Freshwater Microbiology: Recent Updates and Prospects

AudienciaPúblico en generales_ES
CoberturaMéxicoes_ES
Fecha de ingreso2026-10-05T16:33:58Z
Fecha de publicación2023-01-01
ResumenAlong with bacteria, other microorganisms are also key components of microbiota structure of freshwater, and those include archaea, microbial eukaryotes, and viruses that together build the diverse community of microorganisms. All those microorganisms play key ecological functions and can have important impacts on animal, plant, and human health. The traditional culture-based microbiology methods have been mostly replaced, or complemented, by molecular methods, due to their accuracy, fast response, and capability to detect microorganisms that are quite difficult to grow in culture media. This chapter addresses some of the current tendencies on microbial structure and its analysis. Those methods included the “omic-based” DNA studies that allow better and more comprehensive characterization of bacterial communities, leading to metagenomic studies that help to elucidate the population structure of microbiomes in aquatic environments. Strategies for detecting water-borne pathogens are focused on detecting bacteria, protozoa, yeast, and virus in different water sources, and these methods can also be complemented by molecular tools such as molecular marker (RAPD, Microsatellites, RFLPs, and AFLPs). Those methods also allow to detect pathogenic bacteria, fungus, and viruses of public health interest, such as the enterovirus and, more recently, the coronavirus. Water bodies can also be important reservoirs of antibiotic-resistant bacteria, and the group of ESKAPE bacteria represents an important study model for antibiotic resistance and its distribution. The acronym “ESKAPE” is associated with this group due to their ability to escape antimicrobial activity and develop high levels of resistance to multiple antibiotics (multidrug resistance). Water bodies play a central role on the selective pressure and is the most important cause of the dissemination and extension of resistance and has contributed to the genetic diversification of resistance genes also affecting ecological microbial structures.es_ES
Doihttps://doi.org/10.1007/978-981-99-5018-8_1es_ES
ISBN978-981995018-8; 978-981995017-1es_ES
URIhttps://riuat.uat.edu.mx/handle/123456789/5705
Idiomaenes_ES
EditorialSpringer International Publishinges_ES
RelaciónCurrent Status of Fresh Water Microbiologyes_ES
URL relacionadohttps://doi.org/10.1007/978-981-99-5018-8_1es_ES
DerechosAcceso restringido / Suscripción (Metadatos de producción científica)es_ES
Licenciahttp://purl.org/coar/access_right/c_16eces_ES
FuenteCurrent Status of Fresh Water Microbiology
Palabra claveESKAPEes_ES
Palabra claveMetagenomicses_ES
Palabra claveMicrobial ecologyes_ES
Palabra claveMicrobiologyes_ES
Palabra claveMolecular markerses_ES
Palabra claveMulti-drug resistancees_ES
TítuloFreshwater Microbiology: Recent Updates and Prospectses_ES
TipoCapítulo Libroes_ES
ArbitradoHa sido Arbitradoes_ES
AutorBocanegra-García, Virgilio
AutorMartínez-Montoya, Humberto
AutorTamayo-Ordoñez, María Concepción
AutorEstrada-Camacho, Israel
AutorAguilar-Salazar, Alejandra
AutorGuaní-Sánchez, Gloria Dhení
AutorSosa-Santillán, Gerardo de Jesús
AutorAcosta-Cruz, Erika
AutorBocanegra-García, Virgilioes_ES
AutorMartínez-Montoya, Humbertoes_ES
AutorTamayo-Ordoñez, María Concepciónes_ES
AutorEstrada-Camacho, Israeles_ES
AutorAguilar-Salazar, Alejandraes_ES
AutorGuaní-Sánchez, Gloria Dheníes_ES
AutorSosa-Santillán, Gerardo de Jesúses_ES
AutorAcosta-Cruz, Erikaes_ES
InstituciónUniversidad Autónoma de Tamaulipas
InstituciónUniversidad Autónoma de Tamaulipases_ES
Rango de páginas1-27es_ES
URL relacionadahttps://doi.org/10.1007/978-981-99-5018-8_1
Tipo de artículoIndexado
Tipo de artículoIndexadoes_ES

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