Literature DB >> 22956246

Light and vision in the deep-sea benthos: I. Bioluminescence at 500-1000 m depth in the Bahamian islands.

Sönke Johnsen1, Tamara M Frank, Steven H D Haddock, Edith A Widder, Charles G Messing.   

Abstract

Bioluminescence is common and well studied in mesopelagic species. However, the extent of bioluminescence in benthic sites of similar depths is far less studied, although the relatively large eyes of benthic fish, crustaceans and cephalopods at bathyal depths suggest the presence of significant biogenic light. Using the Johnson-Sea-Link submersible, we collected numerous species of cnidarians, echinoderms, crustaceans, cephalopods and sponges, as well as one annelid from three sites in the northern Bahamas (500-1000 m depth). Using mechanical and chemical stimulation, we tested the collected species for light emission, and photographed and measured the spectra of the emitted light. In addition, in situ intensified video and still photos were taken of different benthic habitats. Surprisingly, bioluminescence in benthic animals at these sites was far less common than in mesopelagic animals from similar depths, with less than 20% of the collected species emitting light. Bioluminescent taxa comprised two species of anemone (Actinaria), a new genus and species of flabellate Parazoanthidae (formerly Gerardia sp.) (Zoanthidea), three sea pens (Pennatulacea), three bamboo corals (Alcyonacea), the chrysogorgiid coral Chrysogorgia desbonni (Alcyonacea), the caridean shrimp Parapandalus sp. and Heterocarpus ensifer (Decapoda), two holothuroids (Elasipodida and Aspidochirota) and the ophiuroid Ophiochiton ternispinus (Ophiurida). Except for the ophiuroid and the two shrimp, which emitted blue light (peak wavelengths 470 and 455 nm), all the species produced greener light than that measured in most mesopelagic taxa, with the emissions of the pennatulaceans being strongly shifted towards longer wavelengths. In situ observations suggested that bioluminescence associated with these sites was due primarily to light emitted by bioluminescent planktonic species as they struck filter feeders that extended into the water column.

Entities:  

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Year:  2012        PMID: 22956246     DOI: 10.1242/jeb.072009

Source DB:  PubMed          Journal:  J Exp Biol        ISSN: 0022-0949            Impact factor:   3.312


  8 in total

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Authors:  Chris Hogg; Magella Neveu; Lars Folkow; Karl-Arne Stokkan; Jaimie Hoh Kam; Ron H Douglas; Glen Jeffery
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Authors:  Julien M Claes; Dan-Eric Nilsson; Nicolas Straube; Shaun P Collin; Jérôme Mallefet
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4.  Symplectin evolved from multiple duplications in bioluminescent squid.

Authors:  Warren R Francis; Lynne M Christianson; Steven H D Haddock
Journal:  PeerJ       Date:  2017-07-31       Impact factor: 2.984

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Authors:  J Aguzzi; E Fanelli; T Ciuffardi; A Schirone; J Craig
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6.  Distribution and quantification of bioluminescence as an ecological trait in the deep sea benthos.

Authors:  Séverine Martini; Linda Kuhnz; Jérôme Mallefet; Steven H D Haddock
Journal:  Sci Rep       Date:  2019-10-10       Impact factor: 4.379

7.  Reflecting optics in the diverticular eye of a deep-sea barreleye fish (Rhynchohyalus natalensis).

Authors:  J C Partridge; R H Douglas; N J Marshall; W-S Chung; T M Jordan; H-J Wagner
Journal:  Proc Biol Sci       Date:  2014-03-19       Impact factor: 5.349

8.  A novel fluorescent protein from the deep-sea anemone Cribrinopsis japonica (Anthozoa: Actiniaria).

Authors:  Kenta Tsutsui; Eriko Shimada; Tomohisa Ogawa; Yusuke Tsuruwaka
Journal:  Sci Rep       Date:  2016-03-22       Impact factor: 4.379

  8 in total

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