Literature DB >> 11333980

Larval dispersal potential of the tubeworm Riftia pachyptila at deep-sea hydrothermal vents.

A G Marsh1, L S Mullineaux, C M Young, D T Manahan.   

Abstract

Hydrothermal vents are ephemeral because of frequent volcanic and tectonic activities associated with crust formation. Although the larvae of hydrothermal vent fauna can rapidly colonize new vent sites separated by tens to hundreds of kilometres, the mechanisms by which these larvae disperse and recruit are not understood. Here we integrate physiological, developmental and hydrodynamic data to estimate the dispersal potential of larvae of the giant tubeworm Riftia pachyptila. At in situ temperatures and pressures (2 degrees C and 250 atm), we estimate that the metabolic lifespan for a larva of R. pachyptila averages 38 days. In the measured flow regime at a fast-spreading ridge axis (9 degrees 50' N; East Pacific Rise), this lifespan results in potential along-ridge dispersal distances that rarely exceed 100 km. This limited dispersal results not from the physiological performance of the embryos and larvae, but instead from transport limitations imposed by periodic reversals in along-ridge flows and sustained episodes of across-ridge flow. The lifespan presented for these larvae can now be used to predict dispersal under current regimes at other hydrothermal vent sites.

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Year:  2001        PMID: 11333980     DOI: 10.1038/35075063

Source DB:  PubMed          Journal:  Nature        ISSN: 0028-0836            Impact factor:   49.962


  30 in total

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2.  Oceanography: Death and rebirth in the deep.

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3.  Larvae from afar colonize deep-sea hydrothermal vents after a catastrophic eruption.

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7.  Do larval supply and recruitment vary among chemosynthetic environments of the deep sea?

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8.  Free-living tube worm endosymbionts found at deep-sea vents.

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9.  Detection of the free-living forms of sulfide-oxidizing gill endosymbionts in the lucinid habitat (Thalassia testudinum environment).

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10.  Expression and putative function of innate immunity genes under in situ conditions in the symbiotic hydrothermal vent tubeworm Ridgeia piscesae.

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