The compound Bacillus and sea purslane (Sesuvium portulacastrum) enhanced aquaculture wastewater treatment efficiency: Insights from a study on microbial community distributions

IF 3.9 1区 农林科学 Q1 FISHERIES Aquaculture Pub Date : 2025-04-01 DOI:10.1016/j.aquaculture.2025.742514
Hongmei Yuan , Junxian Li , Haihang Wang , Regan Nicholaus , Muhammad Naeem Ramzan , Wen Yang , Zhongming Zheng , Yangcai Wang
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Abstract

As the aquaculture industry continues to grow rapidly, the environmental consequences of wastewater discharge from aquaculture have become a major concern. The biological treatment method has proven to be an effective and beneficial approach for wastewater treatment. In this experiment, aquaculture wastewater was treated using two different ratios of Bacillus subtilis and Bacillus licheniformis composites in combination with sea purslane (Sesuvium portulacastrum) to investigate the wastewater treatment efficiency and microbial community. Sea purslane effectively removed nutrients from aquaculture wastewater. The addition of compound Bacillus significantly increased the removal rates of CODMn, TP, and PO43−-P, which were 54.9–56.4 %, 78.2–79.9 %, and 85.0–89.6 %, respectively. Moreover, the compound Bacillus notably influenced the microbial community composition in the water and root systems, reducing species abundance while increasing community diversity, with Treatment 2 exhibiting the highest community stability. The addition of the compound Bacillus significantly increased the relative abundance of Alphaproteobacteria. Most of the important operational taxonomic units (OTUs) that significantly impacted the groups belonged to Alphaproteobacteria. Different biomarkers in the water and root system were primarily from Alphaproteobacteria, Gammaproteobacteria, and Bacteroidia, including Idiomarina and Alteromonas, Ruegeria, Vibrio, Algoriphagus, and Maribacter, among others. These microorganisms play a significant role in promoting the removal rate of nitrogen and phosphorus. Furthermore, the compound Bacillus notably affected the abundance of nitrogen cycle-related sequences and increased the relative abundance of microorganisms associated with the nitrogen cycle. These findings provide valuable insights for optimizing aquaculture wastewater treatment processes.

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复合芽孢杆菌和马齿苋(Sesuvium portulacastrum)提高了水产养殖废水处理效率:微生物群落分布研究的启示
随着水产养殖业的持续快速增长,水产养殖废水排放的环境后果已成为一个主要问题。生物处理方法已被证明是一种有效而有益的污水处理方法。本试验采用枯草芽孢杆菌和地衣芽孢杆菌两种不同比例的复合菌与马齿苋(Sesuvium portulacastrum)联合处理水产养殖废水,考察其处理效果和微生物群落。马齿苋能有效去除水产养殖废水中的营养成分。复合芽孢杆菌的添加显著提高了CODMn、TP和PO43−p的去除率,去除率分别为54.9 ~ 56.4%、78.2 ~ 79.9%和85.0 ~ 89.6%。此外,复合芽孢杆菌显著影响了水体和根系微生物群落组成,降低了物种丰度,增加了群落多样性,其中处理2的群落稳定性最高。复合芽孢杆菌的添加显著提高了α变形菌的相对丰度。大多数对类群有显著影响的重要操作分类单位(OTUs)属于Alphaproteobacteria。水体和根系中不同的生物标志物主要来自Alphaproteobacteria、Gammaproteobacteria和bacterodia,包括Idiomarina和Alteromonas、Ruegeria、Vibrio、Algoriphagus和Maribacter等。这些微生物对氮、磷的去除率有显著的促进作用。此外,复合芽孢杆菌显著影响了氮循环相关序列的丰度,增加了氮循环相关微生物的相对丰度。这些发现为优化水产养殖废水处理工艺提供了有价值的见解。
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来源期刊
Aquaculture
Aquaculture 农林科学-海洋与淡水生物学
CiteScore
8.60
自引率
17.80%
发文量
1246
审稿时长
56 days
期刊介绍: Aquaculture is an international journal for the exploration, improvement and management of all freshwater and marine food resources. It publishes novel and innovative research of world-wide interest on farming of aquatic organisms, which includes finfish, mollusks, crustaceans and aquatic plants for human consumption. Research on ornamentals is not a focus of the Journal. Aquaculture only publishes papers with a clear relevance to improving aquaculture practices or a potential application.
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