引用本文:
【打印本页】   【下载PDF全文】   View/Add Comment  Download reader   Close
←前一篇|后一篇→ 过刊浏览    高级检索
本文已被:浏览 2415次   下载 2526 本文二维码信息
码上扫一扫!
分享到: 微信 更多
Zn2+对日本沼虾(Macrobrachium nipponensis)的急性致毒效应
王志铮, 任夙艺, 赵 晶, 付英杰, 杨 鹏
浙江海洋学院
摘要:
在水温(27.4±1.3)℃条件下, 以体长(33.23±1.66)mm、体质量(0.7893±0.1518)g的日本沼虾为实验动物, 采用静水停食法开展了Zn2+对日本沼虾的急性毒性实验, 并以此为基础, 测定了Zn2+不同质量浓度水平下日本沼虾的耗氧率与窒息点。结果表明: (1) Zn2+对日本沼虾的急性致死效应与其呼吸生理代谢受阻密切相关; (2) Zn2+对日本沼虾24h、48h、72h、96h的半致死质量浓度依次为1.493、0.844、0.643 和0.464mg/L; (3) Zn2+对日本沼虾昼均、夜均和日均耗氧率均无显著影响的阈值为0.046mg/L, 该值为Zn2+对日本沼虾急性毒性的安全质量浓度; (4) Zn2+对日本沼虾产生轻度胁迫和中度胁迫的质量浓度范围分别为0.046—0.064mg/L和0.064—0.082mg/L。
关键词:  日本沼虾, Zn2+, 半致死质量浓度, 耗氧率, 窒息点
DOI:10.11693/hyhz201301035035
分类号:
基金项目:浙江省重大科技专项农业重点项目, 2008C12083 号
WANG Zhi-Zheng, REN Su-Yi, ZHAO Jing, FU Ying-Jie, YANG Peng
Zhejiang Ocean University
Abstract:
The acute toxicity experiment of zinc on freshwater shrimp (Macrobrachium nipponensis), with (33.23± 1.66)mm total length and (0.7893±0.1518)g weight, was carried out in static water without feeding at the water temperature (27.4±1.3)℃. Based on this experiment, the oxygen consumption rate and the suffocation point of M. nipponensis exposed to different concentrations of zinc were measured. The result showed that there was a close relationship between the acute lethal effect of Zn2+ and the inhibition of respiratory metabolism. The LC50 of Zn2+on shrimp at 24, 48, 72 and 96h were 1.493, 0.844, 0.643, and 0.464mg/L, respectively. The threshold value of zinc concentration that causes no significant difference in the average oxygen consumption and suffocation point of M. nipponensis was 0.046mg/L, and this value was set as the safe concentration that zinc has no acute toxic effect on M. nipponensis. The mild stress range is from 0.046mg/L to 0.064mg/L and moderate stress range is from 0.064mg/L to 0.082mg/L for Zn2+ on M. nipponensis.
Key words:  Macrobrachium nipponensis, Zn2+, LC50, Oxygen consumption rate, Suffocation point
Copyright ©  Editorial Office for Oceanologia et Limnologia Sinica    Copyright©2008 All Rights Reserved
Supervised by: China Association for Science and Technology   Sponsored by: Chinese Society for Oceanology and Limnology, Institute of Oceanology and Limnology, CAS.
Address: 7 Nanhai Road, Qingdao, China.    Postcode: 266071    Tel: 0532-82898753  E-mail: liuxiujuan@qdio.ac.cn  
Technical support: Beijing E-Tiller Co.,Ltd.