Results 141 to 150 of about 22,534 (170)

Environmental factors influencing the distribution of rRNA from Verrucomicrobia in soil [PDF]

open access: yesFEMS Microbiology Ecology, 2001
The Verrucomicrobia constitute a newly discovered division of the Bacteria identified as a numerically abundant component of soil microbial communities in numerous sites around the world. The relative abundance of rRNA from Verrucomicrobia was investigated in the soil to examine the influence of specific environmental factors on the distribution of ...
Thomas Schmidt   +2 more
exaly   +4 more sources
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Soil Verrucomicrobia and Their Role in Sustainable Agriculture

2022
Bighneswar Baliyarsingh   +2 more
exaly   +2 more sources

Genomic Analysis Indicates the Presence of an Asymmetric Bilayer Outer Membrane in Planctomycetes and Verrucomicrobia [PDF]

open access: yesFrontiers in Microbiology, 2012
Bacteria of the phylum Planctomycetes are of special interest for the study of compartmental cellular organization. Members of this phylum share a very unusual prokaryotic cell plan, featuring several membrane-bound compartments. Recently, it was shown that this cellular organization might extend to certain members of the phylum Verrucomicrobia.
Daan R Speth   +2 more
exaly   +4 more sources

Verrucomicrobia in Soil: An Agricultural Perspective

2020
The phylum Verrucomicrobia occupies a diverse soil ecological niches both in category and in depth and the environmental factors involved in the regulation of diversity and abundances are unclear. Soil Verrucomicrobia members include a few cultural representatives and the rest are unculturable with importance in agriculture due to interactions with ...
B. Dash, S. Nayak, A. Pahari, S.K. Nayak
openaire   +1 more source

Methane oxidation by an extremely acidophilic bacterium of the phylum Verrucomicrobia

Nature, 2007
Aerobic methanotrophic bacteria consume methane as it diffuses away from methanogenic zones of soil and sediment. They act as a biofilter to reduce methane emissions to the atmosphere, and they are therefore targets in strategies to combat global climate change.
Dunfield, P.   +18 more
openaire   +4 more sources

Verrucomicrobia use hundreds of enzymes to digest the algal polysaccharide fucoidan

Nature Microbiology, 2020
Brown algae are important players in the global carbon cycle by fixing carbon dioxide into 1 Gt of biomass annually, yet the fate of fucoidan-their major cell wall polysaccharide-remains poorly understood. Microbial degradation of fucoidans is slower than that of other polysaccharides, suggesting that fucoidans are more recalcitrant and may sequester ...
Andreas Sichert   +10 more
openaire   +5 more sources

Verrucomicrobia Joining the Proteasome Club

Microbe Magazine, 2008
In eukaryotes, the proteasome represents the major system for controlled intracellular proteolysis. Its ubiquitin-independent counterpart in prokaryotes is structurally well characterized, but still little is known about its cellular targets and hence its physiological role (M. J. Pearce, P. Arora, R. A. Festa, S. M. Butler-Wu, R. S. Gokhale, and K. H.
openaire   +1 more source

Phylum Verrucomicrobia

2019
Verrucomicrobia comprise bacteria within the phylum Verrucomicrobia, most closely related to the other bacterial phyla Planctomycetes and Chlamydia, forming the PVC superphylum within domain Bacteria together with some other less known phyla. Species occur in freshwater, marine, soil habitats and in animal gut microbiomes including those of humans, and
openaire   +4 more sources

The mandelalides are produced by a symbiont in the phylum Verrucomicrobia in the tunicate Lissoclinum sp.

Planta Medica, 2015
An increasing number of natural products from higher animals have been found to ultimately derive from a bacterial symbiont. Through connection of pathways with whole symbiont genomes, metagenomics has the potential to yield deeper insights into these symbiotic relationships.
TR Weyna   +4 more
openaire   +1 more source

Phylogenetic and metagenomic analysis of Verrucomicrobia in former agricultural grassland soil.

FEMS microbiology ecology, 2010
The bacterial phylum Verrucomicrobia has a widespread distribution, and is known to be one of the most common and diverse phyla in soil habitats. However, members of this phylum have typically been recalcitrant to cultivation methods, hampering the study of this presumably important bacterial group.
Kielak, A.M.   +5 more
openaire   +3 more sources

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