The diversity of a microbial community covering the surface of a marine nematode was analyzed by performing a 16S ribosomal DNA (rDNA) restriction cutting and sequencing analysis. In two clone libraries constructed by using individual nematodes, 54 and 85 restriction patterns were identified, and only 13 of these patterns were common to both libraries. Sequence analysis indicated that the common patterns belonged to four groups related to sequences of cytophagas, sulfate-reducing bacteria, members of the gamma subclass of the class Proteobacteria, and caulobacters. At least two groups appeared to be permanent members of the community as they were also detected in a 16S rDNA library constructed 3 years previously by using 100 pooled nematode...
A taxonomic survey was conducted to determine the microbial diversity held within the Harbor Branch ...
Shallow marine sediments are preferred environments for nematodes harboring endo- or ectosymbiotic m...
To determine the eucaryotic diversity of the hypersaline Guerrero Negro microbial mat, we amplified ...
<div><p>Nematodes inhabiting benthic deep-sea ecosystems account for >90% of the total metazoan abun...
The microbial assemblages of marine organisms play fundamental biological roles in their eukaryotic ...
Abstract The bacterial diversity associated with soil nematodes and its relationship with their feed...
Nematodes form an important and dominant component of many benthic marine ecosystems, but are freque...
There is limited information on bacterial communities attached to marine surfaces. These surface att...
Resource partitioning is a mechanism for niche differentiation which can facilitate coexistence of s...
Stilbonematid nematodes can be highly abundant members of the meiofauna in coastal sediments. These ...
Although nematodes play an important ecological role in all major ecosystems, their diversity is sti...
Free-living nematodes constitute an important component of estuarine and marine benthic ecosystems. ...
<p>The microbial assemblages of marine organisms play fundamental biological roles in their eukaryot...
<p>The microbial assemblages of marine organisms play fundamental biological roles in their eukaryot...
International audienceAlthough animals are among the best studied organisms, we still lack a full de...
A taxonomic survey was conducted to determine the microbial diversity held within the Harbor Branch ...
Shallow marine sediments are preferred environments for nematodes harboring endo- or ectosymbiotic m...
To determine the eucaryotic diversity of the hypersaline Guerrero Negro microbial mat, we amplified ...
<div><p>Nematodes inhabiting benthic deep-sea ecosystems account for >90% of the total metazoan abun...
The microbial assemblages of marine organisms play fundamental biological roles in their eukaryotic ...
Abstract The bacterial diversity associated with soil nematodes and its relationship with their feed...
Nematodes form an important and dominant component of many benthic marine ecosystems, but are freque...
There is limited information on bacterial communities attached to marine surfaces. These surface att...
Resource partitioning is a mechanism for niche differentiation which can facilitate coexistence of s...
Stilbonematid nematodes can be highly abundant members of the meiofauna in coastal sediments. These ...
Although nematodes play an important ecological role in all major ecosystems, their diversity is sti...
Free-living nematodes constitute an important component of estuarine and marine benthic ecosystems. ...
<p>The microbial assemblages of marine organisms play fundamental biological roles in their eukaryot...
<p>The microbial assemblages of marine organisms play fundamental biological roles in their eukaryot...
International audienceAlthough animals are among the best studied organisms, we still lack a full de...
A taxonomic survey was conducted to determine the microbial diversity held within the Harbor Branch ...
Shallow marine sediments are preferred environments for nematodes harboring endo- or ectosymbiotic m...
To determine the eucaryotic diversity of the hypersaline Guerrero Negro microbial mat, we amplified ...