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Atlantic croaker

Baptist, J.P., D.E. Hoss, and C.W. Lewis. 1970. Retention of chromium-51, iron-59, cobalt-60, zinc-65, strontium-85, niobium-95, indium-114m, and iodine-131 by the Atlantic croaker (Micropogon undulatus). Health Phys. 18 141-148. [Pg.117]

Atlantic croaker, Micropogonias undulatus Significant increases in the glutathione contents 44... [Pg.297]

Thomas, P. and M.J. Juedes. 1992. Influence of lead on the glutathione status of Atlantic croaker tissues. [Pg.343]

New Zealand, 9 species United Kingdom, 8 species Atlantic croaker, Micropogonias undulatus Texas muscle vs. skin... [Pg.476]

Atlantic croakers), 4.77 (blue crabs), 3.13 (spotted sea trout), 4.49 (blue catfish) (Pereira et... [Pg.1074]

Hawkins MB, Godwin J, Crews D, Thomas P. 2005. The distributions of the duplicate oestrogen receptors ER-beta a and ER-beta b in the forebrain of the Atlantic croaker (Micropogonias undulatus) Evidence for subfunctionalization after gene duplication. Proc Biol Sci 272 633-641. [Pg.246]

Hanson P. J. and Zdanowicz V. S. (1999) Elemental composition of otoliths from Atlantic croaker along an estuarine pollution gradient. J. Fish Biol. 54, 656-668. [Pg.4045]

Wofford, H. and P. Thomas. Effect of xenobiotics on peroxidation of hepatic microsomal lipids from striped mullet (Mugit cephalus) and Atlantic croaker (Micropogonias undulatus). Mar. Environ. Res. 24 285 - 289, 1988. [Pg.152]

Baer, K.N. and P. Thomas. Isolation of novel metal-binding proteins distinct from metallothionein from spotted seatrout (Cynoscion nebulosus) and Atlantic croaker (Micropogonias undulatus) ovaries. Mar. Biol. 108 31-37, 1991. [Pg.298]

Thomas, P. and H.W. Wofford. Effects of cadmium and Aroclor 1254 on lipid peroxidation, glutathione peroxidase activity, and selected antioxidants in Atlantic croaker tissues. Aquat. Toxicol. 27 159-178, 1993. [Pg.362]

Yoshizaki, G., R. Patino, P. Thomas, D. Bolamba and X. Chang. Effects of maturation-inducing hormone on heterologous gap junctional coupling in ovarian follicles of Atlantic croaker. Gen. Comp. Endocrinol. 124 359-366, 2001. [Pg.471]

Somoza et al.5S,S9 demonstrated that 5-HT plays an important stimulatory role in the regulation of GTH-II release. Intraperitoneal injections of 5-HT rapidly elevated serum GTH-II levels. Serotonin also stimulated GTH-II release from goldfish pituitary fragments in vitro. Antagonists of the 5-HT2 receptor type system blocked this in vitro effect. Moreover, 5-HT in Atlantic croaker (Micropogonias undulates), a marine fish species, is considered a principal stimulator of GTH-II release31. [Pg.487]

Fluoxetine is a 5-HT re-uptake inhibitor used as an antidepressant and is found in the environment33 and could potentially disrupt normal GTH-II release. The results of Kahn and Thomas31 where fluoxetine potentiated 5-HT action on GTH-II release in Atlantic croaker support this idea. In addition, the effects of 5-HT are known to vary seasonally and thus, the biological effects would vary depending on the time of the reproductive cycle when fish are exposed31. [Pg.487]

Kahn, A. and P. Thomas. Stimulatory effects of serotonin on maturational gonadotropin release in the Atlantic croaker Micropogonias undulates. Gen. Comp. Endocrinol. 88 388-396, 1992. [Pg.491]


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See also in sourсe #XX -- [ Pg.487 ]




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Atlantic

Croaker, Atlantic, Micropogonias undulatus

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