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1.
Microorganisms ; 8(9)2020 Sep 13.
Artigo em Inglês | MEDLINE | ID: mdl-32933183

RESUMO

Withering syndrome (WS), an infectious disease caused by intracellular bacteria Candidatus Xenohaliotis californiensis, has provoked significant economic losses in abalone aquaculture. The pathogen infects gastroenteric epithelia, including digestive gland, disrupting the digestive system and causing a progressive wilting in abalone. Nonetheless, our knowledge about WS implications in digestive gland microbiota, and its role in diseases progress remains largely unknown. This study aims to determine whether digestive gland-associated microbiota differs between healthy red abalone (Haliotis rufescens) and red abalone affected with WS. Using high-throughput sequencing of the V4 region of the 16S rRNA gene, our results revealed differences in microbiota between groups. Bacterial genera, including Mycoplasma, Lactobacillus, Cocleimonas and Tateyamaria were significantly more abundant in healthy abalones, whilst Candidatus Xenohaliotis californiensis and Marinomonas were more abundant in WS-affected abalones. Whilst Mycoplasma was the dominant genus in the healthy group, Candidatus Xenohaliotis californiensis was dominant in the WS group. However, Candidatus Xenohaliotis californiensis was present in two healthy specimens, and thus the Mycoplasma/Candidatus Xenohaliotis californiensis ratio appears to be more determinant in specimens affected with WS. Further research to elucidate the role of digestive gland microbiota ecology in WS pathogenesis is required.

2.
J Invertebr Pathol ; 154: 19-23, 2018 05.
Artigo em Inglês | MEDLINE | ID: mdl-29577877

RESUMO

Withering syndrome (WS) is a chronic wasting disease affecting abalone species attributed to the pathogen Candidatus Xenohaliotis californiensis (CXc). Wild populations of blue (Haliotis fulgens) and yellow (H. corrugata) abalone have experienced unusual mortality rates since 2009 off the peninsula of Baja California and WS has been hypothesized as a possible cause. Currently, little information is available about the genetic diversity of CXc and particularly the possible existence of strains differing in pathogenicity. In a recent phylogenetic analysis, we characterized five coding genes from this rickettsial pathogen. Here, we analyze those genes and two additional intergenic non-coding regions following multi-locus sequence typing (MLST) and multi-spacer typing (MST) approaches to assess the genetic variability of CXc and its relationship with blue, yellow and red (H. rufescens) abalone. Moreover, we used 16S rRNA pyrosequencing reads from gut microbiomes of blue and yellow abalone to complete the genetic characterization of this prokaryote. The presence of CXc was investigated in more than 150 abalone of the three species; furthermore, a total of 385 DNA sequences and 7117 16S rRNA reads from Candidatus Xenohaliotis californiensis were used to evaluate its population genetic structure. Our findings suggest the absence of polymorphism in the DNA sequences of analyzed loci and the presence of a single lineage of CXc infecting abalone from California (USA) and Baja California (Mexico). We posit that the absence of genetic variably in this marine rickettsia may be the result of evolutionary and ecological processes.


Assuntos
Anaplasmataceae/patogenicidade , Gastrópodes/microbiologia , Anaplasmataceae/genética , Animais , California , Evolução Molecular , Variação Genética , México , Microbiota
3.
J Invertebr Pathol ; 140: 58-67, 2016 10.
Artigo em Inglês | MEDLINE | ID: mdl-27623402

RESUMO

Candidatus Xenohaliotis californiensis (CXc) is a Rickettsiales-like prokaryote that is considered the causal agent of Withering Syndrome (WS), a chronic disease of abalone, from the west coast of North America and it is listed by the International Organization for Animal Health (OIE) as a reportable agent due to its pathogenicity. This bacterium in red abalone Haliotis rufescens, black abalone Haliotis cracherodii, and yellow abalone Haliotis corrugata from California, US and Baja California, Mexico has been found to be infected by a bacteriophage. To date, there is no information on the epizootiology of CXc and its bacteriophage in natural populations of abalone; furthermore, it is unknown if the bacteriophage was also present in CXc infecting blue abalone Haliotis fulgens. The objective of this study was to determine the distribution, prevalence and intensity of CXc, as well as to determine the distribution and prevalence of the bacteriophage and to study interactions between host sex and hyperparasitism in blue abalone and yellow abalone. Tissue samples were obtained from seven localities where the commercial capture of wild abalone is carried out. Samplings were conducted throughout the 2012-2013 capture seasons and a total of 182 blue abalone and 170 yellow abalone were obtained. The prevalence and intensity of CXc and the prevalence of the bacteriophage were determined by histology. The identity of CXc was confirmed by PCR, product sequence analysis and in situ hybridization while the identity of the bacteriophage was corroborated by TEM. The prevalence of CXc infected and uninfected by the bacteriophage was 80% in blue abalone and 62% in yellow abalone. Low infection intensities were found in 86% of blue abalone and 82% of yellow abalone. Infection intensity was significantly higher in undifferentiated yellow abalone. The bacteriophage in CXc showed a prevalence of 22% and 31% in blue abalone and yellow abalone respectively. These results show that CXc and its bacteriophage are widely distributed in the peninsula of Baja California and that they are well established in natural populations of blue abalone and yellow abalone. Additionally, this data constitutes the first record of a bacteriophage in blue abalone.


Assuntos
Caudovirales , Gastrópodes/parasitologia , Rickettsieae/virologia , Viroses/veterinária , Animais , Hibridização In Situ , México , Reação em Cadeia da Polimerase
4.
J Invertebr Pathol ; 133: 8-11, 2016 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-26585301

RESUMO

Transmission electron microscopy analysis (TEM) of the rickettsiales-like prokaryote, Candidatus Xenohaliotis californiensis (CXc), pathogen of Haliotis spp. from the West Coast of North America, were found to be infected by a bacteriophage hyperparasite previously described in red abalone from California. The hyperparasite has an icosahedrical-like capsid with a narrow long flexible tail, this morphological characteristic tentatively place this virus in the Family Siphoviridae from the order Caudovirales. TEM images also showed the bacteriophage in different stages of assembly in the cytoplasm of CXc, demonstrating its lytic cycle.


Assuntos
Alphaproteobacteria/virologia , Bacteriófagos/ultraestrutura , Alphaproteobacteria/ultraestrutura , Animais , Bacteriófagos/isolamento & purificação , Bacteriófagos/fisiologia , Epitélio/microbiologia , Epitélio/ultraestrutura , Epitélio/virologia , Gastrópodes/microbiologia , Gastrópodes/virologia , Microscopia Eletrônica de Transmissão
5.
J Microbiol Methods ; 115: 79-82, 2015 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-26025805

RESUMO

Filtrations were applied to separate vacuoles of Rickettsiales-like organism Candidatus Xenohaliotis californiensis. Vacuoles were visualized by staining with nucleic acid fluorochrome and their identity was confirmed by Laser Capture Microdissection and PCR. This methodology separates vacuoles and allows studies without the need of isolation in synthetic media or cell lines.


Assuntos
Alphaproteobacteria/isolamento & purificação , Gastrópodes/microbiologia , Microdissecção e Captura a Laser/métodos , Reação em Cadeia da Polimerase/métodos , Coloração e Rotulagem/métodos , Alphaproteobacteria/química , Alphaproteobacteria/genética , Animais , Vacúolos/química
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