Effects of temperature and salinity on the development of the amphipod crustacean Eogammarus sinensis

The amphipod crustacean Eogammarus sinensis has useful features that make it suitable for use in the aquaculture of fish and large decapod crustaceans. In this study, we investigated the effects of temperature and salinity on the development, fecundity, survival, and growth rate ofE. sinensis. The r...

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Published inChinese journal of oceanology and limnology Vol. 31; no. 5; pp. 1010 - 1017
Main Author 薛素燕 方建光 张继红 蒋增杰 毛玉泽 赵法箴
Format Journal Article
LanguageEnglish
Published Berlin/Heidelberg Springer-Verlag 01.09.2013
Springer Berlin Heidelberg
Springer Nature B.V
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ISSN0254-4059
2096-5508
1993-5005
2523-3521
DOI10.1007/s00343-013-2302-0

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Abstract The amphipod crustacean Eogammarus sinensis has useful features that make it suitable for use in the aquaculture of fish and large decapod crustaceans. In this study, we investigated the effects of temperature and salinity on the development, fecundity, survival, and growth rate ofE. sinensis. The results show that temperature significantly affected E. sinensis development, but salinity. As temperature increased, the duration of E. sinensis embryonic development decreased. Fecundity was affected significantly by temperature and the combination of temperature and salinity, but by salinity alone. In addition, high temperatures accelerated E. sinensis juvenile growth rates, whereas high salinity reduced it. Therefore, our data suggest that E. sinensis tolerates a wide range of salinities and that temperature has more significant effects than salinity on the embryonic development, fecundity, and growth of E. sinensis. Our results shall be useful for mass production of this species for use in aquaculture.
AbstractList The amphipod crustacean Eogammarus sinensis has useful features that make it suitable for use in the aquaculture of fish and large decapod crustaceans. In this study, we investigated the effects of temperature and salinity on the development, fecundity, survival, and growth rate of E. sinensis. The results show that temperature significantly affected E. sinensis development, but salinity. As temperature increased, the duration of E. sinensis embryonic development decreased. Fecundity was affected significantly by temperature and the combination of temperature and salinity, but by salinity alone. In addition, high temperatures accelerated E. sinensis juvenile growth rates, whereas high salinity reduced it. Therefore, our data suggest that E. sinensis tolerates a wide range of salinities and that temperature has more significant effects than salinity on the embryonic development, fecundity, and growth of E. sinensis. Our results shall be useful for mass production of this species for use in aquaculture.
The amphipod crustacean Eogammarus sinensis has useful features that make it suitable for use in the aquaculture of fish and large decapod crustaceans. In this study, we investigated the effects of temperature and salinity on the development, fecundity, survival, and growth rate ofE. sinensis. The results show that temperature significantly affected E. sinensis development, but salinity. As temperature increased, the duration of E. sinensis embryonic development decreased. Fecundity was affected significantly by temperature and the combination of temperature and salinity, but by salinity alone. In addition, high temperatures accelerated E. sinensis juvenile growth rates, whereas high salinity reduced it. Therefore, our data suggest that E. sinensis tolerates a wide range of salinities and that temperature has more significant effects than salinity on the embryonic development, fecundity, and growth of E. sinensis. Our results shall be useful for mass production of this species for use in aquaculture.
The amphipod crustacean Eogammarus sinensis has useful features that make it suitable for use in the aquaculture of fish and large decapod crustaceans. In this study, we investigated the effects of temperature and salinity on the development, fecundity, survival, and growth rate of E . sinensis . The results show that temperature significantly affected E . sinensis development, but salinity. As temperature increased, the duration of E . sinensis embryonic development decreased. Fecundity was affected significantly by temperature and the combination of temperature and salinity, but by salinity alone. In addition, high temperatures accelerated E . sinensis juvenile growth rates, whereas high salinity reduced it. Therefore, our data suggest that E . sinensis tolerates a wide range of salinities and that temperature has more significant effects than salinity on the embryonic development, fecundity, and growth of E . sinensis . Our results shall be useful for mass production of this species for use in aquaculture.
Author Zhao, Fazhen
Xue, Suyan
Fang, Jianguang
Zhang, Jihong
Mao, Yuze
Jiang, Zengjie
AuthorAffiliation Fisheries College, Ocean University of China, Qingdao 266003, China Yellow Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, Qingdao 266071, China Shandong Provincial Key Laboratory of Fishery Resources and Ecological Environment (SFREE), Qingdao 266071, China
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salinity
development
amphipod crustacean
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Notes The amphipod crustacean Eogammarus sinensis has useful features that make it suitable for use in the aquaculture of fish and large decapod crustaceans. In this study, we investigated the effects of temperature and salinity on the development, fecundity, survival, and growth rate ofE. sinensis. The results show that temperature significantly affected E. sinensis development, but salinity. As temperature increased, the duration of E. sinensis embryonic development decreased. Fecundity was affected significantly by temperature and the combination of temperature and salinity, but by salinity alone. In addition, high temperatures accelerated E. sinensis juvenile growth rates, whereas high salinity reduced it. Therefore, our data suggest that E. sinensis tolerates a wide range of salinities and that temperature has more significant effects than salinity on the embryonic development, fecundity, and growth of E. sinensis. Our results shall be useful for mass production of this species for use in aquaculture.
temperature; salinity; amphipod crustacean; Eogammarus sinensis; development
37-1150/P
XUE Suyan , FANG Jianguang , ZHANG Jihong , JIANG Zengjie , MAO Yuze, ZHAO Fazhen
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Snippet The amphipod crustacean Eogammarus sinensis has useful features that make it suitable for use in the aquaculture of fish and large decapod crustaceans. In this...
The amphipod crustacean Eogammarus sinensis has useful features that make it suitable for use in the aquaculture of fish and large decapod crustaceans. In this...
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SubjectTerms Amphipoda
Animal embryos
Aquaculture
Aquatic crustaceans
Biology
Crustaceans
Earth and Environmental Science
Earth Sciences
Embryogenesis
Embryonic development
Embryonic growth stage
Eogammarus
Evolution & development
Fecundity
Fish
Fish culture
Growth rate
High temperature
Juveniles
Marine
Marine biology
Marine crustaceans
Mass production
Ocean temperature
Oceanography
Polyculture (aquaculture)
Salinity
Salinity effects
Survival
temperature
Temperature effects
冬虫夏草
水产养殖
沉香
温度
甲壳动物
端足目
胚胎发育
高盐度
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Title Effects of temperature and salinity on the development of the amphipod crustacean Eogammarus sinensis
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