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微藻接种显著塑造了对虾养殖水体中细菌群落的结构,改变了其组装过程,并增强了其稳定性。

Microalgae Inoculation Significantly Shapes the Structure, Alters the Assembly Process, and Enhances the Stability of Bacterial Communities in Shrimp-Rearing Water.

作者信息

Lian Chen, Xiang Jie, Cai Huifeng, Ke Jiangdong, Ni Heng, Zhu Jinyong, Zheng Zhongming, Lu Kaihong, Yang Wen

机构信息

School of Marine Sciences, Ningbo University, No. 169 Qixingnan Road, Beilun District, Ningbo 315832, China.

Fishery Technical Management Service Station of Yinzhou District, Ningbo 315100, China.

出版信息

Biology (Basel). 2024 Jan 19;13(1):54. doi: 10.3390/biology13010054.

Abstract

Intensive shrimp farming may lead to adverse environmental consequences due to discharged water effluent. Inoculation of microalgae can moderate the adverse effect of shrimp-farming water. However, how bacterial communities with different lifestyles (free-living (FL) and particle-attached (PA)) respond to microalgal inoculation is unclear. In the present study, we investigated the effects of two microalgae ( and ) alone or in combination in regulating microbial communities in shrimp-farmed water and their potential applications. PERMANOVA revealed significant differences among treatments in terms of time and lifestyle. Community diversity analysis showed that PA bacteria responded more sensitively to different microalgal treatments than FL bacteria. Redundancy analysis (RDA) indicated that the bacterial community was majorly influenced by environmental factors, compared to microalgal direct influence. Moreover, the neutral model analysis and the average variation degree (AVD) index indicated that the addition of microalgae affected the bacterial community structure and stability during the stochastic process, and the PA bacterial community was the most stable with the addition of . Therefore, the present study revealed the effects of microalgae and nutrient salts on bacterial communities in shrimp aquaculture water by adding microalgae to control the process of community change. This study is important for understanding the microbial community assembly and interpreting complex interactions among zoo-, phyto-, and bacterioplankton in shrimp aquaculture ecosystems. Additionally, these findings may contribute to the sustainable development of shrimp aquaculture and ecosystem conservation.

摘要

集约化对虾养殖可能因排放废水而导致不利的环境后果。接种微藻可以减轻对虾养殖用水的不利影响。然而,具有不同生活方式(自由生活(FL)和附着颗粒(PA))的细菌群落如何响应微藻接种尚不清楚。在本研究中,我们调查了两种微藻单独或联合使用对虾养殖用水中微生物群落的调节作用及其潜在应用。PERMANOVA分析显示,处理组在时间和生活方式方面存在显著差异。群落多样性分析表明,PA细菌对不同微藻处理的反应比FL细菌更敏感。冗余分析(RDA)表明,与微藻的直接影响相比,细菌群落主要受环境因素影响。此外,中性模型分析和平均变异度(AVD)指数表明,添加微藻影响了随机过程中细菌群落的结构和稳定性,添加[具体微藻名称]时PA细菌群落最稳定。因此,本研究通过添加微藻揭示了微藻和营养盐对虾养殖水体中细菌群落的影响,以控制群落变化过程。本研究对于理解微生物群落组装以及解释对虾养殖生态系统中动物浮游生物、植物浮游生物和细菌浮游生物之间的复杂相互作用具有重要意义。此外,这些发现可能有助于对虾养殖的可持续发展和生态系统保护。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/708b/10813777/2ce9bd32b3c6/biology-13-00054-g001.jpg

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