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Luis Mario Montalvo Jaramillo (2023, [Tesis de maestría])
La ecología funcional se basa en el uso de rasgos funcionales; características de las especies (morfológicas, fisiológicas, comportamiento) medidas a nivel individual que influencian el rendimiento de una especie, siendo de gran utilidad para determinar cambios dentro del ecosistema. El presente trabajo busca evaluar la funcionalidad física como indicador de disponibilidad de hábitat de peces y su relación con la diversidad funcional. La funcionalidad física del arrecife se evaluó mediante el IFA integrando datos de cobertura coralina, complejidad estructural y tasa de calcificación. La estructura de los ensamblajes de peces se analizó mediante el cálculo de índices de diversidad funcional (riqueza, equitatividad y divergencia) con base en cuatro rasgos funcionales (tamaño corporal, movilidad, tipo de agregación y dieta). La relación entre la diversidad funcional del ensamblaje y el IFA se evaluó mediante un análisis de regresión lineal. El IFA fue influenciado de manera positiva por la presencia Pocilloporidos al generar un mayor aporte a la funcionalidad física (FF) y consecuentemente, una mayor provisión de hábitat. Por el contrario, el IFA disminuyó con la presencia de Porites panamensis debido a su baja tasa de calcificación.La diversidad funcional de los ensamblajes no presentó variaciones temporales, atribuible a una baja variabilidad entre los sitios debido a una alta cercanía, baja variacion batimétrica y alta conectividad. La relación entre el IFA y la riqueza funcional de los ensamblajes se atribuye a que sitios con mayor funcionalidad física otorgan disponibilidad de hábitat y refugio contra la depredación a especies crípticas, de talla pequeña y juveniles; ya que, especies de este tipo se asocian a hoyos similares a su tamaño corporal y la supervivencia de las mismas aumenta en sustratos más complejos.
Functional diversity it’s based on functional traits; characteristics of species (morphological, physiological, behavior) measured at individual level that impact their performance and have great utility to determine changes within the ecosystem. This work aims to evaluate physical functionality as indicator of fish habitat availability and its relationship with functional diversity. The physical functionality of the reef was evaluated using the RFI, integrating data on coral cover, structural complexity, and calcification rate. The structure of the fish assemblages was analyzed by calculating functional diversity index (richness, evenness, and divergence) based on four functional traits (body size, mobility, type of aggregation and diet). The relationship between functional diversity and RFI was evaluated using linear regression analysis. The RFI was influenced on positive way for the presence of Pocilloporids due to the great contribution to physical functionality (PF) creating more habitat availability. For the other hand, the RFI was influenced on negative way for the presence of Porites panamensis due their low calcification rate. The functional diversity of the assemblages did not present temporal variations, attributable to a low variability between the sites due high proximity, low bathymetric variation and high connectivity. The relationship between RFI and the functional richness of the assemblages is attributed to fact that sites with greater physical functionality provide more availability of habitat and refuge against predation to cryptic, small and juvenile species; species of this type are associate with holes similar to their body size and their survival increases in more complex substrates.
Pacífico Méxicano, Índice de Función Arrecifal, Diversidad Funcional, Arrecife Reef, Functional Diversity, Reef Functional Index, Mexican Pacific BIOLOGÍA Y QUÍMICA CIENCIAS DE LA VIDA OTRAS ESPECIALIDADES DE LA BIOLOGÍA OTRAS OTRAS
GABRIELA RESENDIZ COLORADO (2023, [Tesis de doctorado])
Durante los últimos años, durante la temporada de invierno y primavera, se ha detectado la presencia de florecimientos algales nocivos (FAN) causados por el dinoflagelado Gymnodinium catenatum en el norte del golfo de California (NGC). Estos eventos tienen impactos ecológicos, económicos y sociales negativos porque G. catenatum es una especie productora de saxitoxina, la cual, está asociada al envenenamiento paralítico por consumo de mariscos, lo que origina que la autoridad sanitaria se vea en la necesidad de implementar vedas en áreas de extracción de almeja generosa en el NGC al detectar producto contaminado. Por lo tanto, es necesario conocer los procesos físicos que provocan la ocurrencia y recurrencia de estos eventos, así como contar con un sistema de monitoreo y alerta temprana que permita tomar decisiones y acciones oportunas de mitigación contra los efectos perjudiciales de estos fenómenos. En este trabajo se abordaron estas necesidades de investigación por medio de la implementación de un método de detección remota de estos FAN, utilizando la clasificación de máxima verosimilitud basada en los datos de dos eventos sucedidos en 2015 y 2017. Los resultados de este enfoque fueron satisfactorios al reproducir la temporalidad de la presencia de la especie documentada por medio de muestreos semanales en la bahía de San Felipe, así como de la detección geográfica en las áreas que se conocen que son afectadas recurrentemente. Para estudiar los procesos físicos asociados a estos FAN, se implementó un modelo hidrodinámico usando el Sistema de Modelación Oceánica Regional (ROMS) para el norte del golfo de California. A partir de este modelo se obtuvieron datos de variables como energía cinética turbulenta, temperatura, corrientes y se complementaron con datos de esfuerzo de fondo producido por oleaje estimados a partir de datos de la quinta generación del reanálisis atmosférico del clima global del ECMWF (ERA-5), los análisis de estas variables y la abundancia semanal de G. catenatum permitieron identificar que los principales procesos asociados a la formación de estos florecimientos es el incremento del esfuerzo de fondo asociado al oleaje y la turbulencia. Estos, a su vez, tienen una relación con el cambio en el patrón del viento que se caracteriza por ser del noroeste durante las temporadas de invierno y primavera. Respecto a la dispersión de los florecimientos algales, con base en los datos obtenidos del modelo hidrodinámico, se realizaron experimentos
During the recent winter and spring seasons, harmful algal blooms (HABs) caused by the dinoflagellate Gymnodinium catenatum have been detected in the northern Gulf of California (NGC). These events have negative ecological, economic, and social impacts because G. catenatum is a species producer of saxitoxin, which is associated with paralytic shellfish poisoning, which causes the need to implement bans by the health authority in extraction areas of generous clam in the NGC when detecting contaminated products. Therefore, it is necessary to identify the physical processes that cause the occurrence and recurrence of these events and have a monitoring and early warning system that allows timely decisions and mitigation actions to be taken against the harmful effects of these henomena. In this work, these research gaps are approached by implementing a remote detection method for these HABs, using maximum likelihood classification based on data from two events in 2015 and 2017. The results of this approach were satisfactory by reproducing the temporality presence of Gymnodinium catenatum documented through weekly sampling in San Felipe Bay, as well as geographic detection in areas known to be recurrently affected. To study the physical processes associated with these HABs, a hydrodynamic model was implemented using the Regional Ocean Modeling System (ROMS) for the northern Gulf of California. From this model, variables such as turbulent kinetic energy, temperature, and currents were obtained and were complemented with data on bottom stress produced by waves estimated from the fifth generation ECMWF atmospheric reanalysis of the global climate (ERA-5) data. Analyzing these variables and the weekly abundance of G. catenatum, it was possible that the processes associated with forming these blooms are the increase in bottom stress related to waves and turbulence. These processes are related to the change in the wind pattern characterized by northwest winds during the winter and spring seasons. Regarding the dispersion of algal blooms, based on the data obtained from the hydrodynamic model, lagrangian experiments were carried out to estimate the transport of the HAB. The results showed that the modeled dispersion corresponds with the detection carried out with the remote sensing method mplemented in this work for the 2017 event. The results obtained from this work are essential knowledge for the operational implementation of monitoring and early warning systems ..
Gymnodinium catenatum, florecimientos algales nocivos, percepción remota, modelación hidrodinámica, norte del golfo de California : Gymnodinium catenatum, harmful algal bloom, remote sensing, hydrodynamic modeling, northern Gulf of California BIOLOGÍA Y QUÍMICA CIENCIAS DE LA VIDA OTRAS ESPECIALIDADES DE LA BIOLOGÍA OTRAS OTRAS
Los seres alados y solares del arte maya en el Norte de Yucatán
Rubén Morante (2023, [Capítulo de libro])
En nuestro trabajo de campo en el norte de Yucatán estudiamos la iconografía de sitios como Chichén Itzá, Ek Balam y Mayapán. En ellos observamos esculturas con gran calidad artística de seres humanos que portan alas y que, por ello, se presentan como seres celestes relacionados con deidades del panteón maya de los periodos Clásico tardío, Clásico terminal y Posclásico temprano. Para esta investigación partimos de un breve contexto etnohistórico, geográfico y arqueológico de otros sitios mayas, del centro y oriente de México, incluyendo imágenes de códices y pinturas que nos hablan del posible significado que las plumas, las alas y las aves tuvieron en Mesoamérica. Procedimos al análisis de las figuras aladas que se presentan en relación con importantes edificios de sitios del norte de Yucatán. La advocación solar que sugieren parece haber sido común y en esta zona, no sólo hablan de los grandes artistas que los esculpieron, sino de un sistema de creencias que pudo emanar de tradiciones mayas muy tempranas, que en el siglo IX d.C. se manifiesta de manera clara mediante un estilo depurado, una maestría técnica y una alta sensibilidad estética.
In our field work in northern Yucatán we studied the iconography of sites such as Chichén Itzá, Ek Balam, and Mayapán. There we saw great artistic quality sculptures of human beings that carry wings, and because of that we think that represented celestial beings related to deities of the Mayan pantheon of Late Classic, Terminal Classic and Early Postclassic periods. In our research we started with reviews of ethnohistorical, geographical and archaeological contexts in other Mayan sites, from central and eastern Mexico, including images from codices and paintings that tell us about the possible meaning of feathers, wings and birds in Mesoamerica. We proceeded analyze winged figures presented in relation to important buildings in northern Yucatán sites. Solar evocation suggested probably was common in this area and, sculptures not only speak about belief systems that could emanate from very early Mayan traditions, but also speak about great artists, that in 9th century AD. clearly manifested it through a refined style, technical mastery and high aesthetic sensitivity.
Arte maya, seres alados, Norte de Yucatán, Chchén Itzá, Ek Balam. Mayan art, feathers and birds, Northern Yucatán. Maya art--Themes, motives. Maya arts--Mexico--Yucatán (State) Maya sculpture--Themes, motives. Maya mythology. Arte maya. Mitología maya. F1435.3.A7 HUMANIDADES Y CIENCIAS DE LA CONDUCTA CIENCIAS DE LAS ARTES Y LAS LETRAS TEORÍA, ANÁLISIS Y CRÍTICA DE LAS BELLAS ARTES
OMAR VALENCIA MENDEZ (2018, [Artículo])
Gobies are the most diverse marine fish family. Here, we analysed the gamma-diversity (γ-diversity) partitioning of gobiid fishes to evaluate the additive and multiplicative components of α and β-diversity, species replacement and species loss and gain, at four spatial scales: sample units, ecoregions, provinces and realms. The richness of gobies from the realm Eastern Tropical Pacific (ETP) is represented by 87 species. Along latitudinal and longitudinal gradients, we found that the γ-diversity is explained by the β-diversity at both spatial scales, ecoregions and provinces. At the ecoregion scale, species are diverse in the north (Cortezian ecoregion) and south (Panama Bight ecoregion) and between insular and coastal ecoregions. At the province scale, we found that the species turnover between the warm temperate Northeast Pacific (WTNP), Tropical East Pacific (TEaP) and the Galapagos Islands (Gala) was high, and the species nestedness was low. At the ecoregion scale, historical factors, and phylogenetic factors have influenced the hotspots of gobiid fish biodiversity, particularly in the Cortezian, Panama Bight and Cocos Island ecoregions, where species turnover is high across both latitudinal and longitudinal gradients. At the provincial level, we found that the contributions of the β-diversity from north to south, in the WTNP, TEaP and Gala were high, as result of the high number of unique species. Species turnover was also high at this scale, with a low contribution from species nestedness that was probably due to the low species/gene flow within the provinces. These results highlight the importance and successful inclusion of a cryptobenthic fish component in ecological and biogeographical studies. © 2018 Valencia-Méndez 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, biodiversity, biogeographic region, biogeography, gene flow, goby fish, nonhuman, phylogeny, species distribution, species diversity, taxonomic identification, teleost, animal, animal dispersal, fish, Pacific Ocean, phylogeography, Animal Di CIENCIAS AGROPECUARIAS Y BIOTECNOLOGÍA CIENCIAS AGRARIAS PECES Y FAUNA SILVESTRE PECES Y FAUNA SILVESTRE
Sonia Quijano (2020, [Artículo])
Pseudo-nitzschia is a cosmopolitan genus, some species of which can produce domoic acid (DA), a neurotoxin responsible for the Amnesic Shellfish Poisoning (ASP). In this study, we identified P. subpacifica for the first time in Todos Santos Bay and Manzanillo Bay, in the Mexican Pacific using SEM and molecular methods. Isolates from Todos Santos Bay were cultivated under conditions of phosphate sufficiency and deficiency at 16°C and 22°C to evaluate the production of DA. This toxin was detected in the particulate (DAp) and dissolved (DAd) fractions of the cultures during the exponential and stationary phases of growth of the cultures. The highest DA concentration was detected during the exponential phase grown in cells maintained in P-deficient medium at 16°C (1.14 ± 0.08 ng mL-1 DAd and 4.71 ± 1.11 × 10−5 ng cell-1 of DAp). In P-sufficient cultures DA was higher in cells maintained at 16°C (0.25 ± 0.05 ng mL-1 DAd and 9.41 ± 1.23 × 10−7 ng cell-1 of DAp) than in cells cultured at 22°C. Therefore, we confirm that P. subpacifica can produce DA, especially under P-limited conditions that could be associated with extraordinary oceanographic events such as the 2013–2016 "Blob" in the northeastern Pacific Ocean. This event altered local oceanographic conditions and possibly generated the presence of potential harmful species in areas with economic importance on the Mexican Pacific coast. © 2020 Quijano-Scheggia 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.
domoic acid, domoic acid, kainic acid, Article, cell growth, controlled study, diatom, Mexico, morphology, nonhuman, Pacific Ocean, phylogeny, plant cell, plant growth, Pseudo nitzschia, toxin analysis, cell culture technique, classification, diatom, CIENCIAS FÍSICO MATEMÁTICAS Y CIENCIAS DE LA TIERRA CIENCIAS DE LA TIERRA Y DEL ESPACIO OCEANOGRAFÍA OCEANOGRAFÍA