389 resultados para VIBRIO-HARVEYI


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As doenças infeciosas distantes de serem um problema do passado têm aumentado drasticamente nestes últimos anos, causando epidemias emergentes, quer de origem bacteriana ou vírica ou de outros tipos de microrganismos. Esta dissertação tem como objetivo uma pesquisa atual bibliográfica sobre o estudo de algumas epidemias bacterianas emergentes do século XXI, como a Tuberculose, Cólera, Staphylococcus aureus resistente à meticilina (MRSA) e Meningite Meningocócica, bem como os seus dados epidemiológicos. A Tuberculose é uma das doenças mais antigas, que apresenta uma elevada taxa de mortalidade e com o passar do tempo tem vindo a aumentar a nível mundial. A TB é causada por uma bactéria denominada Mycobacterium tuberculosis que normalmente afeta os pulmões e outros órgãos. O tratamento, a prevenção e o diagnóstico precoce são pontos essenciais, para ter um bom desfecho para o doente. A Cólera tem-se propagado pelo mundo desde o século XX. Esta doença caracteriza-se por uma diarreia aguda grave que é causada pela bactéria Vibrio cholerae. O seu tratamento se for realizado precocemente é tratado facilmente, com apenas hidratação com sais orais. A prevenção é uma medida essencial para ter um bom prognóstico, e evitar surtos emergentes desta infeção. Devido à sua virulência, Staphylococcus aureus é responsável por infeções graves adquiridas em hospital e na comunidade. Na maioria das vezes esta infeção é assintomática, mas pode causar infeções graves até mesmo fatais. Devido às resistências aos antibióticos β-lactâmicos e de outros tipos de antibióticos, e também devido ao aumento do número crescente de quadros infeciosos de MRSA, houve necessidade de novos antibióticos como o linezolide, as cefasloporinas de 5ª geração no combate a estas infeções. As medidas de prevenção são essenciais, visto que se não forem realizadas pode haver progressão da doença. Além de um estudo científico constante dos mecanismos de resistências desta bactéria, ser essencial. A meningite bacteriana é um grave problema de Saúde Pública devido à alta incidência em crianças. A meningite meningocócica é causada pela bactéria Neisseria meningitidis que origina um processo inflamatório das meninges. Há algum tempo atrás a mortalidade era elevada, mas com o advento da antibioterapia reduziu significativamente. As vacinas fizeram com que ocorresse uma mudança bastante significativa na epidemiologia desta patologia, e mais uma vez a prevenção é essencial.

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Este protocolo tiene por objeto establecer los requisitos y medidas sanitarias de prevención y control de la dispersión de enfermedades de alto impacto y para el uso adecuado y racional de fármacos de uso específico en la acuicultura, específicamente para la producción camaronera y de los laboratorios de producción de nauplios y post larvas del país. Este documento es resultado del proyecto de investigación denominado Muestreo y diagnóstico de la calidad microbiológica del agua durante un ciclo de cultivo de camarón marino en estanques de cooperativas de San Hilario, Bahía de Jiquilisco, Usulután, ejecutado por la Escuela Especializada en Ingeniería ITCA-FEPADE, Centro Regional La Unión. En este proyecto se determinó cualitativa y cuantitativamente la presencia de coliformes totales, coliformes fecales (Es-cherichia coli) y bacterias Heterótrofas que constituyen los bioindicadores estándar de contaminación orgánica del agua. Se determinó además la presencia de Vibrio sp., Pseudomonas sp., y Aeromonas sp. en el área de estudio identificados como los principales agentes causantes de enfermedades infecciosas en el camarón marino. El muestreo ayudó a conocer la influencia de parámetros físico-químicos en la presencia de los microorganismos estudiados y servirá de marco para elaborar una propuesta para un programa de monitoreo de la acuicultura en todas sus etapas del encadenamiento productivo. Se realizó un taller con la Cooperativa Senderos de Paz sobre los resultados de TCBS de la calidad del agua en el canal reservorio y el estanque número 3 de dicha cooperativa.

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In the development of biosensors for ecotoxicity testing it is desirable to produce a small, portable system that can be used in the field. Toxicity testing using bioluminescence is widely used in the laboratory utilising natural and genetically modified (lux/ luc-marked) bacteria and other microorganisms. It is currently not possible to use genetically manipulated microorganisms in field testing and a biosensor, therefore, that incorporates naturally luminescent organisms may be preferred. In the development of a biosensor it is aimed to use the naturally luminescent bacterium Vibrio fischeri as a toxicity detection system on a chip. The bacterium will be immobilised in a polymeric matrix. Current work deals with the optimisation of light output and light preservation within the bacterium prior to immobilisation in polyvinyl alcohol. An examination of a range of physicochemical conditions within the polymer will be made, including cell density, thickness of polymer film, growth and light induction environment, and, preservation conditions, in order to develop a testing system giving consistent results over the lifetime of the biosensor. Data will be presented on light production using different culture media for the growth of V. fischeri and retention of light under immobilised conditions. .

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Intensification of aquaculture production in Uganda is likely to result into disease out-breaks leading to economic losses to commercial fish farms and associated natural aquatic ecosystems. This survey assessed health profiles of selected commercial fish farms and adjacent natural aquatic ecosystemsto identify fish diseases and parasites affecting Nile tilapia (Oreochromis niloticus) and African catfish (Clarias gariepinus) in aquaculture systems in Uganda. Fish farms encounter disease out-breaks that cause low survival rates (0 - 30%), especially catfish hatcheries. Health management issues are not well understood by fish farmers, with some unable to detect diseased fish. Current control strategies to control aquatic pathogens include use of chemotherapeutants and antibiotics. Bacterial pathogens isolated included Flavobacterium columnare, Aeromonas sp., Edwardsiella sp., Psuedomonus sp., Steptococcus sp., Staphylococcus sp., Proteus sp., and Vibrio sp. A high occurrence of Flavobacterium columnare exists in both asymptomatic and symptomatic fish was observed. Parasites included protozoans (Ichthyopthirius multiphilis, Trichodina sp. and Icthyobodo sp.) and trematodes (Cleidodiscus sp. and Gyrodactylus sp.). Diagnosis and control of diseases and parasites in aquaculture production systems requires adoption of a regional comprehensive biosecurity strategy: the East African (EAC) region unto which this study directly contributes.

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Bivalve aquaculture is seriously affected by many bacterial pathogens that cause high losses in hatcheries as well as in natural beds. A number of Vibrio species, but also members of the genera Nocardia and Roseovarius, are considered important pathogens in aquaculture. The present work provides an updated overview of main diseases and implicated bacterial species affecting bivalves. This review focuses on aetiological agents, their diversity and virulence factors, the diagnostic methods available as well as information on the dynamics of the host-parasite relationship.

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Massive mortality outbreaks in cultured bivalves have been reported worldwide and they have been associated with infection by a range of viral and bacterial pathogens. Due to their economic and social impact, these episodes constitute a particularly sensitive issue in Pacific oyster (Crassostrea gigas) production. Since 2008, mortality outbreaks affecting C. gigas have increased in terms of intensity and geographic distribution. Epidemiologic surveys have lead to the incrimination of pathogens, specifically OsHV-1 and bacteria of the Vibrio genus, in particular Vibrio aestuarianus. Pathogen diversity may partially account for the variability in the outcome of infections. Host factors (age, reproductive status…) including their genetic background that has an impact on host susceptibility towards infection, also play a role herein. Finally, environmental factors have significant effects on the pathogens themselves, on the host and on the host-pathogen interaction. Further knowledge on pathogen diversity, classification, and spread, may contribute towards a better understanding of this issue and potential ways to mitigate the impact of these outbreaks.

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Bis-(3´-5´)-cyclic dimeric guanosine monophosphate, or cyclic di-GMP (c-di-GMP) is a ubiquitous bacterial second messenger that regulates processes such biofilm formation, motility, and virulence. C-di-GMP is synthesized by diguanylate cyclases (DGCs), while phosphodiesterases (PDE-As) end signaling by linearizing c-di-GMP to 5ʹ-phosphoguanylyl-(3ʹ,5ʹ)-guanosine (pGpG), which is then hydrolyzed to two GMPs by previously unidentified enzymes termed PDE-Bs. To identify the PDE-B responsible for pGpG turnover, a screen for pGpG binding proteins in a Vibrio cholerae open reading frame library was conducted to identify potential pGpG binding proteins. This screen led to identification of oligoribonuclease (Orn). Purified Orn binds to pGpG and can cleave pGpG to GMP in vitro. A deletion mutant of orn in Pseudomonas aeruginosa was highly defective in pGpG turnover and accumulated pGpG. Deletion of orn also resulted in accumulation c-di-GMP, likely through pGpG-mediated inhibition of the PDE-As, causing an increase in c-di-GMP-governed auto-aggregation and biofilm. Thus, we found that Orn serves as the primary PDE-B enzyme in P. aeruginosa that removes pGpG, which is necessary to complete the final step in the c-di-GMP degradation pathway. However, not all bacteria that utilize c-di-GMP signaling also have an ortholog of orn, suggesting that other PDE-Bs must be present. Therefore, we asked whether RNases that cleave small oligoribonucleotides in other species could also act as PDE-Bs. NrnA, NrnB, and NrnC can rapidly degrade pGpG to GMP. Furthermore, they can reduce the elevated aggregation and biofilm formation in P. aeruginosa ∆orn. Together, these results indicate that rather than having a single dedicated PDE-B, different bacteria utilize distinct RNases to cleave pGpG and complete c-di-GMP signaling. The ∆orn strain also has a growth defect, indicating changes in other regulatory processes that could be due to pGpG accumulation, c-di-GMP accumulation, or another effect due to loss of Orn. We sought to investigate the genetic pathways responsible for these growth defect phenotypes by use of a transposon suppressor screen, and also investigated transcriptional changes using RNA-Seq. This work identifies that c-di-GMP degradation intersects with RNA degradation at the point of the Orn and the functionally related RNases.

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O fulereno (C60) pertence a uma família de nanomateriais (NM) constituída exclusivamente de átomos de carbono, sendo encontrado na forma de suspensão na água (nC60). A nanoprata (nAg) possui um excepcional e amplo espectro bactericida e um custo de fabricação relativamente baixo. No entanto, pouco se sabe a respeito dos eventuais efeitos tóxicos induzidos por estes NM em organismos estuarinos. O poliqueto Laeonereis acuta tem o muco colonizado por comunidades bacterianas. Há registros de que L. acuta apresenta um gradiente corporal para concentração de EAO e capacidade antioxidante total. Neste estudo, os poliquetos foram expostos in vivo durante 24 horas ao nC60 e à nAg, separadamente. Após isso, as unidades formadoras de colônias (UFC) bacterianas foram contadas e pesadas, além de serem realizadas diversas medições bioquímicas nos poliquetos e nas bactérias. Os números de UFC bacterianas expostas ao nC60 foi menor na concentração de 0.01mg/L e os números de UFC bacterianas expostas à nAg foram similares aos dados de biomassa, diminuindo na maior concentração (1.0 mg/L) (p<0.05). A capacidade antioxidante contra radicais peroxil em homogeneizados bacterianos expostos ao nC60 foi menor na concentração de 0.1mg/L quando comparado ao controle (p<0.05). A região anterior apresentou menor capacidade antioxidante (p<0.05) nos poliquetos expostos a 1.0 mg/L, quando comparado ao controle. Os poliquetos expostos à nAg apresentaram menor capacidade antioxidante na região posterior na concentração de 1.0 mg/L quando comparado ao controle (p<0.05). O conteúdo de peróxidos lipídicos (TBARS) foi reduzido na região anterior dos poliquetos expostos nas duas menores concentrações ( 0.01 e 0.1 mg/L) de nC60 (p<0.05). Na região corporal posterior, somente os organismos expostos a maior concentração de nC60 (1.0 mg/L) mostraram aumento na concentração de TBARS quando comparado ao grupo controle (p<0.05). A atividade da enzima glutationa-Stransferase (GST) foi aumentada (p<0.05) na região média e posterior dos poliquetos expostos a 0.1 mg/L de nC60. Como conclusões pode se dizer que os dois NM induziram efeitos tóxicos ainda numa situação (escuridão) onde o fulereno não é fotoexcitado. O aumento na produção e comercialização de produtos com NM levanta a questão dos riscos ambientais associados ao desenvolvimento da nanotecnologia.

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Depuis 1992, la surveillance de la santé des mollusques marins du littoral français est assurée par le réseau de Pathologie des Mollusques (Repamo). Ses activités s’inscrivent dans le cadre de la Directive Européenne 2006/88/CE. Depuis son évaluation par la plateforme nationale d’épidémiosurveillance en santé animale en 2012, l’objectif de surveillance est la détection précoce des infections dues à des organismes pathogènes exotiques et émergents affectant les mollusques marins sauvages et d’élevage. L’année 2015 est la première année de transition pour laquelle un début d’évolution des modalités de surveillance de la santé des mollusques marins animées par l’Ifremer a été amorcé. Un dispositif hybride de surveillance a été mis en place, s’appuyant sur l’existant et intégrant des débuts d’évolution. La surveillance événementielle a constitué l’activité principale du dispositif en 2015 et s’est appuyée sur des réseaux existants : (1) la surveillance des mortalités observées sur des animaux sentinelles déployés sur les sites ateliers des réseaux Ifremer RESCO 2 (12 sites) pour l’huître creuse Crassostrea gigas et MYTILOBS 2 (8 sites) pour la moule bleue Mytilus edulis. Pour l’huître creuse Crassostrea gigas, la mortalité cumulée moyenne était de 50,3% (écart-type 10,9%) pour le naissain standardisé Ifremer (NSI), de 11,0% (écart-type 9,1%) pour les huîtres de 18 mois et de 7,3% (écart-type 5,6%) pour les huîtres de 30 mois. Les mortalités ont été observées principalement entre le début du mois de mai et la mi-juillet. Lors de ces épisodes de mortalité, des prélèvements d’animaux ont été réalisés en vue d’analyses diagnostiques : 7 prélèvements pour le NSI, 2 pour les huîtres de 18 mois et 1 pour les huîtres de 30 mois. Aucun agent réglementé n’a été détecté dans les échantillons d’huîtres creuses prélevés et analysés. Le virus OsHV-1 a été détecté dans les 7 échantillons analysés de NSI, dans 2 échantillons analysés d’huîtres de 18 mois et dans 1 échantillon analysé d’huîtres de 30 mois. La bactérie Vibrio aestuarianus a été détectée dans 5 échantillons analysés de NSI, dans 1 échantillon d’huîtres de 18 mois et dans 1’échantillon d’huîtres de 30 mois. Pour la moule bleue Mytilus edulis, des mortalités cumulées variant de 9% sur le site du Vivier à 51% sur le site des filières du Pertuis Breton ont été estimées. Les mortalités ont été observées au printemps sur des moules âgées d’une année et en automne sur des moules plus jeunes. Lors de ces épisodes de mortalités, des prélèvements d’animaux ont été réalisés en vue d’analyses diagnostiques : 2 prélèvements pour les moules d’une année et 1 pour les jeunes moules. Ces prélèvements ont eu lieu dans le Pertuis Breton. Aucun agent réglementé n’a été détecté dans les échantillons de moules prélevés et analysés. Des bactéries du groupe Splendidus ont été détectées dans les 3 échantillons de moules analysés. (2) la surveillance s’appuyant sur les déclarations de mortalités de mollusques par les conchyliculteurs et pêcheurs à pied professionnels auprès des Directions départementales des territoires et de la mer (DDTM). Cette modalité s’applique aux huîtres creuses et aux moules bleues lorsqu’il n’existe pas de site atelier RESCO 2 ou MYTILOBS 2 dans la zone où des mortalités sont déclarées par les conchyliculteurs ou pêcheurs à pied. Le réseau REPAMO 2 a réalisé 22 interventions, dont 15 pour les moules Mytilus edulis, 4 pour les coques Cerastoderma edule, 2 pour les palourdes Ruditapes sp. et 1pour les coquilles saint Jacques Pecten maximus. La recherche d’agents infectieux dans ces espèces de mollusques prélevés lors de hausse de mortalité a permis de mettre en évidence les parasites réglementés Perkinsus olseni dans 1 lot de palourdes, et Marteilia refringens dans 4 lots de moules, ainsi que le virus OsHV-1 dans 1 lot de palourdes et 1 lot de coques, la bactérie Vibrio aestuarianus dans 3 lots de coques, et des bactéries du groupe Splendidus dans 3 lots de coques et dans 13 lots de moules. L’année 2015 a également permis la démonstration sur un site atelier d’un exercice de surveillance programmée, ciblée et fondée sur les risques d’introduction et d’installation d’un organisme pathogène exotique. Elle a concerné le parasite Mikrocytos mackini de l’huître creuse Crassostrea gigas, sur un site atelier de la Charente-Maritime, suivi par le réseau RESCO 2. Le parasite Mikrocytos mackini n’a pas été détecté. En revanche, le parasite Marteilia refringens a été détecté dans ¾ des prélèvements d’huîtres réalisés. Dans le cadre du soutien scientifique et technique de l’évolution de la surveillance événementielle, l’année 2015 a également permis de poursuivre la démarche relative aux développements méthodologiques en lien avec la surveillance événementielle des mortalités de mollusques marins. Une étude de faisabilité de la recherche prospective de regroupements spatio-temporels d’événements de mortalités d’huîtres creuses a été préparée en collaboration avec tous les acteurs de la santé des mollusques marins en Normandie. Un outil de collecte et d’analyse des données de signalements des mortalités, automatisé, simple d’utilisation et flexible, a été élaboré.

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Se utilizó al grupo de bacterias coliformes totales, fecales, Escherichia coli, el recuento de bacterias heterótrofas, la presencia – ausencia de los géneros Pseudomonas y Vibrios para determinar la calidad microbiológica del agua de las playas El Tunco y El Sunzal ubicadas en el departamento de La Libertad. Se realizaron 3 muestreos en cada una de las playas durante los meses de septiembre a diciembre del 2011, abarcando el final de la época lluviosa, la transición y el inicio de la época seca. En total se obtuvieron 54 muestras de agua, 27 por playa. Se estableció una red de estaciones ubicadas en cada sitio de muestreo, 3 por playa y cada estación se muestreo 3 puntos mar adentro a distancias de 10, 20 y 30 metros desde la orilla de la costa. El mayor registro de valores que se obtuvo del recuento de coliformes totales en ambas playas fue de 160,900 NMP/100ml y un menor valor de este grupo de 200 NMP/100ml. Para el grupo de coliformes fecales se registró un valor máximo de 34,000 NMP/100ml. La bacteria Escherichia coli se registró un recuento máximo de 33,000 NMP/100ml y para el recuento de las heterótrofas se registró un valor máximo sobresaliente en las dos playas de 13,000 UFC/100ml, resaltando que la mayoría de los promedios elevados se registraron en la playa El Tunco, además; se registraron en la playa el Tunco las siguientes bacterias: Pseudomona aeruginosa, en 10 muestras, Vibrio alginolyticus en 26 muestras y Vibrio parahaemolyticus en 14 muestras. En el Zunzal: Pseudomona aeruginosa en 20 muestras, Vibrio alginolyticus en 27 muestras y Vibrio parahaemolyticus en 12 muestras. Concluyendo que las playas El Tunco y El Sunzal, no entran dentro de los límites máximos permisibles por la norma mexicana para aguas de uso recreacional, ambas por los resultados obtenidos en el final de época lluviosa, la transición y el inicio de la época seca.

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Background: The emergence of multiple-drug resistance bacteria has become a major threat and thus calls for an urgent need to search for new effective and safe anti-bacterial agents. Objectives: This study aims to evaluate the anticancer and antibacterial activities of secondary metabolites from Penicillium sp. , an endophytic fungus associated with leaves of Garcinia nobilis . Methods: The culture filtrate from the fermentation of Penicillium sp. was extracted and analyzed by liquid chromatography– mass spectrometry, and the major metabolites were isolated and identified by spectroscopic analyses and by comparison with published data. The antibacterial activity of the compounds was assessed by broth microdilution method while the anticancer activity was determined by the 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide assay. Results: The fractionation of the crude extract afforded penialidin A-C (1-3), citromycetin (4), p-hydroxyphenylglyoxalaldoxime (5) and brefelfin A (6). All of the compounds tested here showed antibacterial activity (MIC = 0.50 – 128 μg/mL) against Gramnegative multi-drug resistance bacteria, Vibrio cholerae (causative agent of dreadful disease cholera) and Shigella flexneri (causative agent of shigellosis), as well as the significant anticancer activity (LC50 = 0.88 – 9.21 μg/mL) against HeLa cells. Conclusion: The results obtained indicate that compounds 1-6 showed good antibacterial and anticancer activities with no toxicity to human red blood cells and normal Vero cells.

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Global changes linked to increases in temperature and ocean acidification, but also to more direct anthropogenic influences such as aquaculture, have caused a worldwide increase in the reports of Vibrio-associated illnesses affecting humans and also animals such as shrimp and molluscs. Investigation of the emergence of Vibrio pathogenesis events requires the analysis of microbial evolution at the gene, genome and population levels, in order to identify genomic modifications linked to increased virulence, resistance and/or prevalence, or to recent host shift. From a more applied point of view, the elucidation of virulence mechanisms is a prerequisite to devising prophylactic methods to fight infectious agents. In comparison with human pathogens, fairly little is known about the requirements for virulence in vibrios pathogenic to animals. However, the advent of genome sequencing, especially next-generation technologies,the possibility of genetically manipulating most of the Vibrio strains, and the recent availability of standardised animals for experimental infections have now compensated for the considerable delay in advancement of the knowledge of non-model pathogens such as Vibrio and have led to new scientific questions.

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Since 2008, massive mortality events of Pacific oysters (Crassostrea gigas) have been reported worldwide and these disease events are often associated with Ostreid herpesvirus type 1 (OsHV-1). Epidemiological field studies have also reported oyster age and other pathogens of the Vibrio genus are contributing factors to this syndrome. We undertook a controlled laboratory experiment to simultaneously investigate survival and immunological response of juvenile and adult C. gigas at different time-points post-infection with OsHV-1, Vibrio tasmaniensis LGP32 and V. aestuarianus. Our data corroborates epidemiological studies that juveniles are more susceptible to OsHV-1, whereas adults are more susceptible to Vibrio. We measured the expression of 102 immune-genes by high-throughput RT-qPCR, which revealed oysters have different transcriptional responses to OsHV-1 and Vibrio. The transcriptional response in the early stages of OsHV-1 infection involved genes related to apoptosis and the interferon-pathway. Transcriptional response to Vibrio infection involved antimicrobial peptides, heat shock proteins and galectins. Interestingly, oysters in the later stages of OsHV-1 infection had a transcriptional response that resembled an antibacterial response, which is suggestive of the oyster's microbiome causing secondary infections (dysbiosis-driven pathology). This study provides molecular evidence that oysters can mount distinct immune response to viral and bacterial pathogens and these responses differ depending on the age of the host.

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BACKGROUND Integrons are found in hundreds of environmental bacterial species, but are mainly known as the agents responsible for the capture and spread of antibiotic-resistance determinants between Gram-negative pathogens. The SOS response is a regulatory network under control of the repressor protein LexA targeted at addressing DNA damage, thus promoting genetic variation in times of stress. We recently reported a direct link between the SOS response and the expression of integron integrases in Vibrio cholerae and a plasmid-borne class 1 mobile integron. SOS regulation enhances cassette swapping and capture in stressful conditions, while freezing the integron in steady environments. We conducted a systematic study of available integron integrase promoter sequences to analyze the extent of this relationship across the Bacteria domain. RESULTS Our results showed that LexA controls the expression of a large fraction of integron integrases by binding to Escherichia coli-like LexA binding sites. In addition, the results provide experimental validation of LexA control of the integrase gene for another Vibrio chromosomal integron and for a multiresistance plasmid harboring two integrons. There was a significant correlation between lack of LexA control and predicted inactivation of integrase genes, even though experimental evidence also indicates that LexA regulation may be lost to enhance expression of integron cassettes. CONCLUSIONS Ancestral-state reconstruction on an integron integrase phylogeny led us to conclude that the ancestral integron was already regulated by LexA. The data also indicated that SOS regulation has been actively preserved in mobile integrons and large chromosomal integrons, suggesting that unregulated integrase activity is selected against. Nonetheless, additional adaptations have probably arisen to cope with unregulated integrase activity. Identifying them may be fundamental in deciphering the uneven distribution of integrons in the Bacteria domain.