Methoprene Photolytic Compounds Disrupt Zebrafish Development, Producing Phenocopies of Mutants in the Sonic Hedgehog Signaling Pathway

被引:0
|
作者
Denice G. Smith
Claudia Wilburn
Robert A. McCarthy
机构
[1] Christopher Newport University,Department of Biology, Chemistry and Environmental Science
[2] 1 University Place,111 University Village
[3] Newport News,Department of Cell Biology and Anatomy
[4] VA 23606,undefined
[5] Clemson University,undefined
[6] Clemson,undefined
[7] SC 29632,undefined
[8] Medical University of South Carolina,undefined
[9] 173 Ashley Avenue,undefined
[10] P.O. Box 250508,undefined
[11] Charleston,undefined
[12] SC 29425,undefined
来源
Marine Biotechnology | 2003年 / 5卷
关键词
methoprene photolysis; retinoic acid; signaling; teratogenesis; limb development; muscle development;
D O I
暂无
中图分类号
学科分类号
摘要
Environmental chemicals have been proposed to impact endocrine or retinoid pathways, causing developmental abnormalities in humans and other vertebrates. Presented evidence shows that exposure of zebrafish embryos to sunlight-induced photolytic products of the pesticide methoprene results in developmental defects in the head, heart, pectoral fins, and somites, and in spinal motor and optic nerve axons. Exposed embryos are phenocopies of zebrafish you-type mutants and, as in the mutant sonic-you, show underexpression of the signaling protein sonic hedgehog. Reduced expression of sonic hedgehog is also displayed in embryos treated with the retinoic acid synthesis inhibitor citral. This study identifies citral-related compounds as embryonic signaling disruptors of potential environmental concern.
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页码:201 / 212
页数:11
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