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Molecular evidence for a diverse green algal community growing in the hair of sloths and a specific association with Trichophilus welckeri (Chlorophyta, Ulvophyceae)

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dc.contributor.author Suutari, Milla en
dc.contributor.author Majaneva, Markus en
dc.contributor.author Fewers, David P. en
dc.contributor.author Voirin, Bryson en
dc.contributor.author Aiello, Annette en
dc.contributor.author Friedl, Thomas en
dc.contributor.author Chiarello, Adriano G. en
dc.contributor.author Blomster, Jaanika en
dc.date.accessioned 2011-02-28T13:13:33Z
dc.date.available 2011-02-28T13:13:33Z
dc.date.issued 2010
dc.identifier.citation Suutari, Milla, Majaneva, Markus, Fewers, David P., Voirin, Bryson, Aiello, Annette, Friedl, Thomas, Chiarello, Adriano G., and Blomster, Jaanika. 2010. "<a href="https://repository.si.edu/handle/10088/12918">Molecular evidence for a diverse green algal community growing in the hair of sloths and a specific association with Trichophilus welckeri (Chlorophyta, Ulvophyceae)</a>." <em>BMC Evolutionary Biology</em>. 10:86&ndash;98. en
dc.identifier.issn 1471-2148
dc.identifier.uri http://hdl.handle.net/10088/12918
dc.description.abstract Background: Sloths are slow-moving arboreal mammals inhabiting tropical rainforests in Central and South America. The six living species of sloths are occasionally reported to display a greenish discoloration of their pelage. Trichophilus welckeri, a green algal species first described more than a century ago, is widely believed to discolor the animals fur and provide the sloth with effective camouflage. However, this phenomenon has not been explored in any detail and there is little evidence to substantiate this widely held opinion. Results: Here we investigate the genetic diversity of the eukaryotic community present in fur of all six extant species of sloth. Analysis of 71 sloth hair samples yielding 426 partial 18S rRNA gene sequences demonstrates a diverse eukaryotic microbial assemblage. Phylogenetic analysis reveals that sloth fur hosts a number of green algal species and suggests that acquisition of these organisms from the surrounding rainforest plays an important role in the discoloration of sloth fur. However, an alga corresponding to the morphological description of Trichophilus welckeri was found to be frequent and abundant on sloth fur. Phylogenetic analysis demonstrated the retention of this alga on the fur of sloths independent of geographic location. Conclusions: These results demonstrate a unique diverse microbial eukaryotic community in the fur of sloths from Central and South America. Our analysis streghtens the case for symbiosis between sloths and Trichophilus welckeri. en
dc.relation.ispartof BMC Evolutionary Biology en
dc.title Molecular evidence for a diverse green algal community growing in the hair of sloths and a specific association with Trichophilus welckeri (Chlorophyta, Ulvophyceae) en
dc.type Journal Article en
dc.identifier.srbnumber 90758
rft.jtitle BMC Evolutionary Biology
rft.volume 10
rft.spage 86
rft.epage 98
dc.description.SIUnit STRI en
dc.citation.spage 86
dc.citation.epage 98


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