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首页> 外文期刊>Archives of Environmental Contamination and Toxicology >Increased Production and Excretion of Urea in the Kuruma Shrimp (Marsupenaeus japonicus) Exposed to Combined Environments of Increased Ammonia and Nitrite
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Increased Production and Excretion of Urea in the Kuruma Shrimp (Marsupenaeus japonicus) Exposed to Combined Environments of Increased Ammonia and Nitrite

机译:氨和亚硝酸盐增加的环境暴露于库鲁玛虾(Marsupenaeus japonicus)中尿素的产量增加和排泄

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摘要

Marsupenaeus japonicus (6.37 ± 1.29 g) individually exposed to 9 different combined solutions of ambient ammonia (C) and nitrite (C′) ammonia at 0.003 [control], 0.39, and 1.49 mmol/L combined with nitrite at 0.001 [control], 0.38, and 1.49 mmol/L in 30 ppt were examined for nitrogenous excretion accumulations of ammonia, nitrite, urea, and uric acid in tissues after 48 hours. M. japonicus exposed to 0.39 mmol/L ammonia–0.38 mmol/L nitrite displayed higher levels of urea-nitrogen (UNE) and organic-N (ONE) excretion by a factor of 2.2 and 5.7, respectively, compared with shrimp exposed only to 0.39 mmol/L ammonia. Exposure to 0.39 mmol/L ammonia–0.38 mmol/L nitrite resulted in lower levels of hemolymph uric acid (HUA), gill ammonia (GAM), gill urea (GUE), gill uric acid (GUA), hepatopancreas ammonia (HPAM), hepatopancreas urea (HPUE), and hepatopancreas uric acid (APUA), respectively, compared with shrimp exposed only to 0.39 mmol/L ammonia. We concluded that M. japonicus exposed to combined environments of ammonia and nitrite display increased nitrogen metabolism and production of urea-N and other organic-N.
机译:鱼(6.37±1.29 g)分别暴露于9种不同的环境氨(C)和亚硝酸盐(C')氨的混合溶液中,分别于0.003 [对照],0.39和1.49 mmol / L与0.001 [对照]的亚硝酸盐组合,在48小时后,检查了30 ppt中的0.38和1.49 mmol / L的氮排泄积聚在组织中的氨,亚硝酸盐,尿素和尿酸。暴露于0.39 mmol / L氨水至0.38 mmol / L亚硝酸盐中的日本分枝杆菌显示的尿素氮(UNE)和有机氮(ONE)排泄量分别比仅暴露于虾中的虾高2.2和5.7倍。 0.39 mmol / L的氨水。暴露于0.39 mmol / L氨–0.38 mmol / L亚硝酸盐导致血淋巴尿酸(HUA),g氨(GAM),g尿素(GUE),g尿酸(GUA),肝胰腺氨(HPAM),与仅暴露于0.39 mmol / L氨水的虾相比,肝胰腺尿素(HPUE)和肝胰腺尿酸(APUA)分别为。我们得出的结论是,暴露于氨水和亚硝酸盐混合环境的日本烟草显示出增加的氮代谢以及尿素氮和其他有机氮的产生。

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    Department of Aquaculture College of Life and Resources Sciences National Taiwan Ocean University Keelung Taiwan 202;

    Department of Aquaculture College of Life and Resources Sciences National Taiwan Ocean University Keelung Taiwan 202;

    Department of Aquaculture College of Life and Resources Sciences National Taiwan Ocean University Keelung Taiwan 202;

    Department of Aquaculture College of Life and Resources Sciences National Taiwan Ocean University Keelung Taiwan 202;

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