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Adaptive visual metamorphosis in a deep-sea hydrothermal vent crab

Robert N. Jinks (), Tara L. Markley, Elizabeth E. Taylor, Gina Perovich, Ana I. Dittel, Charles E. Epifanio and Thomas W. Cronin
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Robert N. Jinks: Franklin and Marshall College
Tara L. Markley: Franklin and Marshall College
Elizabeth E. Taylor: Franklin and Marshall College
Gina Perovich: University of Delaware
Ana I. Dittel: University of Delaware
Charles E. Epifanio: University of Delaware
Thomas W. Cronin: University of Maryland Baltimore County

Nature, 2002, vol. 420, issue 6911, 68-70

Abstract: Abstract Hydrothermal vents along the mid-ocean ridges host ephemeral ecosystems of diverse endemic fauna including several crustacean species1,2,3,4, some of which undergo planktonic development as larvae up to 1,000 m above and 100 km away from the vents5,6. Little is known about the role of vision in the life history of vent fauna. Here we report that planktonic zoea larvae of the vent crab Bythograea thermydron possess image-forming compound eyes with a visual pigment sensitive to the blue light of mesopelagic waters. As they metamorphose and begin to descend to and settle at the vents, they lose their image-forming optics and develop high-sensitivity naked-retina eyes. The spectral absorbance of the visual pigment in these eyes shifts towards longer wavelengths from larva to postlarva to adult. This progressive visual metamorphosis trades imaging for increased sensitivity, and changes spectral sensitivity from the blue wavelengths of the larval environment towards the dim, longer wavelengths7 produced in the deeper bathypelagic vent environment of the adults. As hydrothermal vents produce light7, vision may supplement thermal and chemical senses to orient postlarval settlement at vent sites.

Date: 2002
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DOI: 10.1038/nature01144

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