Effect of Broussonetia papyrifera silage on the serum indicators, hindgut parameters and fecal bacterial community of Holstein heifers.
Broussonetia papyrifera silage
Fecal bacterial community
Hindgut fermentantion
Holstein heifers
Serum indicators
Journal
AMB Express
ISSN: 2191-0855
Titre abrégé: AMB Express
Pays: Germany
ID NLM: 101561785
Informations de publication
Date de publication:
31 Oct 2020
31 Oct 2020
Historique:
received:
13
10
2020
accepted:
21
10
2020
entrez:
31
10
2020
pubmed:
1
11
2020
medline:
1
11
2020
Statut:
epublish
Résumé
This study investigated the effects of substitution of whole corn silage (WCS) with Broussonetia papyrifera silage (BPS) in different ratios on the serum indicators, hindgut fermentation parameters (pH, ammoniacal nitrogen, and volatile fatty acids), and fecal bacterial community of Holstein heifers. Sixteen heifers (8-month-old, 220 ± 30 kg) were randomly divided into four treatments according to different BPS substitution ratios of feed basis (0%, 25%, 50%, and 75%). The experiment consisted of a 7-day preliminary feeding period and a 30-day experimental period. On the last day of the trial, the blood samples were collected from caudal vein, and the feces samples were collected from rectum. With the increasing of BPS content, the concentration of malondialdehyde (MDA) and interleukin-1β (IL-1β) in serum decreased (P < 0.05), and the immunoglobulin A (IgA) and IL-4 content of serum increased (P < 0.05); and the hindgut pH value increased (P < 0.05). 16S rRNA sequencing found that the dominant phyla were Firmicutes, Bacteroidetes, and Verrucomicrobia; and the dominant genera were Ruminococcaceae_UCG-005, Ruminococcaceae_UCG-010, and Rikenellaceae_RC9_gut_group. Linear Discriminant Analysis Effect Size (LEfSe) analysis found 12 differential operational taxonomic units (OTUs) which have strong correlation with some serum and hindgut indicators, and have the potential to be used as biomarkers. Phylogenetic Investigation of Communities by Reconstruction of Unobserved States (PICRUSt) found that BPS have impacts on the pathways, such as carbohydrate transport and metabolism, and promotes amino acid transport and metabolism. To sum up, inclusion of BPS in heifer diets can affect serum anti-oxidant and immune indicators, fecal parameters, composition and function of fecal microorganisms in Holstein heifers.
Identifiants
pubmed: 33128623
doi: 10.1186/s13568-020-01135-y
pii: 10.1186/s13568-020-01135-y
pmc: PMC7603443
doi:
Types de publication
Journal Article
Langues
eng
Pagination
197Subventions
Organisme : Guangdong Natural Science Foundation of China
ID : 2017A030313158
Organisme : Modern Agricultural Industrial Technology System of Guangdong Province
ID : 2019KJ127
Organisme : Guangdong Basic and Applied Basic Research Foundation of China
ID : 2019B1515210020
Organisme : Guangdong Provincial Promotion Project on Preservation and Utilization of Local Breed of Livestock and Poultry
ID : No.2018-143
Références
BMC Microbiol. 2017 Apr 21;17(1):97
pubmed: 28431497
Sci Rep. 2017 Jan 30;7:41403
pubmed: 28134261
Bioresour Technol. 2017 Nov;244(Pt 1):957-962
pubmed: 28847086
Sci Rep. 2019 Sep 3;9(1):12674
pubmed: 31481726
Comp Biochem Physiol C Toxicol Pharmacol. 2005 Jul;141(3):314-23
pubmed: 16107325
Int J Biol Macromol. 2016 Nov;92:116-124
pubmed: 27370746
Anim Sci J. 2009 Apr;80(2):171-5
pubmed: 20163587
Am J Physiol Lung Cell Mol Physiol. 2000 Dec;279(6):L1005-28
pubmed: 11076791
Mol Plant. 2019 May 6;12(5):661-677
pubmed: 30822525
Anaerobe. 2017 Oct;47:188-193
pubmed: 28610999
J Nat Prod. 2009 Apr;72(4):621-5
pubmed: 19296617
Free Radic Biol Med. 2000 Dec;29(11):1106-14
pubmed: 11121717
Biochem Biophys Res Commun. 2019 Jun 4;513(3):675-680
pubmed: 30982580
J Dairy Sci. 2009 Nov;92(11):5607-19
pubmed: 19841221
Meat Sci. 2019 Jul;153:2-8
pubmed: 30856549
J Microbiol Biotechnol. 2010 Oct;20(10):1397-402
pubmed: 21030824
Anaerobe. 2020 Feb;61:102115
pubmed: 31711887
Nutr Hosp. 2007 May;22 Suppl 2:14-9
pubmed: 17679289
J Dairy Sci. 1991 Oct;74(10):3583-97
pubmed: 1660498
Biochem Biophys Res Commun. 2019 Oct 29;519(1):53-60
pubmed: 31474338
Clin Chim Acta. 2018 Dec;487:101-106
pubmed: 30227113
J Ethnopharmacol. 2016 Apr 2;181:118-35
pubmed: 26821190
Anaerobe. 2019 Oct;59:131-140
pubmed: 31228669
J Dairy Sci. 2003 Jul;86(7):2416-27
pubmed: 12906060
J Dairy Sci. 2016 Oct;99(10):8028-8040
pubmed: 27522430
J Dairy Sci. 2019 Jun;102(6):5019-5030
pubmed: 30928269
Anaerobe. 2013 Oct;23:5-8
pubmed: 23916720
J Anim Sci. 2014 Feb;92(2):683-94
pubmed: 24352967
J Dairy Sci. 1980 Jan;63(1):64-75
pubmed: 7372898
Eur J Pharmacol. 2013 Aug 15;714(1-3):56-64
pubmed: 23769740
Front Immunol. 2018 Apr 24;9:669
pubmed: 29740427
Plant Physiol Biochem. 2010 Dec;48(12):909-30
pubmed: 20870416
Biochim Biophys Acta. 1996 Dec 12;1314(3):226-32
pubmed: 8982276
Arch Anim Nutr. 2010 Dec;64(6):437-66
pubmed: 21214019
Zoology (Jena). 2018 Oct;130:30-37
pubmed: 30502836
PLoS One. 2012;7(2):e32021
pubmed: 22389678
Chemosphere. 2019 Nov;234:409-418
pubmed: 31228844
J Infect. 2007 Apr;54(4):399-409
pubmed: 16882453
J Anim Physiol Anim Nutr (Berl). 2020 Jan;104(1):126-135
pubmed: 31532044
Free Radic Biol Med. 1991;11(1):81-128
pubmed: 1937131
Bioresour Technol. 2019 Jan;271:375-382
pubmed: 30293033
Res Vet Sci. 2006 Apr;80(2):133-9
pubmed: 16084546
Nutr Metab Cardiovasc Dis. 2005 Aug;15(4):316-28
pubmed: 16054557
Front Microbiol. 2018 Mar 02;9:300
pubmed: 29551996
Arthritis Rheum. 1998 Aug;41(8):1398-406
pubmed: 9704637
Front Pharmacol. 2017 Nov 15;8:840
pubmed: 29187822
Front Microbiol. 2020 May 26;11:1014
pubmed: 32528442