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米氏凯伦藻对鱼类麦瑞加拉鲮的毒性及其潜在作用机制。

Toxicity and potential underlying mechanism of Karenia selliformis to the fish Oryzias melastigma.

机构信息

College of Life Science and Technology, Key Laboratory of Aquatic Eutrophication and Control of Harmful Algal Blooms of Guangdong Higher Education Institute, Jinan University, Guangzhou 510632, China.

College of Environmental Science and Engineering, Ocean University of China, Qingdao 266100, China.

出版信息

Aquat Toxicol. 2023 Sep;262:106643. doi: 10.1016/j.aquatox.2023.106643. Epub 2023 Jul 30.

Abstract

Karenia selliformis can produce toxins such as gymnodimines, and form microalgal blooms causing massive mortality of marine life such as fish and shellfish, and resulting in serious economic losses. However, there are a few of studies on the toxic effects of K. selliformis on marine organisms and the underlying mechanisms, and it is not clear whether the toxins produced by K. selliformis affect fish survival through the food chain. In this study, a food chain was simulated and composed by K. selliformis-brine shrimp-marine medaka to investigate the possibility of K. selliformis toxicity transmission through the food chain, in which fish behavior, histopathology and transcriptomics changes were observed after direct or indirect exposure (through the food chain) of K. selliformis. We found that both direct and indirect exposure of K. selliformis could affect the swimming behavior of medaka, manifested as decreased swimming performance and increased "frozen events". Meanwhile, exposure to K. selliformis caused pathological damage to the intestine and liver tissues of medaka to different degree. The effect of direct exposure to K. selliformis on swimming behavior and damage to fish tissues was more severe. In addition, K. selliformis exposure induced significant changes in the expression of genes related to energy metabolism, metabolic detoxification and immune system in medaka. These results suggest that toxins produced by K. selliformis can be transferred through the food chain, and that K. selliformis can destroy the intestinal integrity of medaka and increase the absorption of toxins, leading to energy metabolism disorders in fish, affecting the metabolic detoxification capacity of the liver. Our finding provides novel insight into the toxicity of K. selliformis to marine fish.

摘要

米氏凯伦藻能够产生冈田酸等毒素,并形成微藻水华,导致鱼类和贝类等海洋生物大量死亡,造成严重的经济损失。然而,目前关于米氏凯伦藻对海洋生物的毒性影响及其潜在机制的研究还比较少,并且不清楚米氏凯伦藻产生的毒素是否通过食物链影响鱼类的生存。在这项研究中,我们模拟了一条食物链,由米氏凯伦藻-卤虫-海水鲈组成,以研究米氏凯伦藻毒性通过食物链传递的可能性,观察直接或间接(通过食物链)暴露于米氏凯伦藻后鱼类的行为、组织病理学和转录组学变化。我们发现,直接或间接暴露于米氏凯伦藻均可影响鲈的游泳行为,表现为游泳性能下降和“冻结事件”增加。同时,米氏凯伦藻暴露对鲈的肠道和肝脏组织造成不同程度的病理损伤。直接暴露于米氏凯伦藻对游泳行为和鱼类组织损伤的影响更为严重。此外,米氏凯伦藻暴露诱导了鲈与能量代谢、代谢解毒和免疫系统相关的基因表达发生显著变化。这些结果表明,米氏凯伦藻产生的毒素可以通过食物链传递,并且米氏凯伦藻可以破坏鲈的肠道完整性,增加毒素的吸收,导致鱼类能量代谢紊乱,影响肝脏的代谢解毒能力。我们的研究结果为米氏凯伦藻对海洋鱼类的毒性提供了新的见解。

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