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不同密度养殖桶中欧洲鲈鱼幼鱼体内的天然沸石对重金属、氨氮的去除作用及生理响应。

Natural zeolite for heavy metal, ammonia removal, and physiological responses in European sea bass (Dicentrarchus labrax) juveniles tanks with different densities.

机构信息

Aquaculture Division, Fish Rearing Lab., National Institute of Oceanography and Fisheries (NIOF), Alexandria, Egypt.

Department of Animal and Fish Production, Faculty of Agriculture (Saba Basha), Alexandria University, Alexandria, Egypt.

出版信息

PLoS One. 2024 Apr 5;19(4):e0297844. doi: 10.1371/journal.pone.0297844. eCollection 2024.

Abstract

The present study aims to investigate the influence of zeolite usage and stocking densities on various parameters, including ammonia removal from water, accumulation of heavy metals in fish organs, water quality, growth performance, feed efficiency, muscle composition, as well as hematological and biochemical parameters in European seabass (Dicentrarchus labrax) over a 90-day duration. A total of 2400 D. labrax with an initial weight of 9.83 ± 2.02 g and initial length of 9.37 ± 0.32 cm were distributed among 24 tanks. The research involved six distinct treatment groups, with two different zeolite levels (0 and 15 ppt) and three stocking density levels (50, 100, and 150 fish/m3), each replicated four times. The results of the research demonstrate a statistically significant improvement (p < 0.05) in water quality measures with the introduction of zeolite. The successful implementation of this amendment mitigated the adverse effects of fish density on water quality parameters. Higher stocking density negatively impacted European sea bass growth, feed utilization, and hemato-biochemical indicators. Zeolite use effectively alleviated these adverse effects, particularly on performance, feed utilization, hematological, and biochemical parameters. The study's results indicate that the utilization of zeolite has shown to be efficacious in mitigating the accumulation of heavy metals in both water and fish organs, while concurrently augmenting fish attributes. However, the increase in density led to a significant decrease in the accumulation of heavy metals in both water and fish organs. The present study highlights the capacity of natural zeolites to mitigate the negative consequences associated with water quality concerns. The efficiency of these zeolites in limiting the accessibility of heavy metals in polluted water is shown, hence minimizing their accumulation in fish organs. In addition, the improvement of fish performance has the capacity to have a beneficial influence on both the well-being and efficiency of fish in aquaculture. Additional research is essential to fully understand the complex molecular pathways involved in utilizing natural zeolite under different fish densities.

摘要

本研究旨在调查沸石的使用和养殖密度对各种参数的影响,包括从水中去除氨、重金属在鱼类器官中的积累、水质、生长性能、饲料效率、肌肉组成以及鱼类的血液学和生化参数,实验周期为 90 天。共有 2400 条初始体重为 9.83±2.02g、初始体长为 9.37±0.32cm 的欧洲鲈鱼(Dicentrarchus labrax)被分配到 24 个养殖箱中。研究涉及六个不同的处理组,沸石水平分别为 0 和 15ppt,养殖密度水平分别为 50、100 和 150 条/立方米,每个处理组重复 4 次。研究结果表明,沸石的引入显著改善了水质指标(p<0.05)。该改良措施成功减轻了鱼类密度对水质参数的不利影响。较高的养殖密度会对欧洲鲈鱼的生长、饲料利用率和血液生化指标产生负面影响。沸石的使用有效地缓解了这些负面影响,尤其是在性能、饲料利用率、血液学和生化参数方面。研究结果表明,沸石的使用可以有效地减轻重金属在水和鱼类器官中的积累,同时提高鱼类的属性。然而,密度的增加导致重金属在水和鱼类器官中的积累显著减少。本研究强调了天然沸石在减轻与水质问题相关的负面影响方面的功效。沸石在限制污染水中重金属的可及性方面的效率得到了证明,从而最大限度地减少了重金属在鱼类器官中的积累。此外,鱼类性能的提高有可能对水产养殖中鱼类的福利和效率产生有益的影响。需要进一步的研究来充分了解在不同鱼类密度下利用天然沸石的复杂分子途径。

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