Using meta-analysis to understand the impacts of dietary protein and fat content on the composition of fecal microbiota of domestic dogs (Canis lupus familiaris): A pilot study

被引:3
作者
Phimister, Francis D. [1 ,2 ]
Anderson, Rachel C. [1 ,4 ]
Thomas, David G. [2 ]
Farquhar, Michelle J. [3 ]
Maclean, Paul [1 ]
Jauregui, Ruy [1 ]
Young, Wayne [1 ]
Butowski, Christina F. [1 ]
Bermingham, Emma N. [1 ]
机构
[1] AgResearch Ltd, Manawatu Whanganui, New Zealand
[2] Massey Univ, Sch Agr & Environm, Manawatu Whanganui, New Zealand
[3] Waltham Petcare Sci Inst, Melton Mowbray, Leics, England
[4] AgResearch Ltd, Palmerston North 4472, Manawatu Whanga, New Zealand
关键词
canine; crude fat; crude protein; microbiome; HEALTHY ADULT DOGS; RIBOSOMAL-RNA;
D O I
10.1002/mbo3.1404
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The interplay between diet and fecal microbiota composition is garnering increased interest across various host species, including domestic dogs. While the influence of dietary macronutrients and their associated microbial communities have been extensively reviewed, these reviews are descriptive and do not account for differences in microbial community analysis, nor do they standardize macronutrient content across studies. To address this, a meta-analysis was performed to assess the impact of dietary crude protein ("protein") and dietary crude fat ("fat") on the fecal microbiota composition in healthy dogs. Sixteen publications met the eligibility criteria for the meta-analysis, yielding a final data set of 314 dogs. Diets were classed as low, moderate, high, or supra in terms of protein or fat content. Sequence data from each publication were retrieved from public databases and reanalyzed using consistent bioinformatic pipelines. Analysis of community diversity indices and unsupervised clustering of the data with principal coordinate analysis revealed a small effect size and complete overlap between protein and fat levels at the overall community level. Supervised clustering through random forest analysis and partial least squares-discriminant analysis indicated alterations in the fecal microbiota composition at a more individual taxonomic level, corresponding to the levels of protein or fat. The Prevotellaceae Ga6A1 group and Enterococcus were associated with increasing levels of protein, while Allobaculum and Clostridium sensu stricto 13 were associated with increasing levels of fat. Interestingly, the random forest analyses revealed that Sharpea, despite its low relative abundance in the dog's fecal microbiome, was primarily responsible for the separation of the microbiome for both protein and fat. Future research should focus on validating and understanding the functional roles of these relatively low-abundant genera.
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页数:39
相关论文
共 96 条
[1]   Metagenomic dissection of the canine gut microbiota: insights into taxonomic, metabolic and nutritional features [J].
Alessandri, Giulia ;
Milani, Christian ;
Mancabelli, Leonardo ;
Mangifesta, Marta ;
Lugli, Gabriele A. ;
Viappiani, Alice ;
Duranti, Sabrina ;
Turroni, Francesca ;
Ossiprandi, Maria C. ;
van Sinderen, Douwe ;
Ventura, Marco .
ENVIRONMENTAL MICROBIOLOGY, 2019, 21 (04) :1331-1343
[2]   Rapid Reconstitution of the Fecal Microbiome after Extended Diet-Induced Changes Indicates a Stable Gut Microbiome in Healthy Adult Dogs [J].
Allaway, David ;
Haydock, Richard ;
Lonsdale, Zoe N. ;
Deusch, Oliver D. ;
O'Flynn, Ciaran ;
Hughes, Kevin R. .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2020, 86 (13)
[3]  
Association of American Feed Control Officials (AAFCO), 2019, Association of American Feed Control Officials 2019 official publication, P694
[4]   Graded dietary resistant starch concentrations on apparent total tract macronutrient digestibility and fecal fermentative end products and microbial populations of healthy adult dogs [J].
Beloshapka, Alison N. ;
Cross, Tzu-Wen L. ;
Swanson, Kelly S. .
JOURNAL OF ANIMAL SCIENCE, 2021, 99 (01)
[5]   Fecal microbial communities of healthy adult dogs fed raw meat-based diets with or without inulin or yeast cell wall extracts as assessed by 454 pyrosequencing [J].
Beloshapka, Alison N. ;
Dowd, Scot E. ;
Suchodolski, Jan S. ;
Steiner, Joerg M. ;
Duclos, Laura ;
Swanson, Kelly S. .
FEMS MICROBIOLOGY ECOLOGY, 2013, 84 (03) :532-541
[6]   metaxa2: improved identification and taxonomic classification of small and large subunit rRNA in metagenomic data [J].
Bengtsson-Palme, Johan ;
Hartmann, Martin ;
Eriksson, Karl Martin ;
Pal, Chandan ;
Thorell, Kaisa ;
Larsson, Dan Goran Joakim ;
Nilsson, Rolf Henrik .
MOLECULAR ECOLOGY RESOURCES, 2015, 15 (06) :1403-1414
[7]  
Bermingham E. N., Effects of commercially available high protein and fat diets on faecal organic acids and microbial composition in the dog
[8]   Key bacterial families (Clostridiaceae, Erysipelotrichaceae and Bacteroidaceae are related to the digestion of protein and energy in dogs [J].
Bermingham, Emma N. ;
Maclean, Paul ;
Thomas, David G. ;
Cave, Nicholas J. ;
Young, Wayne .
PEERJ, 2017, 5
[9]   Influence of some potential prebiotics and fibre-rich foodstuffs on composition and activity of canine intestinal microbiota [J].
Biagi, Giacomo ;
Cipollini, Irene ;
Grandi, Monica ;
Zaghini, Giuliano .
ANIMAL FEED SCIENCE AND TECHNOLOGY, 2010, 159 (1-2) :50-58
[10]   Meta-Analysis Reveals Reproducible Gut Microbiome Alterations in Response to a High-Fat Diet [J].
Bisanz, Jordan E. ;
Upadhyay, Vaibhav ;
Turnbaugh, Jessie A. ;
Ly, Kimberly ;
Turnbaugh, Peter J. .
CELL HOST & MICROBE, 2019, 26 (02) :265-U181