Effects of Different Farming Modes on Salmo trutta fario Growth and Intestinal Microbial Community

Author:

Wang Zhuang-Zhuang12,Wang Zhi-Tong3,Wang Wan-Liang124,Lei Kuan-Kuan13,Zhou Jian-She12

Affiliation:

1. Institute of Aquatic Sciences, Tibet Autonomous Region Academy of Agricultural and Animal Husbandry Sciences, Lasa 850032, China

2. Key Laboratory of Fishery and Germplasm Resources Utilization of Xizang Autonomous Region, Lasa 850032, China

3. College of Animal Science and Technology, Henan Agricultural University, Zhengzhou 450046, China

4. Center for Research on Breeding and Utilization Techniques of Indigenous Fish Species in Xizang, Lasa 850032, China

Abstract

The gut microbiota plays a pivotal role in upholding intestinal health, fostering intestinal development, fortifying organisms against pathogen intrusion, regulating nutrient absorption, and managing the body’s lipid metabolism. However, the influence of different cultivation modes on the growth indices and intestinal microbes of Salmo trutta fario remains underexplored. In this study, we employed high-throughput sequencing and bioinformatics techniques to scrutinize the intestinal microbiota in three farming modes: traditional pond aquaculture (TPA), recirculating aquaculture (RA), and flow-through aquaculture (FTA). We aimed to assess the impact of different farming methods on the water environment and Salmo trutta fario’s growth performance. Our findings revealed that the final weight and weight gain rate in the FTA model surpassed those in the other two. Substantial disparities were observed in the composition, relative abundance, and diversity of Salmo trutta fario gut microbiota under different aquaculture modes. Notably, the dominant genera of Salmo trutta fario gut microbiota varied across farming modes: for instance, in the FTA model, the most prevalent genera were SC-I-84 (7.34%), Subgroup_6 (9.93%), and UTCFX1 (6.71%), while, under RA farming, they were Bacteroidetes_vadinHA17 (10.61%), MBNT15 (7.09%), and Anaeromyxoactor (6.62%). In the TPA model, dominant genera in the gut microbiota included Anaeromyxobacter (8.72%), Bacteroidetes_vadinHA17 (8.30%), and Geobacter (12.54%). From a comparative standpoint, the genus-level composition of the gut microbiota in the RA and TPA models exhibited relative similarity. The gut microbiota in the FTA model showcased the most intricate functional diversity, while TPA farming displayed a more intricate interaction pattern with the gut microbiota. Transparency, pH, dissolved oxygen, conductivity, total dissolved solids, and temperature emerged as pivotal factors influencing Salmo trutta fario gut microbiota under diverse farming conditions. These research findings offer valuable scientific insights for fostering healthy aquaculture practices and disease prevention and control measures for Salmo trutta fario, holding substantial significance for the sustainable development of the cold-water fish industry in the Qinghai–Tibet Plateau.

Funder

Key Research and Development Plan of Tibet Autonomous Region

China Agriculture Research System of Specialty Freshwater Fish

Publisher

MDPI AG

Reference47 articles.

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5. Development status and countermeasures of salmon industry in Yadong, Xizang Province;Zhu;China Fish. Econ.,2022

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