal Science and Technology,China Agricultural University,Beijing,China
Yak rumen microbiome elevates fiber degradation ability and alters rumen fermentation pattern to increase feed efficiency
Congcong Zhao;Lamei Wang;Shanlin Ke;Xinhua Chen;Akos Kenéz;Wei Xu;Dangdang Wang;Fan Zhang;Yong Li;Zhanhong Cui;Yu Qiao;Jing Wang;Wenjuan Sun;Jianhua Zhao;Junhu Yao;Zhongtang Yu;Yangchun Cao-Colllege of Amimal Science ana Tecnnology,Nortnwest A&F university,Yangling,Shaanxi,China;Division of Gastroenterology,Department of Medicine,Beth Israel Deaconess Medical Center,Harvard Medical School,Boston,MA,USA;Channing Division of Network Medicine,Brigham and Women's Hospital and Harvard Medical School,Boston,MA,USA;Department of Infectious Diseases and Public Health,City University of Hong Kong,Kowloon,Hong Kong,China;Qinghai Academy of Animal Husbandry and Veterinary Sciences,Qinghai University,Xining,Qinghai,China;Department Animal Engineering,Yangling Vocational&Technical College,Yangling,Shaanxi,China;Shanghai Majorbio Bio-pharm Technology Co.,Ltd.,Shanghai,China;Department of Animal Sciences,The Ohio State University,Columbus,OH,United States
Alterations in nutrient digestibility and performance of heat-stressed dairy cows by dietary L-theanine supplementation
Lingyuan Yang;Lingmei Zhang;Peihua Zhang;Yuli Zhou;Xingguo Huang;Qiongxian Yan;Zhiliang Tan;Shaoxun Tang;Fachun Wan-College of Animal Science and Technology,Hunan Agricultural University,Changsha,Hunan 410128,China;CAS Key Laboratory of Agro-Ecological Processes in Subtropical Region,National Engineering Laboratory for Pollution Control and Waste Utilization in Livestock and Poultry Production,Hunan Provincial Key Laboratory of Animal Nutrition&Physiology and Metabolism,Institute of Subtropical Agriculture,Chinese Academy of Sciences,Changsha,Hunan 410125,China;Shandong Provincial Key Laboratory of Livestock and Poultry Disease Prevention and Breeding,Jinan,Shandong 250000,China
Co-fermented defatted rice bran alters gut microbiota and improves growth performance,antioxidant capacity,immune status and intestinal permeability of finishing pigs
Weifa Su;Zipeng Jiang;Cheng Wang;Yu Zhang;Tao Gong;Fengqin Wang;Mingliang Jin;Yizhen Wang;Zeqing Lu-Key Laboratory of Molecular Animal Nutrition,Ministry of Education,Zhejiang University,866 Yuhang Tang Road,Hangzhou,Zhejiang 310058,China;Key Laboratory of Animal Nutrition and Feed,Ministry of Agriculture,Zhejiang University,866 Yuhang Tang Road,Hangzhou,Zhejiang 310058,China;National Engineering Laboratory of Biological Feed Safety and Pollution Prevention and Control,Zhejiang University,866 Yuhang Tang Road,Hangzhou,Zhejiang 310058,China;Key Laboratory of Animal Nutrition and Feed Science of Zhejiang Province,Zhejiang University,866 Yuhang Tang Road,Hangzhou,Zhejiang 310058,China;College of Animal Science,Institute of Feed Science,Zhejiang University,866 Yuhang Tang Road,Hangzhou,Zhejiang 310058,China
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。