Medical Journals

Bacterial Symbionts in the Hepatopancreas of Isopods: Diversity and Environmental Transmission.

Authors:
  • Wang Yongjie
  • Brune Andreas
  • Zimmer Martin

From: Zoologisches Institut, Christian-Albrechts-Universität, Kiel, Germany.

FEMS microbiology ecology

  • Publish Date: Jul 2007
  • ISSN: 0168-6496
  • Volume: 61
  • Issue: 1
  • Pages: 141-52
  • Medium: Print
  • Language: English
  • Citation (JAMA): Wang Yongjie, Brune Andreas, Zimmer Martin, et al. Bacterial Symbionts in the Hepatopancreas of Isopods: Diversity and Environmental Transmission.. FEMS Microbiol. Ecol. Jul 2007;61:141-52

Abstract

The midgut glands (hepatopancreas) of terrestrial isopods contain bacterial symbionts. We analysed the phylogenetic diversity of hepatopancreatic bacteria in isopod species from various suborders colonizing marine, semiterrestrial, terrestrial and freshwater habitats. Hepatopancreatic bacteria were absent in the marine isopod Idotea balthica (Valvifera). The symbiotic bacteria present in the midgut glands of the freshwater isopod Asellus aquaticus (Asellota) were closely related to members of the proteobacterial genera Rhodobacter, Burkholderia, Aeromonas or Rickettsiella, but differed markedly between populations. By contrast, species of the suborder Oniscidea were consistently colonized by the same phylotypes of hepatopancreatic bacteria. While symbionts in the semiterrestrial isopod Ligia oceanica (Oniscidea) were close relatives of Pseudomonas sp. (Gammaproteobacteria), individuals of the terrestrial isopod Oniscus asellus (Oniscidea) harboured either ‘Candidatus Hepatoplasma crinochetorum’ (Mollicutes) or ‘Candidatus Hepatincola porcellionum’ (Rickettsiales), previously described as symbionts of another terrestrial isopod, Porcellio scaber. These two uncultivated bacterial taxa were consistently present in each population of six and three different species of terrestrial isopods, respectively, collected in different geographical locations. However, infection rates of individuals within a population ranged between 10% and 100%, rendering vertical transmission unlikely. Rather, feeding experiments suggest that ‘Candidatus Hepatoplasma crinochetorum’ is environmentally transmitted to the progeny.

Mesh Headings (Keywords): Animals, Bacteria, Digestive System, Ecosystem, Isopoda, Phylogeny, Symbiosis


Check for Full Text / PubMed Unique Identifier (PMID): 17506824


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