Biodiversity, host specificity, and dominance by eusocial species among sponge-dwelling alpheid shrimp on the Belize Barrier Reef

Publication Type:Journal Article
Year of Publication:2006
Authors:K. S. Macdonald, Rios, R., Duffy, J. E.
Journal:Diversity And Distributions
Volume:12
Pagination:165-178
Date Published:Mar
Abstract:

Alpheid shrimp represent an abundant and diverse, but poorly characterized, component of the cryptic biodiversity of coral reefs worldwide. Sponge-inhabiting alpheids provide a promising model system for exploring patterns of cryptic reef biodiversity because their habitats (hosts) are discrete and qualitatively distinct units. We tabulated data from 14 years of collections at Carrie Bow Cay, Belize to quantify patterns of diversity, host specificity, and dominance among sponge-dwelling shrimp (Synalpheus), with special attention to eusocial species. From > 600 sampled sponges of 17 species, we recognized at least 36 Synalpheus shrimp species. Of these, 15 (42%) were new to science. Species accumulation curves suggest that we have sampled most of the Synalpheus diversity at Carrie Bow Cay. Diversity of sponge-dwelling Synalpheus was slightly higher in shallow water, probably because of greater habitat diversity, than in deep water. Host specificity was surprisingly high, with > 50% of all shrimp species found in only a single sponge species each, although some shrimp species used as many as six hosts. Cohabitation of individual sponges by multiple shrimp species was rarer than expected by chance, supporting previous distributional and behavioural evidence that competition for hosts is strong and moulds patterns of host association. The fauna of most well-sampled sponge species was dominated, both in numbers of individuals and in frequency of occurrence, by eusocial species. Eusocial shrimp species also inhabited a significantly greater number of sponge species than did non-social shrimp. Consequently, > 65% of shrimp in our quantitative samples belonged to the four eusocial species, and on a per-species basis, eusocial species were 17 times as abundant as non-social species. Our data suggest that the highly diverse sponge-dwelling shrimp assemblage of the Belize Barrier Reef is structured by competition, and that eusociality has allowed a small number of species to dominate the sponge resource.

URL:file://localhost/Users/kristinhultgren/Desktop/Papers/Macdonald_Rios_&Duffy_2006.pdf
Taxonomic name: 
Synalpheus bousfieldi Chace, 1972 (Taxonomy), Synalpheus carpenteri Macdonald and Duffy, 2006 (Taxonomy), Synalpheus ruetzleri Macdonald and Duffy, 2006 (Taxonomy), Synalpheus agelas L. H. Pequegnat and Heard, 1979 (Taxonomy), Synalpheus pectiniger Coutière, 1907 (Taxonomy), Synalpheus paraneptunus Coutière, 1909 (Taxonomy), Synalpheus pandionis Coutière, 1909 (Taxonomy), Synalpheus mcclendoni Coutière, 1910 (Taxonomy), Synalpheus herricki Coutière, 1909 (Taxonomy), Synalpheus heardi Dardeau, 1984 (Taxonomy), Synalpheus goodei Coutière, 1909 (Taxonomy), Synalpheus filidigitus Armstrong, 1949 (Taxonomy), Synalpheus brooksi Coutière, 1909 (Taxonomy), Synalpheus brevifrons Chace, 1972 (Taxonomy), Synalpheus androsi Coutière, 1909 (Taxonomy), Synalpheus sanctithomae Coutière, 1909 (Taxonomy), Synalpheus regalis Duffy, 1996 (Taxonomy), Synalpheus thele Macdonald, Hultgren, and Duffy 2009 (Taxonomy), Synalpheus elizabethae (Ríos and Duffy, 2007) (Taxonomy), Synalpheus chacei Duffy, 1998 (Taxonomy), Synalpheus williamsi Ríos and Duffy, 1999 (Taxonomy), Synalpheus idios (Ríos and Duffy, 2007) (Taxonomy), Synalpheus dardeaui (Ríos and Duffy, 2007) (Taxonomy), Synalpheus apioceros Coutière, 1909 (Taxonomy), Synalpheus scaphoceris Coutière, 1910 (Taxonomy), Synalpheus hemphilli Coutière, 1909 (Taxonomy), Synalpheus fritzmuelleri Coutière, 1909 (Taxonomy), Synalpheus kensleyi (Ríos and Duffy, 2007) (Taxonomy), Synalpheus yano (Ríos and Duffy, 2007) (Taxonomy), Synalpheus minus (Say, 1818) (Taxonomy), Synalpheus brevicarpus (Herrick, 1891) (Taxonomy), Synalpheus obtusifrons Chace, 1972 (Taxonomy), Synalpheus agelas L. H. Pequegnat and Heard, 1979 (Taxonomy), Synalpheus androsi Coutière, 1909 (Taxonomy), Synalpheus apioceros Coutière, 1909 (Taxonomy), Synalpheus bousfieldi Chace, 1972 (Taxonomy), Synalpheus brevicarpus (Herrick, 1891) (Taxonomy), Synalpheus brevifrons Chace, 1972 (Taxonomy), Synalpheus brooksi Coutière, 1909 (Taxonomy), Synalpheus carpenteri Macdonald and Duffy, 2006 (Taxonomy), Synalpheus chacei Duffy, 1998 (Taxonomy), Synalpheus dardeaui (Ríos and Duffy, 2007) (Taxonomy), Synalpheus elizabethae (Ríos and Duffy, 2007) (Taxonomy), Synalpheus filidigitus Armstrong, 1949 (Taxonomy), Synalpheus fritzmuelleri Coutière, 1909 (Taxonomy), Synalpheus goodei Coutière, 1909 (Taxonomy), Synalpheus heardi Dardeau, 1984 (Taxonomy), Synalpheus hemphilli Coutière, 1909 (Taxonomy), Synalpheus herricki Coutière, 1909 (Taxonomy), Synalpheus idios (Ríos and Duffy, 2007) (Taxonomy), Synalpheus kensleyi (Ríos and Duffy, 2007) (Taxonomy), Synalpheus mcclendoni Coutière, 1910 (Taxonomy), Synalpheus minus (Say, 1818) (Taxonomy), Synalpheus obtusifrons Chace, 1972 (Taxonomy), Synalpheus pandionis Coutière, 1909 (Taxonomy), Synalpheus paraneptunus Coutière, 1909 (Taxonomy), Synalpheus pectiniger Coutière, 1907 (Taxonomy), Synalpheus regalis Duffy, 1996 (Taxonomy), Synalpheus ruetzleri Macdonald and Duffy, 2006 (Taxonomy), Synalpheus sanctithomae Coutière, 1909 (Taxonomy), Synalpheus scaphoceris Coutière, 1910 (Taxonomy), Synalpheus thele Macdonald, Hultgren, and Duffy 2009 (Taxonomy), Synalpheus williamsi Ríos and Duffy, 1999 (Taxonomy), Synalpheus yano (Ríos and Duffy, 2007) (Taxonomy)
Scratchpads developed and conceived by (alphabetical): Ed Baker, Katherine Bouton Alice Heaton Dimitris Koureas, Laurence Livermore, Dave Roberts, Simon Rycroft, Ben Scott, Vince Smith