Document of bibliographic reference 97613

BibliographicReference record

Type
Bibliographic resource
Type of document
Journal article
BibLvlCode
AS
Title
Effect of salinity and temperature on the intra-marsupial development of the brackish water mysid Neomysis integer (Crustacea: Mysidacea)
Abstract
The brackish water mysid Neomysis integer has been proposed as a toxicological test species for the low saline reaches of Western European estuaries and brackish inland water bodies. The embryonic/larval development is a critical time window within the life history of an organism and has high potential to serve as a tool for assessing endocrine disruptive effects. A protocol is developed to examine the intra-marsupial development of Neomysis integer in vitro and a morphological description of the embryonic and larval developmental stages was made. Daily survival percentage, percentage survival days, hatching success, total development time, duration of each developmental stage and the size increment of the embryos and larvae were evaluated as potential endpoints, and their response to temperature and salinity was investigated.The survival and hatching success are highly dependent on the salinity conditions, while the development time is strongly affected by temperature. High temperatures (21°C) shorten the development time in comparison with low temperatures (11 °c) from 22 to 10 days, but have an opposite effect on survival. Optimal salinity for in vitro embryonic/larval development of Neomysis integer is 14 - 17. Living in lower or higher salinities thus implies suboptimal conditions for the juvenile recruitment to the population, unless the species can actively regulate the concentration of its marsupial fluid. The developed in vitro technique may be used for testing the effect of both abiotic factors and (endocrine) disrupting chemicals on the intra-marsupial development of N. integer. Survival, hatching success and development time appeared to be adequate endpoints, while size and growth increment of the embryos/larvae seemed to be unsuitable.
WebOfScience code
https://www.webofscience.com/wos/woscc/full-record/WOS:000236382800014
Bibliographic citation
Fockedey, N.; Ghekiere, A.; Bruwiere, S.; Janssen, C.R.; Vincx, M. (2006). Effect of salinity and temperature on the intra-marsupial development of the brackish water mysid Neomysis integer (Crustacea: Mysidacea). Mar. Biol. (Berl.) 148(6): 1339-1356. https://dx.doi.org/10.1007/s00227-005-0160-9
Topic
Marine
Brakish water
Is peer reviewed
true

Authors

author
Name
Nancy Fockedey
Identifier
https://orcid.org/0000-0002-0595-2321
Affiliation
Universiteit Gent; Faculteit Wetenschappen; Vakgroep Biologie; Onderzoeksgroep Mariene Biologie
author
Name
An Ghekiere
Affiliation
Universiteit Gent; Faculteit Bio-ingenieurswetenschappen; Vakgroep Dierwetenschappen en Aquatische Ecologie; Laboratorium voor Milieutoxicologie
author
Name
Stijn Bruwiere
Affiliation
Universiteit Gent; Faculteit Wetenschappen; Vakgroep Biologie; Onderzoeksgroep Mariene Biologie
author
Name
Colin Janssen
Identifier
https://orcid.org/0000-0002-7781-6679
Affiliation
Universiteit Gent; Faculteit Bio-ingenieurswetenschappen; Vakgroep Dierwetenschappen en Aquatische Ecologie; Laboratorium voor Milieutoxicologie
author
Name
Magda Vincx
Affiliation
Universiteit Gent; Faculteit Wetenschappen; Vakgroep Biologie; Onderzoeksgroep Mariene Biologie

Links

referenced creativework
type
DOI
accessURL
https://dx.doi.org/10.1007/s00227-005-0160-9

thesaurus terms

term
ANE, Netherlands, Westerschelde (term code: 182103 - defined in term set: ASFA Geoterms)
Developmental stages (term code: 2288 - defined in term set: ASFA Thesaurus List)
Salinity effects (term code: 7096 - defined in term set: ASFA Thesaurus List)
Temperature effects (term code: 8417 - defined in term set: ASFA Thesaurus List)

taxonomic terms

taxonomic terms associated with this publication
Neomysis integer (Leach, 1814) [An opossum shrimp]

geographic terms

geographic terms associated with this publication
Antwerp
Westerschelde

Document metadata

date created
2006-04-05
date modified
2018-07-18