Effects of mixed extract from two tropical plants on gut microbiome and metabolome in piglets

Author:

Zhou Luli1,Hou Guanyu1,Liu Shengmin2,Zhou Hanlin3,Ye Yuxiu4,Lv Renlong1,Abouelezz Khaled15ORCID,Wang Dingfa1

Affiliation:

1. Tropical Crops Genetic Resources Institute Chinese Academy of Tropical Agricultural Sciences Haikou China

2. Hainan State Farm Bureau Husbandry Group Haikou China

3. Zhanjiang Experimental Station Chinese Academy of Tropical Agricultural Science Zhanjiang China

4. Hainan Yitian Biotechnology Haikou China

5. Department of Poultry Production, Faculty of Agriculture Assiut University Assiut Egypt

Abstract

AbstractIn this study, we performed a quantitative analysis of 12 compounds derived from Piper sarmentosum extract (PSE) and guava leaf extract (GE). In addition, we investigated the effects of mixed extract (ME) of PSE and GE (1:1) on piglets' gut microbiome and metabolome. A total of 200 piglets (Duroc × Landrace × Large Yorkshire, 21‐day‐old) were randomly assigned into two groups with five replicates of 20 piglets/pen having the same initial body weight. Piglets were fed a basal diet supplemented with ME at 0 (T0) or 200 mg/kg (T1) for 3 weeks. The quantitation results by ultraperformance liquid chromatography linked to triple‐quadrupole tandem mass spectrometry showed that vitexin 2‐O‐rhamnoside and pellitorine were the greatest abundant among six compounds detected in the PSE. In addition, quercetin, isoquercitrin and avicularin were found to be the richest of all detected compounds in the GE. Findings on experimental animals indicated that three differential metabolites, comprising L‐alanine, sarcosine and dihydrofolic acid, in T1 compared with T0 groups, have exactly opposite levels trends in serum and faeces. Moreover, two metabolic pathways (i.e., urea cycle and glutamate metabolism) differed significantly in the serum and faeces of piglets between T0 and T1 (p < 0.05). At the same time, T1 had significantly higher relative abundances of Agathobacter and Alloprevotella than T0 at genus level (p < 0.05). Correlation analysis revealed that the genus Agathobacter correlated positively with carbamoyl phosphate (p < 0.01) and oxoglutaric acid (p < 0.05), and negatively with succinic acid (p < 0.01) and ornithine (p < 0.05). These four differential metabolites were also involved in the urea cycle and/or glutamate metabolism pathways. The results here indicated that the tested plant extract mixture represents a worthy feed additive with obvious antioxidative properties.

Publisher

Wiley

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