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Selecciona los temas de tu interés y recibe en tu correo las publicaciones más actuales
Naoki Abraham Kawamoto Camacho (2023, [Tesis de maestría])
El parásito Perkinsus marinus cuyo ciclo de vida le permite subsistir en el ambiente y cumplir su ciclo dentro del hospedero es el agente causal de la perkinsosis, letal para Crasssotrea virginica y enlistado por la Organización Mundial de Salud Animal (OMSA). El comercio de ostiones entre el Golfo de México y el Pacífico mexicano ha generado preocupaciones sanitarias al introducir estos moluscos en comunidades costeras del Pacífico. P. marinus formaría parte de la microbiota ambiental y estar en los moluscos bivalvos de estos ambientes. En el presente estudio se emplearon las técnicas PCR, qPCR, secuenciación de amplicones y de próxima generación, así como análisis de microbioma para determinar la presencia de P. marinus en el ambiente y en los moluscos Anadara tuberculosa, Mytella strigata y Crassostrea corteziensis que coexisten en el estero Pozo Chino, Nayarit. Además, se analizaron muestras embebidas en parafina de Tabasco, Veracruz (C. virginica), Nayarit y Sinaloa (C. corteziensis) para realizar comparaciones genotípicas. La prevalencia de infección mediante PCR fue de 86% en ostiones de la zona baja y media del estero, y de 66% en la zona alta, mientras que para M. strigata fue de 2.2% por qPCR. No se detectó a P. marinus en el ambiente ni en A. tuberculosa. La identidad del parásito fue de 86.1 al 100% mediante secuenciación dirigida. Los primers que amplifican productos de 130 pb fueron más eficaces. La no detección del parásito en el entorno se debe a su baja presencia, consecuencia de la baja salinidad, ausencia de infecciones graves y la falta de eventos inusuales de mortalidad, evitando la liberación masiva del parásito en el ambiente. Además, la baja detección en M. strigata y ausencia en A. tuberculosa puede relacionarse con su susceptibilidad. El análisis del microbioma eucariótico mostró a P. marinus como parte de la microbiota en C. corteziensis. En el ambiente los grupos más abundantes fueron copépodos, moluscos, poliquetos y diatomeas. Se requiere profundizar en su estudio en el ambiente y hospederos a lo largo del año para dimensionar mejor el riesgo sanitario que se enfrenta en una zona donde se ha establecido el parásito.
The parasite Perkinsus marinus, whose life cycle allows it to survive in the environment and complete its cycle within the host, is the causative agent of perkinsosis, lethal to Crassostrea virginica, and listed by the World Organisation for Animal Health (WOAH). The trade of oysters between the Gulf of Mexico and the Mexican Pacific coast has raised sanitary concerns by introducing these mollusks into coastal communities on the Pacific. In areas where detection has occurred, P. marinus would be part of the environmental microbiota (plankton/sediments) and in coexisting bivalve mollusks. In this study, PCR, Real-Time PCR (qPCR), amplicon sequencing and next-generation sequencing techniques, as well as microbiome analysis, were employed to determine the presence of P. marinus in the environment (plankton and sediments) and in the mollusks Anadara tuberculosa, Mytella strigata, and Crassostrea corteziensis coexisting in the Pozo Chino estuary, Nayarit. Paraffin-embedded samples from Tabasco, Veracruz (C. virginica), Nayarit, and Sinaloa (C. corteziensis) were also analyzed for genotypic comparisons. The infection prevalence through PCR was 86% in oysters from the lower and middle zones of the estuary and 66% in the upper zone, while for M. strigata, it was 2.2% by RT-PCR. P. marinus was not detected in the environment or in A. tuberculosa. Directed sequencing revealed a parasite identity of 86.1 to 100%. Primers amplifying 130 bp products were more effective. The lack of detection of the parasite in the environment is due to its low presence, resulting from low salinity, the absence of records of severe infections, and the lack of unusual mortality events, preventing massive release of the parasite into the environment. Additionally, the isolated detection in M. strigata and absence in A. tuberculosa may be related to their susceptibility. Analysis of eukaryotic microbiomes identified P. marinus as part of the microbiota in C. corteziensis. In the environment, the most abundant groups were copepods, mollusks, polychaetes, and diatoms. Further studies in the environment and hosts throughout the year are required to better understand the health risks in an area where the parasite has become established.
Perkinsus marinus, Anadara tuberculosa, Mytella strigata, Crassostrea, protista, Pozo Chino, susceptibilidad Perkinsus marinus, Anadara tuberculosa, Mytella strigata, Crassostrea, protist, Pozo Chino, susceptibility CIENCIAS FÍSICO MATEMÁTICAS Y CIENCIAS DE LA TIERRA CIENCIAS DE LA TIERRA Y DEL ESPACIO OCEANOGRAFÍA OCEANOGRAFÍA ACUICULTURA MARINA OCEANOGRAFÍA ACUICULTURA MARINA
MLN disease diagnostics, MLN disease-free seed production and MLN disease management
Suresh L.M. (2023, [Objeto de congreso])
CIENCIAS AGROPECUARIAS Y BIOTECNOLOGÍA YIELD LOSSES DISEASES MAIZE PHENOTYPING GERMPLASM SYMPTOMS ECONOMIC ASPECTS
Potential of Omics to control diseases and pests in the Coconut tree
MIGUEL ALONSO TZEC SIMA Jean Wildort Félix María Inés Granados Alegría Mónica Aparicio Ortiz Dilery Juarez Monroy Damian Mayo Sarai Vivas-Lopez Rufino Gómez-Tah Blondy Beatriz Canto Canché Maxim Berezovski Ignacio Rodrigo Islas Flores (2022, [Artículo])
The coconut palm (Cocos nucifera L.) is a common crop in pantropical areas facing various challenges, one of them being the control of diseases and pests. Diseases such as bud rot caused by Phytophthora palmivora, lethal yellowing caused by phytoplasmas of the types 16SrIV-A, 16SrIV-D or 16SrIV-E, among others, and pests like the coconut palm weevil, Rhynchophorus vulneratus (Coleoptera: Curculionidae), and the horned beetle, Oryctes rhinocerus (Coleoptera: Scarabaeidae), are controlled by applying pesticides, pheromones and cultural control. These practices do not guarantee eradication since some causal agents have become resistant or are imbedded in infected tissues making them difficult to eradicate. This review condenses the current genomics, transcriptomics, proteomics and metabolomics studies which are being conducted with the aim of understanding the pathosystems associated with the coconut palm, highlighting the findings generated by omics studies that may become future targets for the control of diseases and pests in the coconut crop. © 2022 by the authors.
COCOS NUCIFERA L. OMICS PESTS INSECTS DISEASES PATHOGENS BIOLOGÍA Y QUÍMICA CIENCIAS DE LA VIDA BIOLOGÍA MOLECULAR BIOLOGÍA MOLECULAR DE PLANTAS BIOLOGÍA MOLECULAR DE PLANTAS
MLN disease diagnostics, MLN disease-free seed production and MLN disease management
Suresh L.M. (2022, [Objeto de congreso])
CIENCIAS AGROPECUARIAS Y BIOTECNOLOGÍA DISEASES DISEASE MANAGEMENT SEED PRODUCTION MAIZE NECROSIS YIELD LOSSES ECONOMIC IMPACT SURVEILLANCE SYSTEMS TRAINING
Infant population’s death causes in Ciudad Juarez, 1953-1954
Guadalupe Santiago Quijada (2022, [Artículo, Artículo])
This article presents a study about the causes of death of the child population in Ciudad Juarez, at the beginning of the second half of the 20th century. In this document, emphasis has been placed on investigating the government response, on the activities carried out by local health institutions to deal with the diseases and prevent the number of infant deaths from continuing to increase; and in a particular way, in the actions of society to reduce suffering and protect children. Regarding the sources of information that were used, the data registered in the death books of 1953 and 1954 that are in the Civil Registry of Ciudad Juarez were explored and quantified. Also, the newspaper El Fronterizo and various bibliography were reviewed to establish the urban historical context in which this tragedy occurred.
Ciudad Juárez, salud, enfermedades, mortalidad infantil HUMANIDADES Y CIENCIAS DE LA CONDUCTA HUMANIDADES Y CIENCIAS DE LA CONDUCTA Ciudad Juarez demographic history diseases infant mortality
MLN disease diagnostics, MLN disease-free seed production and MLN disease management
Suresh L.M. (2023, [Objeto de congreso])
CIENCIAS AGROPECUARIAS Y BIOTECNOLOGÍA DISEASES MAIZE PHENOTYPING GERMPLASM SYMPTOMS ECONOMIC ASPECTS
MLN disease diagnostics, surveillance, MLN disease-free seed production, and MLN disease management
Suresh L.M. (2022, [Objeto de congreso])
CIENCIAS AGROPECUARIAS Y BIOTECNOLOGÍA DISEASES DISEASE MANAGEMENT SEED PRODUCTION MAIZE NECROSIS YIELD LOSSES ECONOMIC IMPACT SURVEILLANCE SYSTEMS TRAINING
Suresh L.M. (2022, [Objeto de congreso])
CIENCIAS AGROPECUARIAS Y BIOTECNOLOGÍA MAIZE DISEASES SEED PRODUCTION MONITORING SYSTEMS TRAINING
Gerald Blasch (2023, [Objeto de congreso])
CIENCIAS AGROPECUARIAS Y BIOTECNOLOGÍA REMOTE SENSING WHEAT CROPS DISEASES