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Ontogeny of the capacity for homeoviscous adaptation in white sturgeon (Acipenser transmontanus)

Identifieur interne : 001D28 ( Main/Merge ); précédent : 001D27; suivant : 001D29

Ontogeny of the capacity for homeoviscous adaptation in white sturgeon (Acipenser transmontanus)

Auteurs : R. K. Buddington [États-Unis] ; J. R. Hazel ; S. I. Doroshov ; J. Van Eenenaam

Source :

RBID : Pascal:93-0235263

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Abstract

Most fish species tolerate a narrower range of temperatures during their early life history. To ascertain whether this might be related to development of the capacity to regulate membrane fluidity (homeoviscous adaptation), we examined the fatty acid composition of tissue phospholipids from developing white sturgeon eggs, embryos, and prefeeding larvae incubated at temperatures both within the range of natural spawning temperatures (14o), and above (20o) and below (8o). Mortality was highest at low temperature, with the greatest losses prior to neurulation

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Pascal:93-0235263

Le document en format XML

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<name sortKey="Hazel, J R" sort="Hazel, J R" uniqKey="Hazel J" first="J. R." last="Hazel">J. R. Hazel</name>
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<term>Adaptation</term>
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<term>Chemical composition</term>
<term>Embryo</term>
<term>Embryonic development</term>
<term>Fatty acids</term>
<term>Fluidity</term>
<term>Larva</term>
<term>Phospholipid</term>
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<term>Temperature</term>
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<term>Adaptation</term>
<term>Température</term>
<term>Membrane biologique</term>
<term>Fluidité</term>
<term>Composition chimique</term>
<term>Acide gras</term>
<term>Phospholipide</term>
<term>Embryon</term>
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<div type="abstract" xml:lang="en">Most fish species tolerate a narrower range of temperatures during their early life history. To ascertain whether this might be related to development of the capacity to regulate membrane fluidity (homeoviscous adaptation), we examined the fatty acid composition of tissue phospholipids from developing white sturgeon eggs, embryos, and prefeeding larvae incubated at temperatures both within the range of natural spawning temperatures (14
<sup>o</sup>
), and above (20
<sup>o</sup>
) and below (8
<sup>o</sup>
). Mortality was highest at low temperature, with the greatest losses prior to neurulation</div>
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