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Gill damage and neurotoxicity of ammonia nitrogen on the clam Ruditapes philippinarum

机译:蛤蜊芦苇菲律宾氨氮的鳃损伤和神经毒性

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Ammonia nitrogen has been a potential menace to aquatic animals along the coastline of China. Presently, the toxicological effects of ammonia nitrogen were mainly concentrated on fishes, while little attention has been paid to molluscs. In this study, the clam Ruditapes philippinarum was used as the target animal to investigate the toxic effects of ammonia nitrogen. Our results showed that ammonia exposure could significantly reduce the integrity of lysosomes in a dose-dependent manner. Metabolite analysis revealed that exposure doses and duration time of ammonia nitrogen could affect the variation profiles of gill metabolites. In detail, branched chain amino acids, glutamate, choline and phosphocholine were significantly decreased after a one-day exposure. Inosine and phenylalanine were found significantly increased and ATP was decreased after a three-day exposure. The changes of metabolites implied that metabolisms of muscle element, neurotransmission and cell apoptosis of gill tissues would be affected by ammonia exposure. Such inferences were supported by the diminished muscle element, decreased concentrations of catecholamines and increased apoptosis rates, respectively. Therefore, we take advantage of metabolomics integrated with conventional biological assays to find out that ammonia exposure could cause lysosome instability, metabolic disturbance, aberrant gill structures and changes to neurotransmitters, and would result in mollusk gill dysfunction in feeding, respiration and immunity.
机译:氨氮是沿着中国海岸线的水生动物潜在的威胁。目前,氨氮的毒理学效应主要浓缩鱼类,虽然对软体动物来说,很少关注。在这项研究中,蛤蜊芦荟菲律宾被用作靶动物,以研究氨氮的毒性作用。我们的研究结果表明,氨暴露可能以剂量依赖性方式显着降低溶酶体的完整性。代谢物分析表明,氨氮的曝光剂量和持续时间可能影响鳃代谢物的变异型材。详细地,在一次性暴露后,分枝的链氨基酸,谷氨酸,胆碱和磷光孔显着降低。发现伊硅和苯丙氨酸显着增加,三天暴露后ATP减少。代谢物的变化暗示肌肉元素的代谢,鳃组织的神经递质和细胞凋亡将受到氨暴露的影响。这种推论分别由减少的肌肉元素,减少的儿茶酚胺浓度和增加的细胞凋亡率增加。因此,我们利用与常规生物学测定相结合的代谢组科,以发现氨暴露可能导致溶酶体不稳定性,代谢扰动,异常鳃结构和对神经递质的变化,并导致MOLLUSK GILL功能障碍在喂养,呼吸和免疫方面。

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