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Frontiers in Physiology | 2018

Effects of alkalinity and pH on survival, growth, and enzyme activities in juveniles of the razor clam, Sinonovacula constricta

Peng Maoxiao; Ye Bo; Liu Xiaojun; Niu Donghong; Lan Tianyi; Dong Zhiguo; Li Jiale

In order to clarify the possibility of rearing razor clams (Sinonovacula constricta) in inland saline water (ISW) and to facilitate their breeding under these stressful conditions, we performed semi-static acute and chronic toxicity tests to determine the effects of carbonate alkalinity (CA) and pH on the survival and growth rate, and critical metabolic enzyme activity in juvenile of S. constricta (JSC). (1) Acute toxicity test. As the water CA increased from 1.22 to 45.00 mmol L-1, the survival rate decreased significantly, which was exacerbated by the increase in the pH. When the water CA was set at 2.5 mmol L-1, the 48 h lethal concentration 50% (LC50) for JSCs with respect to pH was 9.86. When the water pH was 9.0, 9.5, and 10.0, the 48 h LC50 values for JSCs with respect to CA were 10.38, 8.79, and 3.11 mmol L-1, respectively. (2) Chronic toxicity test. Four experimental groups comprising the control, CAS, pHS, and CA-pHS were designated according to the target ISW data. After 3 months of stress, the JSC survival rate in each group exceeded 85%, but survival was significantly lower in the CA-pHS group than the control group (p < 0.05) in the first month. For the JSCs in various groups, the shell length growth rate (SGR) and weight gain (WG) rate were significantly lower in the CA-pHS group than the other groups (p < 0.05 for SGR; p < 0.001 for WG) in the first month. However, the difference in the growth rate among groups decreased in the next 2 months. For the JSCs in the CA-pHS group, the oxygen consumption, ammonia-N excretion, Na+/K+-ATPase, aspartate aminotransferase, and superoxide dismutase levels were significantly higher than those in the other groups during the first month, but there were no significant differences between the groups subsequently. The acetylcholinesterase and lysozyme levels did not differ significantly among groups during stress for 3 months. The integrated biomarker response index showed that stressors comprising high pH and CA could be tolerated well by JSCs over long periods of stress. These results indicate that water CA and pH together affect the survival, growth, and physiological activity of JSCs. S. constricta is suitable for culture in ISW.


Archive | 2014

Establishment and stock breeding method for sinonovacula constricta families

Niu Donghong; Li Jiale; Shen Heding; Wang Xie; Xie Shumei; Li Duo; Zheng Pei


Archive | 2017

Temporarily foster case that trades water and metabolic waste emission is supported temporarily to convenient pair shell shellfish

Niu Donghong; Du Yunchao; Li Jiale; Xie Shumei


Archive | 2017

Shellfish breeds ware for experiments

Li Jiale; Bai Yuqi; Niu Donghong; Bai Yulin; Li Yan; Peng Maoxiao; Lan Tianyi; Wei Kanyun; Du Yunchao; Xie Shumei; He Shengyao; Ruan Haideng


Shuichan Xuebao | 2016

アゲマキの選好群と家系の全同胞の早期成長性能の比較【JST・京大機械翻訳】

Du Wenjun; Wang Chengdong; Wang Jie; Li Lianxing; Niu Donghong; Li Jiale; Shen Heding


Archive | 2016

Draw operating means of two shell shellfish hemolymphs

Li Jiale; Peng Maoxiao; Niu Donghong; Du Yunchao; Wei Kanyun; Wang Fei; Wang Ze


Archive | 2016

Method for efficiently extracting hemolymph of bivalve

Niu Donghong; Du Yunchao; Li Jiale; Peng Maoxiao; Wei Kanyun; Xie Shumei; Lan Tianyi


Marine Biotechnology | 2016

アゲマキ(Sinonovacula constricta)の稚貝変態に関与する遺伝子の発生学的トランスクリプトーム解析と同定

Niu Donghong; Wang Fei; Xie Shumei; Sun Fanyue; Wang Ze; Peng Maoxiao; Li Jiale


Archive | 2015

Ware is put fast to liquid -transfering gun rifle head for experiments

Li Jiale; Peng Maoxiao; Niu Donghong; Xie Shumei; Wang Fei; Wang Ze; Du Yunchao; Huang Wenji


Archive | 2015

Automatic anti-toxin gel cutting machine, imager and gel cutting method of anti-toxin automatic gel cutting machine

Li Jiale; Peng Maoxiao; Niu Donghong; Xie Shumei; Huang Wenji; Wang Fei; Wang Ze; Wei Kanyun; Du Yunchao

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Li Jiale

Shanghai Ocean University

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Peng Maoxiao

Shanghai Ocean University

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Lan Tianyi

Shanghai Ocean University

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Shen Heding

Shanghai Ocean University

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Dong Zhiguo

Huaihai Institute of Technology

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Liu Xiaojun

Shanghai Ocean University

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Ye Bo

Shanghai Ocean University

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