Successional changes in bacterial communities during the development of black band disease on the reef coral, Montipora hispida.
about
Microbes in the coral holobiont: partners through evolution, development, and ecological interactionsQuorum sensing signal production and microbial interactions in a polymicrobial disease of corals and the coral surface mucopolysaccharide layerCharacterisation of an atypical manifestation of black band disease on Porites lutea in the Western Indian OceanVariability in microbial community composition and function between different niches within a coral reef.Changes in sulfate-reducing bacterial populations during the onset of black band disease.Modelling environmental drivers of black band disease outbreaks in populations of foliose corals in the genus Montipora.Comparative microbial diversity analyses of modern marine thrombolitic mats by barcoded pyrosequencing.The urgent need for robust coral disease diagnostics.Ciliate and bacterial communities associated with White Syndrome and Brown Band Disease in reef-building corals.Characterisation of the bacterial and fungal communities associated with different lesion sizes of dark spot syndrome occurring in the coral Stephanocoenia intersepta.The acute transcriptional response of the coral Acropora millepora to immune challenge: expression of GiMAP/IAN genes links the innate immune responses of corals with those of mammals and plants.Ecology and Physiology of the Pathogenic Cyanobacterium Roseofilum reptotaenium.Pyrosequencing-based profiling of archaeal and bacterial 16S rRNA genes identifies a novel archaeon associated with black band disease in corals.Microbial communities associated with healthy and White syndrome-affected Echinopora lamellosa in aquaria and experimental treatment with the antibiotic ampicillinInfluence of local and global environmental parameters on the composition of cyanobacterial mats in a tropical lagoon.Antibacterial activity of marine and black band disease cyanobacteria against coral-associated bacteria.Identification of Candidate Coral Pathogens on White Band Disease-Infected Staghorn Coral.Shifts in bacterial communities of two Caribbean reef-building coral species affected by white plague disease.Microbiome shifts and the inhibition of quorum sensing by Black Band Disease cyanobacteria.Integrated approach to understanding the onset and pathogenesis of black band disease in corals.Pyrosequencing of the bacteria associated with Platygyra carnosus corals with skeletal growth anomalies reveals differences in bacterial community composition in apparently healthy and diseased tissues.Genetic, morphological and growth characterisation of a new Roseofilum strain (Oscillatoriales, Cyanobacteria) associated with coral black band disease.Near-future ocean acidification causes differences in microbial associations within diverse coral reef taxa.CRISPR-Cas Defense System and Potential Prophages in Cyanobacteria Associated with the Coral Black Band Disease.Unraveling the microbial processes of black band disease in corals through integrated genomics.Metaproteomics reveals metabolic transitions between healthy and diseased stony coral Mussismilia braziliensis.Comparison of different protocols for the extraction of microbial DNA from reef corals.Biogeochemical conditions determine virulence of black band disease in corals.Coral-associated bacterial assemblages: current knowledge and the potential for climate-driven impacts.Pseudoalteromonas piratica strain OCN003 is a coral pathogen that causes a switch from chronic to acute Montipora white syndrome in Montipora capitata.The possible role of cyanobacterial filaments in coral black band disease pathology.Sulfur-oxidizing bacterial populations within cyanobacterial dominated coral disease lesions.Thermal regime and host clade, rather than geography, drive Symbiodinium and bacterial assemblages in the scleractinian coral Pocillopora damicornis sensu lato.Predation scars may influence host susceptibility to pathogens: evaluating the role of corallivores as vectors of coral disease.Tissue loss (white syndrome) in the coral Montipora capitata is a dynamic disease with multiple host responses and potential causes.Implications of Ocean Acidification for Marine Microorganisms from the Free-Living to the Host-Associated
P2860
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P2860
Successional changes in bacterial communities during the development of black band disease on the reef coral, Montipora hispida.
description
2009 nî lūn-bûn
@nan
2009 թուականի Սեպտեմբերին հրատարակուած գիտական յօդուած
@hyw
2009 թվականի սեպտեմբերին հրատարակված գիտական հոդված
@hy
2009年の論文
@ja
2009年論文
@yue
2009年論文
@zh-hant
2009年論文
@zh-hk
2009年論文
@zh-mo
2009年論文
@zh-tw
2009年论文
@wuu
name
Successional changes in bacter ...... reef coral, Montipora hispida.
@ast
Successional changes in bacter ...... reef coral, Montipora hispida.
@en
type
label
Successional changes in bacter ...... reef coral, Montipora hispida.
@ast
Successional changes in bacter ...... reef coral, Montipora hispida.
@en
prefLabel
Successional changes in bacter ...... reef coral, Montipora hispida.
@ast
Successional changes in bacter ...... reef coral, Montipora hispida.
@en
P2860
P356
P1433
P1476
Successional changes in bacter ...... reef coral, Montipora hispida.
@en
P2093
Bette L Willis
David G Bourne
P2860
P2888
P304
P356
10.1038/ISMEJ.2009.103
P50
P577
2009-09-24T00:00:00Z
P5875
P6179
1002704756