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Estudios de genética en poblaciones de abulón y sus aplicaciones en ordenamiento pesquero
RICARDO PEREZ ENRIQUEZ NOE DIAZ VILORIA JOSE LUIS GUTIERREZ GONZALEZ ALEJANDRA ARCINIEGA DE LOS SANTOS ADRIANA MAX AGUILAR Pedro Cruz Hernández Fernando Aranceta Garza (2016, [Artículo])
"Se presenta la integración de más de 10 años de investigación científica en genética de las poblaciones de abulón en México realizada en el CIBNOR. Esta investigación muestra cómo se pueden aplicar los marcadores genéticos tanto en estudios de genética poblacional como en identificación forense con la finalidad de contribuir al conocimiento aplicado para manejo de la pesquería. Se desarrollaron marcadores genéticos tipo microsatélites de ADN enfocados tanto al abulón azul Haliotis fulgens como amarillo Haliotis corrugata para diferenciación de poblaciones y análisis de parentesco. Un análisis de estructura genética de las poblaciones silvestres de ambas especies de abulón mostró homogeneidad genética en la costa del Pacífico en la región centro-sur de la Península de Baja California, México, pero con diferenciación genética en localidades distantes debido a un flujo genético limitado producto del aislamiento reproductivo. Por ello, no existen elementos que den soporte a un manejo pesquero delimitado por bancos en ambas especies. De manera particular, el abulón amarillo mostró una menor de diversidad genética que el azul, posiblemente debido a una mayor explotación pesquera histórica. Los resultados obtenidos en pruebas de parentesco han indicado que la retención larvaria en bancos específicos es reducida, por lo que ni la agregación de reproductores ni la liberación de larvas han mostrado ser estrategias eficientes para favorecer el incremento de reclutas en bancos definidos. Un análisis de perfiles genéticos con el gen de la lisina permitió la identificación de las especies de abulón que se capturan y enlatan en México. El análisis comparativo de perfi les genéticos, basado en el gen nuclear 18S de abulón y otros moluscos, detectó producto enlatado conteniendo especies de moluscos comercializadas falsamente como abulón, lo que puede constituirse como una herramienta forense en futuras disputas legales. Este tipo de aplicación es potencialmente utilizable con otros productos comestibles en los cuales se sospecha de prácticas fraudulentas, ya sea por captura o comercialización ilegal o por sustitución de contenidos en productos procesados."
"This is an integrative work of more than 10 years of research in population genetics of abalone in Mexico performed at CIBNOR. It shows how molecular tools have the potential to support abalone fisheries management through population genetics and forensic analyses. Microsatellite DNA markers were developed on blue (green for its name in English) Haliotis fulgens and yellow abalone (pink for its name in English) H. corrugata to be used for genetic differentiation on populations and for parentage analysis. The analysis of genetic structure on wild populations of both species revealed genetic homogeneity in the Pacific coast of the central region of the Baja California Peninsula, Mexico, with genetic differentiation on distant localities due to a limited gene flow as a result of reproduction isolation. From this result we suggest that no evidences were found supporting the management of the fishery based on individual abalone beds. Pink abalone shows lower genetic diversity than green abalone, possibly due to higher historical fishery exploitation. The parentage analysis suggested that larval retention within beds is reduced, indicating that neither broodstockaggregation nor the release of abalone larvae for stock enhancement are efficient strategies to increase recruitment in specific beds.
An analysis of the genetic profiles with the lysine gene allowed the identification of abalone species captured and processed in Mexico. The comparative analysis, based on the 18S gene, among abalone and other mollusks, detected canned product containing mollusks that are commercialized allegedly as abalone or ‘abalone type’, which could constitute a forensic tool in future legal disputes. This type of application can also be used with other edible products in which fraudulent practices are suspected either because of illegal catch or commercialization or substitution in processed products."
Análisis forense, diversidad genética, gen 18S, genética de poblaciones, marcadores genéticos, retención larvaria Forensic analysis, genetic diversity, 18S gene, genetic markers, population genetics, larval retention BIOLOGÍA Y QUÍMICA CIENCIAS DE LA VIDA GENÉTICA GENÉTICA DE POBLACIONES GENÉTICA DE POBLACIONES
Leah Mungai Joseph Messina Leo Zulu Jiaguo Qi Sieglinde Snapp (2022, [Artículo])
Multilayer Perceptrons CIENCIAS AGROPECUARIAS Y BIOTECNOLOGÍA AGRICULTURE LAND USE POPULATION SATELLITE IMAGERY TEXTURE LAND COVER NEURAL NETWORKS REMOTE SENSING
Spurthi Nayak Polavarapu Kavi Kishor Rajeev Varshney (2010, [Artículo])
Simple Sequence Repeats Mapping Population Translational Studies CIENCIAS AGROPECUARIAS Y BIOTECNOLOGÍA ANCHORS CHICKPEAS CICER ARIETINUM GENETIC MAPS GENETIC MARKERS MEDICAGO MEDICAGO TRUNCATULA MICROSATELLITES SINGLE NUCLEOTIDE POLYMORPHISM GENES
MAHENDAR THUDI Abhishek Bohra Spurthi Nayak Trushar Shah R. Varma Penmetsa Nepolean Thirunavukkarasu Pooran Gaur Pawan Kulwal Hari Upadhyaya Polavarapu Kavi Kishor Rajeev Varshney (2011, [Artículo])
Molecular Markers Recombinant Inbred Lines CIENCIAS AGROPECUARIAS Y BIOTECNOLOGÍA GENETIC MARKERS MICROSATELLITES PLANTS DNA CHICKPEAS ARRAYS TECHNOLOGY CHROMOSOME MAPPING GENETIC VARIATION GENOTYPES MOLECULAR CLONING
Propuesta paisajística integral para la UAM, Unidad Azcapotzalco
Cynthia García Marín (2023, [Tesis de maestría])
315 páginas. Maestría en Diseño, Planificación y Conservación de Paisajes y Jardines.
En México, la educación superior comienza en 1521 cuando la universidad se crea como institución educativa, inaugurando en 1553 La Real y Pontificia Universidad de México. En 1910 se funda la Universidad Nacional de México y en 1954 fue inaugurada la Ciudad Universitaria de la UNAM, esta fecha representa un hito en la historia de los espacios físicos de las universidades mexicanas. Debido a la demanda de educación superior y al movimiento estudiantil de 1968, se concibe la idea de crear una nueva universidad en la ZONA METROPOLITANA de la Ciudad de México, la Universidad Autónoma Metropolitana con sus Unidades al norte, al oriente y al sur, posteriormente se abrieron 2 Unidades más. Cada una de estas Unidades funciona de manera independiente, teniendo sus propios órganos de decisión, lo que se refleja en la planta física de conjunto. Es al norte de la ciudad donde surge la Unidad Azcapotzalco, que con el paso de los años se ha ido conformando de acuerdo a sus necesidades inmediatas tratando de seguir el proyecto inicial, sin embargo, debido a los ajustes en sus diferentes intervenciones arquitectónicas, se ha propiciado una falta de integración entre el espacio arquitectónico y el espacio abierto impactando directamente en el paisaje y en la pérdida gradual de identidad de la Unidad. Este trabajo reúne la información que describe la conformación del paisaje en la Unidad a lo largo de casi 50 años, en donde se analizan los componentes del paisaje en sus diferentes sistemas; ecológico-conformación medioambiental, sociocultural-conformación de la estructura urbana, polisensorial-conformación a través de los sentidos y su contexto histórico-conformación a través del tiempo. Esta identificación, permite realizar el análisis detallado de los factores que intervienen directa e indirectamente en el estado actual del paisaje de la Unidad, con este diagnóstico se elabora una síntesis creativa que especifica las limitaciones y potencialidades que afectan la conformación del espacio abierto. A partir de esto se elaboró un plan maestro, que integra las principales líneas de acción, estructuradas en ejes de diseño que tienen como propósito ordenar y facilitar la programación para mejorar las condiciones actuales por medio de acciones específicas que contribuyan al mejoramiento, conservación y creación de un paisaje que se integre en su conjunto y permita a la UAM-Azcapotzalco ser revalorizada como un sitio con identidad y con valores históricos, sociales, estéticos, biológicos y paisajísticos.
In Mexico, higher education began in 1521 when the university was created as an educational institution, inaugurating in 1553 La Real y Pontificia Universidad de México. The National University of Mexico was founded in 1910 and the UNAM University City was inaugurated in 1954, this date represents a milestone in the history of the physical spaces of Mexican universities. Due to the demand for higher education and the student movement of 1968, the idea of creating a new university in the METROPOLITAN ZONE of Mexico City was conceived, the Universidad Autónoma Metropolitana with its Units to the north, east and south, later 2 more Units were opened. Each one of these Units works independently, having its own decision-making bodies, which is reflected in the physical plant as a whole. It is to the north of the city where the Azcapotzalco Unit arises, which over the years has had to conform according to its immediate needs trying to follow the initial project, however, due to adjustments in its different architectural interventions, a lack of integration between the architectural space and the open space has been fostered, directly impacting the landscape and the gradual loss of identity of the Unit. This work gathers the information that describes the conformation of the landscape in the Unit over almost 50 years, where the components of the landscape in its different systems are analyzed; ecological-environmental conformation, sociocultural-conformation of the urban structure, polysensory-conformation through the senses and its historical context-conformation through time. This identification allows a detailed analysis of the factors that intervene directly and indirectly in the current state of the landscape of the Unit, with this diagnosis a creative synthesis is elaborated that specifies the limitations and potentialities that affect the conformation of the open space. Based on this, a master plan was prepared, which integrates the main lines of action, structured into design axes whose purpose is to order and facilitate programming to improve current conditions through specific actions that contribute to the improvement, conservation and creation of a landscape that is integrated as a whole and allows the UAM-Azcapotzalco to be revalued as a site with identity and with historical, social, aesthetic, biological and landscape values.
Paisaje, universidad, conformación, diagnóstico, lineamientos, identidad, integrar, revalorizar, plan maestro, propuesta. Landscape, university, conformation, diagnosis, guidelines, identity, integrate, revalue, master plan, proposal. Landscape design. Landscape assessment. Landscape changes. Landscapes--Social aspects. Universidad Autónoma Metropolitana. Diseño de paisajes. Evaluación del paisaje. Cambios de paisaje. SB472.45 HUMANIDADES Y CIENCIAS DE LA CONDUCTA CIENCIAS DE LAS ARTES Y LAS LETRAS ARQUITECTURA JARDINES Y PARQUES
Whole-genome comparison between reference sequences and oyster Vibrio vulnificus C-genotype strains
CARLOS ABRAHAM GUERRERO RUIZ (2019, [Artículo])
Whole-genome sequences of Vibrio vulnificus clinical genotype (C-genotype) from the CICESE Culture Collection, isolated from oysters, were compared with reference sequences of CMCP6 and YJ016 V. vulnificus C-genotype strains of clinical origin. The RAST web server estimated the whole genome to be ~4.8 Mb in CICESE strain 316 and ~4.7 Mb in CICESE strain 325. No plasmids were detected in the CICESE strains. Based on a phylogenetic tree that was constructed with the whole-genome results, we observed high similarity between the reference sequences and oyster C-genotype isolates and a sharp contrast with environmental genotype (E-genotype) reference sequences, indicating that the differences between the C- and E-genotypes do not necessarily correspond to their isolation origin. The CICESE strains share 3488 genes (63.2%) with the YJ016 strain and 3500 genes (63.9%) with the CMCP6 strain. A total of 237 pathogenicity associated genes were selected from reference clinical strains, where—92 genes were from CMCP6, 126 genes from YJ016, and 19 from MO6-24/ O; the presence or absence of these genes was recorded for the CICESE strains. Of the 92 genes that were selected for CMCP6, 67 were present in both CICESE strains, as were as 86 of the 126 YJ016 genes and 13 of the 19 MO6-24/O genes. The detection of elements that are related to virulence in CICESE strains—such as the RTX gene cluster, vvhA and vvpE, the type IV pili cluster, the XII genomic island, and the viuB genes, suggests that environmental isolates with the C-genotype, have significant potential for infection. © 2019 Guerrero et al. This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
Article, bacterial gene, bacterial strain, bacterial virulence, comparative study, controlled study, gene cluster, gene identification, genomic island, genotype, nonhuman, phylogenetic tree, sequence analysis, strain identification, Vibrio vulnificus BIOLOGÍA Y QUÍMICA CIENCIAS DE LA VIDA GENÉTICA GENÉTICA
Andres Alejandro Ojanguren Affilastro (2017, [Artículo])
Tityus curupi n. sp., belonging to the bolivianus complex, is described from the biogeographically distinct area of Paraje Tres Cerros in north-eastern Argentina. We also present a molecular species delimitation analysis between Tityus curupi n. sp. and its sister species Tityus uruguayensis Borelli 1901 to confirm species integrity. Furthermore, a cytogenetic analysis is presented for these two species which contain different multivalent associations in meiosis, as a consequence of chromosome rearrangements, and the highest chromosome numbers in the genus. © 2017 Ojanguren-Affilastro et al. This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
Argentina, chromosome analysis, chromosome rearrangement, genus, human, meiosis, sister, species, anatomy and histology, animal, Argentina, chemistry, chromosome, classification, ecosystem, fluorescence in situ hybridization, genetics, geography, isl BIOLOGÍA Y QUÍMICA CIENCIAS DE LA VIDA BIOLOGÍA DE INSECTOS (ENTOMOLOGÍA) BIOLOGÍA DE INSECTOS (ENTOMOLOGÍA)
Muhammad Massub Tehseen Fatma Aykut Tonk Ahmed Amri Carolina Sansaloni Ezgi Kurtulus Muhammad Salman Mubarik Kumarse Nazari (2022, [Artículo])
Wheat Landraces Genetic Diversity SNP Markers Analysis of Molecular Variance AMOVA CIENCIAS AGROPECUARIAS Y BIOTECNOLOGÍA BREEDING DISCRIMINANT ANALYSIS GENETIC VARIATION GENETIC DISTANCE GENETIC IMPROVEMENT GENETIC MARKERS HEXAPLOIDY LANDRACES POPULATION STRUCTURE SINGLE NUCLEOTIDE POLYMORPHISM TRITICUM AESTIVUM WHEAT
Sustainability assessment of vegetables farms in Benin: preliminary results
Sylvanus Odjo (2023, [Objeto de congreso])
CIENCIAS AGROPECUARIAS Y BIOTECNOLOGÍA SUSTAINABILITY ASSESSMENT VEGETABLES STAPLE FOODS AGRIFOOD SYSTEMS FRUITS FARMERS
Regional analysis of the wage discrimination in the indigenous workers in Mexico
Christian De la Luz-Tovar SIBYL ITALIA PINEDA SALAZAR (2023, [Artículo, Artículo])
The objective of this research is to estimate and decompose the wage gap between indigenous and non-indigenous workers by region in Mexico, to examine whether there are regional differences in the existing wage inequality that a priori affects the indigenous population and whether these differences can be attributed to the job profile of this group or by systematic labor discrimination against them. Using the data from the 2018 National Household Expenditure Revenue Survey (ENIGH-N) and the Oaxaca-Blinder decomposition, it was found that indigenous workers face a wage gap in all regions of the county. But, this gap is more pronounced in the center and south regions, where, on average, the associated component with labor discrimination has a percentage greater than 56. In contrast, in the north-central and northern regions of Mexico, the residual component is on average less than 33%, which suggests that the wage gap is explained by differences in productivity between groups.
Labor economics Ethnicity wage gap Indigenous population Regions Oaxaca-Blinder decomposition Economía laboral Brecha salarial étnica Población indígena Regiones Descomposición de Oaxaca-Blinder CIENCIAS SOCIALES CIENCIAS SOCIALES