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    Spiny lobster development: mechanisms inducing metamorphosis to the puerulus: a review

    Access Status
    Fulltext not available
    Authors
    McWilliam, P.
    Phillips, Bruce
    Date
    2007
    Type
    Journal Article
    
    Metadata
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    Citation
    McWilliam, Paulette S. and Phillips, Bruce F. 2007. Spiny lobster development: mechanisms inducing metamorphosis to the puerulus: a review. Reviews in Fish Biology and Fisheries 17 (4): pp. 615-631.
    Source Title
    Reviews in Fish Biology and Fisheries
    DOI
    10.1007/s11160-007-9067-5
    ISSN
    09603166
    Faculty
    School of Agriculture and Environment
    Department of Environmental Biology
    Faculty of Science and Engineering
    School
    Muresk Institute
    Remarks

    The original publication is available at : www.springerlink.com

    URI
    http://hdl.handle.net/20.500.11937/42750
    Collection
    • Curtin Research Publications
    Abstract

    This review outlines current knowledge of mechanisms effecting metamorphosis in decapod crustaceans and insects. The comparative approach demonstrates some of the complexities that need resolving to find an answer to the question raised frequently by ecologists: “What triggers metamorphosis in spiny lobsters?” It is evident that crustacean moulting and metamorphosis are genetically controlled through endocrine systems that mediate gene expression. The molecular mechanisms underlying these developmental processes have been studied intensively in insects, particularly in the fruitfly, Drosophila melanogaster (Diptera), and some lepidopteran species. Comparatively, there is minimal information available for a few decapod crustacean species, but none for spiny lobsters (Palinuridae). Nothing was known of hormone signalling transduction pathways, via nuclear receptors (NRs) and gene activation during larval moults in palinurids—until a recent, ground-breaking study of early phyllosomal development of Panulirus ornatus by Wilson et al. (Rock Lobster Enhancement and Aquaculture Subprogram. FRDC Project 2000/263, Australian Govt, Fisheries Research and Development Corporation and Australian Institute of Marine Science, Nov 2005). Their study not only identified homologues of five hormone NRs of D. melanogaster, but also patterns of gene regulation showing strong similarities to those of gene expression found in insect larval development. Their results indicated that control of moulting and metamorphosis in palinurids closely parallels that in insects, suggesting that insects can serve as model systems for elucidating molecular mechanisms in larval decapods. In insects and crustaceans, the steroid hormone, ecdysone, (20E) initiates moulting. In insects, juvenile hormone (JH) mediates the type of larval moult that occurs, either anamorphic or metamorphic. The latter results when the level of JH in the haemolymph drops in the final larval instar. High levels of JH inhibit the metamorphic moult during insect larval development. The interaction of 20E and JH is not fully understood, and the operative molecular mechanisms are still being elucidated. No nuclear receptor for JH has been identified, and alternative JH signalling pathways await identification. In decapod crustaceans, methyl farnesoate (MF), a precursor of JH, replaces the latter in other functions mediated by JH in insects; but there is little evidence indicating that MF plays a similar ‘antimetamorphic’ role in decapod larval moults.

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    • Spiny lobster development: the mechanism inducing metamorphosis to the puerulus stage: a review.
      McWilliam, P.; Phillips, Bruce (2007)
      This review outlines current knowledge of mechanisms effecting metamorphosis in decapod crustaceans and insects. The comparative approach demonstrates some of the complexities that need resolving to find an answer to the ...
    • Spiny lobster development: where does successful metamorphosis to the puerulus occur?: a review
      Phillips, Bruce; McWilliam, P. (2008)
      This review re-addresses the question: Where does metamorphosis to the puerulus mainly take place among the shallow-water palinurids? A decade ago we reviewed this ecological question in a paper that focused on phyllosomal ...
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      The transition from juvenile to adult in the Australian western rock lobster, Panulirus cygnus (George), is preceded by a mass migration from inshore nursery reefs to offshore breeding grounds. Associated with this migration ...
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