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1.
PLoS One ; 15(12): e0244095, 2020.
Artigo em Inglês | MEDLINE | ID: mdl-33382741

RESUMO

Fluorescent natural compounds have been identified in several marine hosts of microalgae. Their prevalence, and the energy the host is expending on their synthesis, suggests an important, yet poorly understood ecological role. It has been suggested that some of these natural products may enhance the photosynthesis of microbial symbionts. In this study, the effect of Ageladine A (Ag A), a pH-dependent fluorophore found in sponges of the genus Agelas, on the photosynthesis of nine microalgal species and strains was examined. The data showed that the variety of effects of Ag A additions differed between species, and even strains within a species. While in one strain of Synechococcus sp., the presence of Ag A increased gross photosynthesis under UV light exposure, it decreased in another. And while in the chlorophyte T. chuii overall metabolic activity was greatly reduced under all forms of lighting, photosynthesis in T. lutea was positively affected by the addition of Ag A. The variety of effects of Ag A on photosynthesis observed in this study indicate a complex interaction of Ag A with microalgal cells and suggests that a host may be able to shape its own symbiotic microbiome with self-produced natural products.


Assuntos
Agelas/microbiologia , Microalgas/fisiologia , Fotossíntese/efeitos dos fármacos , Pirróis/farmacologia , Simbiose/fisiologia , Animais , Microalgas/classificação , Pirróis/metabolismo , Simbiose/efeitos dos fármacos
2.
Mar Drugs ; 17(10)2019 Oct 11.
Artigo em Inglês | MEDLINE | ID: mdl-31614540

RESUMO

Sponge-associated bacteria have been mostly cultured from shallow water (≤30 m) sponges, whereas only few studies targeted specimens from below 30 m. This study assessed the cultivability of bacteria from two marine sponges Xestospongia muta and Agelas sventres collected from shallow (<30 m), upper mesophotic (30-60 m), and lower mesophotic (60-90 m) reefs. Sponge-associated bacteria were cultivated on six different media, and replicate plates were used to pick individual colonies or to recover the entire biomass. Prokaryotic community analysis was conducted using Illumina MiSeq sequencing of 16S rRNA gene amplicons. A total of 144 bacterial isolates were picked following a colony morphology coding scheme and subsequently identified by 16S rRNA gene sequence analysis. Sponge individuals at each depth-range harboured specific cultivable bacteria that were not retrieved from specimens collected at other depths. However, there were substantial differences in the number of colonies obtained for replicate sponges of the same species. In addition, source of inoculum and cultivation medium had more impact on the cultured prokaryotic community than sample collection depth. This suggests that the "plate count anomaly" is larger than differences in sponge-associated prokaryotic community composition related to depth.


Assuntos
Agelas/microbiologia , Bactérias/crescimento & desenvolvimento , Poríferos/microbiologia , Água do Mar/microbiologia , Xestospongia/microbiologia , Animais , Bactérias/genética , Biodiversidade , Biomassa , Filogenia , RNA Ribossômico 16S/genética , Análise de Sequência de DNA/métodos
3.
Microb Ecol ; 76(2): 459-466, 2018 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-29299617

RESUMO

The brown tube sponge Agelas tubulata (cf. Agelas conifera) is an abundant and long-lived sponge on Caribbean reefs. Recently, a disease-like condition, Agelas wasting syndrome (AWS), was described from A. tubulata in the Florida Keys, where prevalence of the syndrome increased from 7 to 35% of the sponge population between 2010 and 2015. In this study, we characterized the prokaryotic symbiont community of A. tubulata for the first time from individuals collected within the same monitoring plots where AWS was described. We also sampled tissue from A. tubulata exhibiting symptoms of AWS to determine its effect on the diversity and structure of prokaryotic symbiont communities. Bacteria from the phyla Chloroflexi and Proteobacteria, particularly the class Gammaproteobacteria, dominated the sponge microbiome in tissue samples of both healthy sponges and those exhibiting AWS. Prokaryotic community structure differed significantly between the diseased and healthy sponge samples, with greater variability among communities in diseased samples compared to healthy samples. These differences in prokaryotic community structure included a shift in relative abundance of the dominant, ammonia-oxidizing (Thaumarchaeota) symbionts present in diseased and healthy sponge samples. Further research is required to determine the functional consequences of this shift in microbial community structure and the causal relationship of dysbiosis and sponge disease in A. tubulata.


Assuntos
Agelas/microbiologia , Doenças dos Animais/microbiologia , Disbiose , Células Procarióticas/fisiologia , Simbiose , Síndrome de Emaciação/microbiologia , Animais , Archaea/classificação , Archaea/fisiologia , Bactérias/classificação , Fenômenos Fisiológicos Bacterianos , Caquexia , Região do Caribe , Chloroflexi/fisiologia , Florida , Gammaproteobacteria/fisiologia , Microbiota , Filogenia , Poríferos/microbiologia , Proteobactérias/fisiologia , Água do Mar/microbiologia , Síndrome de Emaciação/epidemiologia
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