Effect of an Ipomoea aquatica Floating Raft on the Water Quality, Antioxidant System, Non-Specific Immune Responses, and Microbial Diversity of Penaeus vannamei in an Aquaculture System

Fishes Pub Date : 2024-05-12 DOI:10.3390/fishes9050175
Zhuo-Hao Ruan, Rui-Lin Xie, Yifu Li, Yuan-Yuan Luo, Zufeng Weng, Wensheng Liu
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Abstract

Pacific white shrimp (Penaeus vannamei) is one of the main shrimp species cultivated around the world. Despite its high yields and easy handling, water pollution from intensive shrimp cultivation remains a serious problem in China. In this study, a compound aquaculture model of P. vannamei and water spinach (Ipomoea aquatica) was used to investigate the effect of a water spinach floating raft on water quality, antioxidants, non-specific immune response, growth performance, and microbial diversity. The experimental design of this study consisted of two groups with three replicates for each, i.e., control group: aquatic monoculture (AM) system with only P. vannamei; treatment group: P. vannamei-I. aquatica raft aquaponics (AP) system with a 50% cover ratio with a water spinach floating raft. The experiment lasted for seven weeks. The results show that the concentrations of total phosphorus (TP), total nitrogen (TN), nitrate nitrogen (NO3−-N), ammonia nitrogen (NH4+-N), nitrite nitrogen (NO2−-N), and active phosphorus (AP) in the AM group were higher than those in the AP group at different sampling times. The water quality index of the AP group was better than that of the AM group, indicating that water spinach can remove the nutrients from aquaculture water bodies. The average daily gain and survival rate of shrimp in the AP group were higher than those in the AM group. The total antioxidant capacity (T-AOC), catalase (CAT), superoxide dismutase (SOD), malondialdehyde (MDA), and acid phosphatase (ACP) in the AP group were better than those in the AM group. The Shannon–Wiener and Simpson indices of the gut, water, and sediment of the AP system were significantly higher than those in the AM system, which implied a higher abundance of microorganisms in the AP system. These results demonstrate that the application of a water spinach floating raft in aquaponics can not only improve the water quality, but also improve the growth performance, antioxidant system, and non-specific immune responses of Pacific white shrimp, while increasing the abundance of microorganisms in the aquaculture system and improving the ecological benefits in terms of the expenditure.
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浮筏对水产养殖系统中万年青的水质、抗氧化系统、非特异性免疫反应和微生物多样性的影响
太平洋白对虾(Penaeus vannamei)是世界上主要的对虾养殖品种之一。尽管其产量高且易于处理,但在中国,集约化养虾造成的水污染仍是一个严重问题。本研究采用凡纳滨对虾与蕹菜(Ipomoea aquatica)的复合养殖模式,研究蕹菜浮筏对水质、抗氧化剂、非特异性免疫反应、生长性能和微生物多样性的影响。本研究的实验设计包括两组,每组三个重复,即对照组:仅有凡纳滨藻的水产单养(AM)系统;处理组:凡纳滨藻-I:鱼菜共生(AP)系统,蕹菜浮筏覆盖率为 50%。实验持续了七周。结果表明,在不同采样时间,AM 组的总磷(TP)、总氮(TN)、硝酸盐氮(NO3--N)、氨氮(NH4+-N)、亚硝酸盐氮(NO2--N)和活性磷(AP)的浓度均高于 AP 组。AP组的水质指数优于AM组,说明蕹菜能去除养殖水体中的营养物质。AP 组虾的平均日增重和成活率均高于 AM 组。AP 组的总抗氧化能力(T-AOC)、过氧化氢酶(CAT)、超氧化物歧化酶(SOD)、丙二醛(MDA)和酸性磷酸酶(ACP)均优于 AM 组。AP 系统中肠道、水和沉积物的香农-维纳指数和辛普森指数明显高于 AM 系统,这意味着 AP 系统中微生物的丰度更高。这些结果表明,在鱼菜共生中应用水菠菜浮筏不仅能改善水质,还能提高太平洋南美白对虾的生长性能、抗氧化系统和非特异性免疫反应,同时增加养殖系统中微生物的丰度,提高生态效益方面的支出。
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