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1.
Dis Aquat Organ ; 149: 121-132, 2022 Jun 09.
Artículo en Inglés | MEDLINE | ID: mdl-35678357

RESUMEN

In the larval stage of the parasitic copepod Lepeophtheirus salmonis, the free-living copepodid must locate and settle on a salmonid host. Chemosensory mechanisms play a role in determining whether a potential host is suitable for attachment, yet the full suite of chemical cues and resulting behavioral mechanisms used are unknown. After maturing, pre-adult female and adult male salmon lice aggregate upon salmonid hosts for reproduction. Copepodid salmon lice have been observed preferentially infesting hosts that harbor conspecific adults. The aim of this study was to investigate the possibility that salmon lice copepodids perceive and respond to cues from pre-adult female, adult-male, and/or gravid female salmon lice. Behavioral bioassays were conducted in vitro with copepodids exposed to water conditioned with 3 stages of conspecific lice (pre-adult female, adult male, or gravid female), and seawater conditioned with Atlantic salmon Salmo salar Linnaeus, 1758. Experiments demonstrated that copepodids exposed to water conditioned with the salmon host, pre-adult female, or adult male salmon lice significantly altered their behavior, whereas salmon lice exposed to water conditioned with gravid females did not. These results are potentially valuable in the development of novel methods for mitigation of L. salmonis in the salmon aquaculture industry.


Asunto(s)
Copépodos , Enfermedades de los Peces , Salmo salar , Animales , Copépodos/fisiología , Señales (Psicología) , Femenino , Enfermedades de los Peces/parasitología , Larva , Masculino , Salmón , Agua
2.
Cell Stress Chaperones ; 26(4): 721-734, 2021 07.
Artículo en Inglés | MEDLINE | ID: mdl-34115338

RESUMEN

The Gulf of the Maine (GoM) is one of the fastest warming bodies of water in the world, posing serious physiological challenges to its marine inhabitants. Marine organisms can cope with the cellular and molecular stresses created by climate change through changes in gene expression. We used transcriptomics to examine how exposure to current summer temperatures (16 °C) or temperature regimes reflective of projected moderate and severe warming conditions (18 °C and 22 °C, respectively) during larval development alters expression of transcripts affiliated with the cellular stress response (CSR) in postlarval American lobsters (Homarus americanus). We identified 26 significantly differentially expressed (DE) transcripts annotated to CSR proteins. Specifically, transcripts for proteins affiliated with heat shock, the ubiquitin family, DNA repair, and apoptosis were significantly over-expressed in lobsters reared at higher temperatures relative to current conditions. Substantial variation in the CSR expression between postlarvae reared at 18 °C and those reared at 22 °C suggests that postlarvae reared under severe warming may have a hindered ability to cope with the physiological and molecular challenges of ocean warming. These results highlight that postlarval American lobsters may experience significant heat stress as rapid warming in the GoM continues, potentially compromising their ability to prevent cellular damage and inhibiting the reallocation of cellular energy towards other physiological functions beyond activation of the CSR. Moreover, this study establishes additional American lobster stress markers and addresses various knowledge gaps in crustacean biology, where sufficient 'omics research is lacking.


Asunto(s)
Adaptación Psicológica/fisiología , Calor , Estrés Fisiológico/fisiología , Transcriptoma/fisiología , Animales , Respuesta al Choque Térmico/fisiología , Calor/efectos adversos , Nephropidae/metabolismo , Estaciones del Año , Temperatura
3.
Artículo en Inglés | MEDLINE | ID: mdl-32777773

RESUMEN

The American lobster (Homarus americanus) is one of the most iconic and economically valuable fishery species in the Northwestern Atlantic. Surface ocean temperatures are rapidly increasing across much of the species' range, raising concern about resiliency in the face of environmental change. Warmer temperatures accelerate rates of larval development and enhance survival to the postlarval stage, but the potential costs at the molecular level have rarely been addressed. We explored how exposure to current summer temperatures (16 °C) or temperature regimes mimicking projected moderate or extreme warming scenarios (18 °C and 22 °C, respectively) for the Gulf of Maine during development influences the postlarval lobster transcriptome. After de novo assembling the transcriptome, we identified 2542 differentially expressed (DE; adjusted p < 0.05) transcripts in postlarvae exposed to 16 °C vs. 22 °C, and 422 DE transcripts in postlarvae reared at 16 °C vs. 18 °C. Lobsters reared at 16 °C significantly over-expressed transcripts related to cuticle formation and the immune response up to 14.4- and 8.5-fold respectively, relative to those reared at both 18 °C and 22 °C. In contrast, the expression of transcripts affiliated with metabolism increased up to 7.1-fold as treatment temperature increased. These results suggest that lobsters exposed to projected warming scenarios during development experience a shift in the transcriptome that reflects a potential trade-off between maintaining immune defenses and sustaining increased physiological rates under a warming environment. This could have major implications for post-settlement survival through increased risk of mortality due to disease and/or starvation if energetic demands cannot be met.


Asunto(s)
Metabolismo Energético , Regulación de la Expresión Génica , Larva/genética , Nephropidae/genética , Estaciones del Año , Temperatura , Transcriptoma , Animales , Larva/crecimiento & desarrollo , Nephropidae/crecimiento & desarrollo , Océanos y Mares
4.
J Vis Exp ; (158)2020 04 04.
Artículo en Inglés | MEDLINE | ID: mdl-32310237

RESUMEN

Temperatures in oceans are increasing rapidly as a consequence of widespread changes in world climates. As organismal physiology is heavily influenced by environmental temperature, this has the potential to alter thermal physiological performance in a variety of marine organisms. Using the American lobster (Homarus americanus) as a model organism, this protocol describes the use of impedance pneumography to understand how cardiac performance in late stage invertebrates changes under acute thermal stress. The protocol presents a minimally invasive technique that allows for real-time collection of heart rate during a temperature ramping experiment. Data are easily manipulated to generate an Arrhenius plot that is used to calculate Arrhenius break temperature (ABT), the temperature at which heart rate begins to decline with increasing temperatures. This technique can be used in a variety of late stage invertebrates (i.e., crabs, mussels, or shrimps). Although the protocol focuses solely on the impact of temperature on cardiac performance, it can be modified to understand the potential for additional stressors (e.g., hypoxia or hypercapnia) to interact with temperature to influence physiological performance. Thus, the method has potential for wide-ranging applications to further understand how marine invertebrates respond to acute changes in the environment.


Asunto(s)
Impedancia Eléctrica/uso terapéutico , Frecuencia Cardíaca/fisiología , Animales , Invertebrados
5.
Heliyon ; 5(10): e02646, 2019 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-31687501

RESUMEN

Arsenic is a metalloid pollutant that is commonly found in surface and groundwater worldwide. Toxicological effects of arsenic are relatively well-known, but much less studied are its effects on behavioral endpoints, which may have considerable evolutionary and population-level consequences. Here we investigated the effects of exposure to environmentally relevant concentrations of arsenic (0, 10 and 100 µg/L) for 96-hours on female preference for male color (i.e. red versus blue) in Betta splendens, an increasingly popular fish model for contaminant-induced behavioral dysfunction. Further, we examined whether arsenic exposure altered anxiety-like behaviors using a standard scototaxis test (preference for light or dark), as well as measured tissue cortisol concentrations to increase our understanding of possible mechanisms driving behavioral responses. We found exposure to 100 µg/L arsenic results in a loss of female preference for red males, and arsenic exposed females showed increased anxiety-like behavior. The loss in preference for male coloration may have been driven by anxiety, as preference for red was negatively correlated with anxiety-like behavior for all fish. Interestingly, increase in anxiety-like behavior occurred without a parallel increase in cortisol. Female preference for red colored males may confer fitness benefits, and this study highlights important arsenic-induced behavioral changes that could have population level consequences.

6.
Gen Comp Endocrinol ; 265: 31-40, 2018 09 01.
Artículo en Inglés | MEDLINE | ID: mdl-29577898

RESUMEN

Nitrate is a widespread contaminant of aquatic ecosystems and drinking water. It is also broadly active in organismal physiology, and as such, has the potential to both enhance and disrupt normal physiological function. In animals, nitrate is a proposed endocrine disrupter that is converted in vivo to nitrite and nitric oxide. Nitric oxide, in particular, is a potent cell signaling molecule that participates in diverse biological pathways and events. Here, we review in vivo nitrate cycling and downstream mechanistic physiology, with an emphasis on reproductive outcomes. However, in many cases, the research produces contradictory results, in part because there is good evidence that nitrate follows a non-monotonic dose-response curve. This conundrum highlights an array of opportunities for scientists from different fields to collaborate for a full understanding of nitrate physiology. Opposing conclusions are especially likely when in vivo/in vitro, long term/short term, high dose/low dose, or hypoxia/normoxia studies are compared. We conclude that in vivo studies are most appropriate for testing an organism's integrated endocrine response to nitrate. Based on the limited available studies, there is a generalized trend that shorter term studies (less than 1 month) or studies involving low doses (≤5 mg/L NO3-N) cause steroid hormone levels to decline. Studies that last more than a month and/or involve higher, but still environmentally relevant, exposures (>50-100 mg/L NO3-N) cause steroid hormone levels to increase. Very high nitrate doses (>500 mg/L NO3-N) are cytotoxic in many species. Hypoxia and acidity are likely to intensify the effects of nitrate. For study design, degree of study animal reproductive maturity or activity is important, with immature/reproductively quiescent animals responding to nitrate differently, compared with reproductively active animals. A detailed table of studies is presented.


Asunto(s)
Contaminantes Ambientales/toxicidad , Nitratos/toxicidad , Reproducción/efectos de los fármacos , Animales , Exposición a Riesgos Ambientales/análisis , Homeostasis/efectos de los fármacos , Nitritos/metabolismo , Oxígeno/metabolismo
7.
Environ Pollut ; 235: 180-185, 2018 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-29289828

RESUMEN

Nitrate accumulation in aquatic reservoirs from agricultural pollution has often been overlooked as a water quality hazard, yet a growing body of literature suggests negative effects on human and wildlife health following nitrate exposure. This research seeks to understand differences in oxygen consumption rates between different routes of laboratory nitrate exposure, whether via immersion or injection, in zebrafish (Danio rerio) embryos. Embryos were exposed within 1 h post fertilization (hpf) to 0, 10, and 100 mg/L NO3-N with sodium nitrate, or to counter ion control (CIC) treatments using sodium chloride. Embryos in the immersion treatments received an injection of 4 nL of appropriate treatment solution into the perivitelline space. At 24 hpf, Oxygen Consumption Rates (OCR) were measured and recorded in vivo using the Agilent Technologies XFe96 Extracellular Flux Analyzer and Spheroid Microplate. Immersion exposures did not induce significant changes in OCR, yet nitrate induced significant changes when injected through the embryo chorion. Injection of 10 and 100 mg/L NO3-N down-regulated OCR compared to the control treatment group. Injection of the 100 mg/L CIC also significantly down-regulated OCR compared to the control treatment group. Interestingly, the 100 mg/L NO3-N treatment further down-regulated OCR compared to the 100 mg/L CIC treatment, suggesting the potential for additive effects between the counter ion and the ion of interest. These data support that elevated nitrate exposure can alter normal metabolic activity by changing OCR in 24 hpf embryos. These results highlight the need for regularly examining the counter ion of laboratory nitrate compounds while conducting research with developing zebrafish, and justify examining different routes of laboratory nitrate exposure, as the chorion may act as an effective barrier to nitrate penetration in zebrafish, which may lead to conservative estimates of significant effects in other species for which nitrate more readily penetrates the chorion.


Asunto(s)
Embrión no Mamífero/metabolismo , Nitratos/toxicidad , Contaminantes Químicos del Agua/toxicidad , Animales , Corion , Embrión no Mamífero/efectos de los fármacos , Nitratos/metabolismo , Óxidos de Nitrógeno/metabolismo , Contaminantes Químicos del Agua/metabolismo , Pez Cebra/embriología , Pez Cebra/metabolismo
8.
Ecotoxicol Environ Saf ; 147: 767-775, 2018 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-28942280

RESUMEN

Type 1 diabetes (T1D) is a chronic autoimmune disease that affects 1 in 300 children by age 18. T1D is caused by inflammation-induced loss of insulin-producing pancreatic beta cells, leading to high blood glucose and a host of downstream complications. Although multiple genes are associated with T1D risk, only 5% of genetically susceptible individuals actually develop clinical disease. Moreover, a growing number of T1D cases occur in geographic clusters and among children with low risk genotypes. These observations suggest that environmental factors contribute to T1D etiology. One potential factor, supported primarily by epidemiological studies, is the presence of nitrate and nitrite in drinking water. To test this hypothesis, female hatchling alligators were exposed to environmentally relevant concentrations of nitrate in their tank water (reference, 10mg/L, or 100mg/L NO3-N) from hatch through 5 weeks or 5 months of age. At each time point, endpoints related to T1D were investigated: plasma levels of glucose, triglycerides, testosterone, estradiol, and thyroxine; pancreas, fat body, and thyroid weights; weight gain or loss; presence of immune cells in the pancreas; and pancreatic beta cell number, assessed by antibody staining of nkx6.1 protein. Internal dosing of nitrate was confirmed by measuring plasma and urine nitrate levels and whole blood methemoglobin. Cluster analysis indicated that high nitrate exposure (most animals exposed to 100mg/L NO3-N and one alligator exposed to 10mg/L NO3-N) induced a profile of endpoints consistent with early T1D that could be detected after 5 weeks and was more strongly present after 5 months. Our study supports epidemiological data correlating elevated nitrate with T1D onset in humans, and highlights nitrate as a possible environmental contributor to the etiology of T1D, possibly through its role as a nitric oxide precursor.


Asunto(s)
Caimanes y Cocodrilos/sangre , Diabetes Mellitus Experimental/inducido químicamente , Diabetes Mellitus Tipo 1/inducido químicamente , Disruptores Endocrinos/toxicidad , Nitratos/toxicidad , Contaminantes Químicos del Agua/toxicidad , Caimanes y Cocodrilos/crecimiento & desarrollo , Animales , Glucemia/análisis , Diabetes Mellitus Experimental/sangre , Diabetes Mellitus Tipo 1/sangre , Relación Dosis-Respuesta a Droga , Disruptores Endocrinos/farmacocinética , Monitoreo del Ambiente/métodos , Femenino , Hormonas Esteroides Gonadales/sangre , Nitratos/farmacocinética , Tamaño de los Órganos/efectos de los fármacos , Tiroxina/sangre , Triglicéridos/sangre , Contaminantes Químicos del Agua/farmacocinética
9.
Gen Comp Endocrinol ; 238: 55-60, 2016 11 01.
Artículo en Inglés | MEDLINE | ID: mdl-27118707

RESUMEN

Anthropogenic nitrogen is a ubiquitous environmental contaminant that is contributing to the degradation of freshwater, estuarine, and coastal ecosystems worldwide. The effects of environmental nitrate, a principal form of nitrogen, on the health of aquatic life is of increasing concern. We exposed female American alligators to three concentrations of nitrate (0.7, 10 and 100mg/L NO3-N) for a duration of five weeks and five months from hatch. We assessed growth, plasma sex steroid and thyroid hormone concentrations, and transcription levels of key genes involved in steroidogenesis (StAR, 3ß-HSD, and P450scc) and hepatic clearance (Cyp1a, Cyp3a). Exposure to 100mg/L NO3-N for both five weeks and five months resulted in significantly increased plasma testosterone (T) concentrations compared with alligators in the reference treatment. No differences in 17ß-estradiol, progesterone, or thyroid hormones were observed, nor were there differences in alligator weight or the mRNA abundance of steroidogenic or hepatic genes. Plasma and urinary nitrate concentrations increased with increasing nitrate treatment levels, although relative plasma concentrations of nitrate were significantly lower in five month, versus five week old animals, possibly due to improved kidney function in older animals. These results indicate that environmentally relevant concentrations of nitrate can increase circulating concentrations of T in young female alligators.


Asunto(s)
Caimanes y Cocodrilos/sangre , Contaminantes Ambientales/toxicidad , Nitratos/toxicidad , Testosterona/sangre , Caimanes y Cocodrilos/genética , Animales , Peso Corporal/efectos de los fármacos , Contaminación Ambiental , Femenino , Hormonas Esteroides Gonadales/sangre , Nitratos/sangre , Nitratos/orina , ARN Mensajero/metabolismo , Hormonas Tiroideas/sangre , Transcripción Genética/efectos de los fármacos , Estados Unidos
10.
Gen Comp Endocrinol ; 238: 47-54, 2016 11 01.
Artículo en Inglés | MEDLINE | ID: mdl-27080549

RESUMEN

Incubation temperatures experienced by developing embryos exert powerful influences over gonadal sex determination and differentiation in many species. However, the molecular mechanisms controlling these impacts remain largely unknown. We utilize the American alligator to investigate the sensitivity of the reproductive system to thermal signals experienced during development and ask specifically whether individuals of the same sex, yet derived from different incubation temperatures display persistent variation in the expression patterns of sex biased transcripts and plasma sex hormones. Our analysis focuses on assessments of circulating sex steroids and transcript abundance in brain and gonad, two tissues that display sexually dimorphic gene expression and directly contribute to diverse sexually dimorphic phenotypes. Whereas our results identify sexually dimorphic patterns for several target gonadal genes in postnatal alligators, sex linked variation in circulating 17ß-estradiol, testosterone, and expression of two brain transcripts (aromatase and gonadotropin releasing hormone) was not observed. Regarding intrasexual variation, we found that AMH transcript abundance in hatchling testes is positively correlated with temperatures experienced during sexual differentiation. We also describe highly variable patterns of gene expression and circulating hormones within each sex that are not explained by the intensity of embryonic incubation temperatures. The magnitude of sexually dimorphic gene expression, however, is directly associated with temperature for SOX9 and AMH, two transcripts with upstream roles in Sertoli cell differentiation. Collectively, our findings regarding temperature linked variation provide new insights regarding the connections between embryonic environment and persistent impacts on sexual differentiation in a reptile species that displays temperature dependent sex determination.


Asunto(s)
Caimanes y Cocodrilos/embriología , Caimanes y Cocodrilos/genética , Desarrollo Embrionario , Regulación del Desarrollo de la Expresión Génica , Hormonas Esteroides Gonadales/sangre , Caracteres Sexuales , Temperatura , Caimanes y Cocodrilos/sangre , Animales , Femenino , Gónadas/embriología , Gónadas/metabolismo , Masculino , ARN Mensajero/genética , ARN Mensajero/metabolismo , Razón de Masculinidad , Estados Unidos
11.
Gen Comp Endocrinol ; 238: 23-31, 2016 11 01.
Artículo en Inglés | MEDLINE | ID: mdl-27013381

RESUMEN

Dr. Louis J. Guillette Jr. thought of himself as a reproductive biologist. However, his interest in reproductive biology transcended organ systems, life history stages, species, and environmental contexts. His integrative and collaborative nature led to diverse and fascinating research projects conducted all over the world. He doesn't leave us with a single legacy. Instead, he entrusts us with several. The purpose of this review is to highlight those legacies, in both breadth and diversity, and to illustrate Dr. Guillette's grand contributions to the field of reproductive biology. He has challenged the field to reconsider how we think about our data, championed development of novel and innovative techniques to measure endocrine function, helped define the field of endocrine disruption, and lead projects to characterize new endocrine disrupting chemicals. He significantly influenced our understanding of evolution, and took bold and important steps to translate all that he has learned into advances in human reproductive health. We hope that after reading this manuscript our audience will appreciate and continue Dr. Guillette's practice of open-minded and passionate collaboration to understand the basic mechanisms driving reproductive physiology and to ultimately apply those findings to protect and improve wildlife and human health.


Asunto(s)
Caimanes y Cocodrilos/metabolismo , Reproducción/fisiología , Xenobióticos/metabolismo , Animales , Evolución Biológica , Disruptores Endocrinos/toxicidad , Reproducción/efectos de los fármacos , Investigación Biomédica Traslacional
12.
Gen Comp Endocrinol ; 226: 5-13, 2016 Jan 15.
Artículo en Inglés | MEDLINE | ID: mdl-26684734

RESUMEN

The American alligator, generally a freshwater species, is known to forage in marine environments despite the lack of a salt secreting gland found in other crocodylids. Estuarine and marine foraging could lead to increased dietary uptake of iodine, a nutrient necessary for the production of thyroid hormones. To explore the influence of dietary iodine on thyroid hormone health of coastal dwelling alligators, we described the seasonal plasma thyroxine and triiodothyronine concentrations measured by radioimmunoassay and urinary iodine (UI) concentrations measured by inductively coupled plasma mass spectrometry. We also analyzed long-term dietary patterns through stable isotope analysis of scute tissue. Snout-to-vent length (SVL) was a significant factor among UI and stable isotope analyses. Large adult males greater than 135cm SVL had the highest UI concentrations but did not display seasonality of thyroid hormones. Alligators under 135 SVL exhibited seasonality in thyroid hormones and a positive relationship between UI and triiodothyronine concentrations. Isotopic signatures provided supporting evidence that large males predominantly feed on marine/estuarine prey whereas females showed reliance on freshwater/terrestrial prey supplemented by marine/estuarine prey. UI measurement provided immediate information that correlated to thyroid hormone concentrations whereas stable isotope analysis described long-term dietary patterns. Both techniques demonstrate that adult alligators in coastal environments are utilizing estuarine/marine habitats, which could alter thyroid hormone physiology.


Asunto(s)
Caimanes y Cocodrilos/metabolismo , Dieta , Ecosistema , Yodo/orina , Tiroxina/sangre , Triyodotironina/sangre , Caimanes y Cocodrilos/sangre , Caimanes y Cocodrilos/orina , Animales , Femenino , Agua Dulce , Masculino , Pruebas de Función de la Tiroides , Glándula Tiroides/fisiología , Estados Unidos
13.
Chemosphere ; 139: 223-8, 2015 Nov.
Artículo en Inglés | MEDLINE | ID: mdl-26134675

RESUMEN

Nonylphenol (NP) is a non-ionic surfactant used extensively in industrial applications, personal care products, and many plastics. We exposed marine orchid dottybacks (Pseudochromis fridmani) for 48h to either glass, Teflon, or two bags labeled as FDA food-grade polyethylene (PE1 and PE2) from different manufacturers. The PE2 bags leached high levels of NP into the contact water, which were taken up by the fish, and decreased short and long-term survival. Concentrations of NP that leached from the bags were consistent with 96h LC50 values determined in this study, indicating NP is the likely toxic agent. Despite being similarly labeled, the NP concentrations that leached from the bags and the resultant toxicity to the fish varied dramatically between manufacturers. This study highlights that some plastics, labeled as food-safe, can be highly toxic to aquatic animals, and could pose a greater threat to humans than previously realized. This study also highlights risks for aquatic animals exposed to increasing quantities of plastic waste.


Asunto(s)
Peces , Fenoles , Plásticos/química , Tensoactivos , Contaminantes Químicos del Agua , Animales , Arrecifes de Coral , Fenoles/química , Fenoles/toxicidad , Tensoactivos/química , Tensoactivos/toxicidad , Contaminantes Químicos del Agua/química , Contaminantes Químicos del Agua/toxicidad
14.
Reproduction ; 147(6): 855-63, 2014 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-24608737

RESUMEN

Comparatively, little data are available detailing the geographic variation that exists in the reproductive endocrinology of adult alligators, especially those living in barrier islands. The Merritt Island National Wildlife Refuge (MI) is a unique barrier island environment and home to the Kennedy Space Center (FL, USA). Seasonal patterns of sex steroids were assessed in adult female American alligators from MI monthly from 2008 to 2009, with additional samples collected at more random intervals in 2006, 2007, and 2010. Plasma 17ß-estradiol and vitellogenin concentrations peaked in April, coincident with courtship and mating, and showed patterns similar to those observed in adult female alligators in other regions. Plasma concentrations of progesterone, however, showed patterns distinctly different than those reported for alligator populations in other regions and remained relatively constant throughout the year. Plasma DHEA peaked in July around the time of oviposition, decreased in August, and then remained constant for the remaining months, except for a moderate increase in October. Circulating concentrations of DHEA have not been previously assessed in a female crocodilian, and plasma concentrations coincident with reproductive activity suggest a reproductive and/or behavioral role. Interestingly, plasma testosterone concentrations peaked in May of 2008, as has been shown in female alligator populations in other regions, but showed no peak in 2009, demonstrating dramatic variability from year to year. Surveys showed 2009 to be particularly depauperate of alligator nests in MI, and it is possible that testosterone could serve as a strong indicator of breeding success.


Asunto(s)
Caimanes y Cocodrilos/sangre , Hormonas/sangre , Periodicidad , Reproducción , Animales , Cortejo , Deshidroepiandrosterona/sangre , Estradiol/sangre , Femenino , Florida , Oviposición , Progesterona/sangre , Estaciones del Año , Conducta Sexual Animal , Testosterona/sangre , Factores de Tiempo , Vitelogeninas/sangre
15.
Gen Comp Endocrinol ; 186: 50-7, 2013 Jun 01.
Artículo en Inglés | MEDLINE | ID: mdl-23458289

RESUMEN

Endocrine properties of extraembryonic membranes have traditionally been viewed as a characteristic of placental amniotes. However, our laboratory recently demonstrated that this ability extends to the extraembryonic membranes of two oviparous amniotes (chicken and alligator) indicating that endocrine extraembryonic membranes are not an innovation of placental amniotes and suggesting that this could be a shared amniote characteristic. In this study, we test our hypothesis that the chorioallantoic membrane (CAM) obtained from non-archosaurian obligate oviparous amniotes such as turtles, have the potential for steroid hormone activity. To investigate synthesis of a major placental hormone, we performed explant culture and found that the turtle CAM synthesizes progesterone in vitro in the presence of a steroid precursor. In addition, to examine whether the CAM has the ability to respond to steroid signaling, we quantified mRNA expression of the progesterone, androgen, and two estrogen receptors. Finally, to determine if steroid receptor mRNA is translated to protein, we performed immunolocalization of the progesterone receptor. Our data demonstrate that the turtle CAM exhibits steroid synthesis and has steroid hormone signaling capabilities. To that end, steroid hormone activity has now been demonstrated in the CAMs of three oviparous species that represent three independent lineages within oviparous Reptilia that have never exhibited viviparity; thus these data support our hypothesis that endocrine activity of extraembryonic membranes is a conserved trait of Amniota.


Asunto(s)
Membrana Corioalantoides/metabolismo , Esteroides/metabolismo , Animales , Inmunohistoquímica , Progesterona/metabolismo , Radioinmunoensayo , Receptores Androgénicos/genética , Receptores Androgénicos/metabolismo , Receptores de Estrógenos/genética , Receptores de Estrógenos/metabolismo , Receptores de Progesterona/genética , Receptores de Progesterona/metabolismo , Reacción en Cadena de la Polimerasa de Transcriptasa Inversa , Tortugas
16.
Birth Defects Res C Embryo Today ; 96(4): 289-98, 2012 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-24203918

RESUMEN

Our awareness of the causes of stress-induced developmental dysfunction has increased dramatically over the past decade, and it is becoming increasingly clear that a number of factors can have considerable impacts on the developing fetus. Although there is a tendency in investigations of developmental teratogens to attribute specific causes to adverse fetal outcomes, it is important we recognize that for most developmental dysfunctions it is unlikely a single cause, but yet a series of environmental insults combined with genetic predisposition that ultimately leads to a disease state. Nonetheless, a number of developmental teratogens, such as maternal psychological stress and chemical exposures, have been shown to increase the likelihood of developmental defects. These defects can manifest during development, leading to observable birth defects, or could become evident long after birth, even into adulthood. In addition, epigenetic mutations in the germline can alter the phenotype of successive generations through transgenerational inheritance, and in this way environmental factors can alter the developmental outcomes and disease predispositions of future generations. Understanding this complexity is essential to interpretations of causality in the studies of stress-induced developmental dysfunction and needs to be fully considered to more effectively interpret potential outcomes.


Asunto(s)
Discapacidades del Desarrollo/etiología , Exposición a Riesgos Ambientales/efectos adversos , Efectos Tardíos de la Exposición Prenatal/etiología , Estrés Fisiológico , Epigénesis Genética , Femenino , Predisposición Genética a la Enfermedad/etiología , Humanos , Madres/psicología , Embarazo , Estrés Psicológico , Teratógenos/toxicidad
17.
Mol Cell Endocrinol ; 354(1-2): 111-20, 2012 May 06.
Artículo en Inglés | MEDLINE | ID: mdl-22061623

RESUMEN

Developing organisms interpret and integrate environmental signals to produce adaptive phenotypes that are prospectively suited for probable demands in later life. This plasticity can be disrupted when embryos are impacted by exogenous contaminants, such as environmental pollutants, producing potentially deleterious and long-lasting mismatches between phenotype and the future environment. We investigated the ability for in ovo environmental contaminant exposure to alter the growth trajectory and ovarian function of alligators at five months after hatching. Alligators collected as eggs from polluted Lake Apopka, FL, hatched with smaller body masses but grew faster during the first five months after hatching, as compared to reference-site alligators. Further, ovaries from Lake Apopka alligators displayed lower basal expression levels of inhibin beta A mRNA as well as decreased responsiveness of aromatase and follistatin mRNA expression levels to treatment with follicle stimulating hormone. We posit that these differences predispose these animals to increased risks of disease and reproductive dysfunction at adulthood.


Asunto(s)
Caimanes y Cocodrilos/crecimiento & desarrollo , Exposición a Riesgos Ambientales , Regulación de la Expresión Génica , Ovario/crecimiento & desarrollo , Activinas/genética , Activinas/metabolismo , Caimanes y Cocodrilos/anatomía & histología , Animales , Vías Biosintéticas/genética , Peso Corporal , Sistema Enzimático del Citocromo P-450/genética , Sistema Enzimático del Citocromo P-450/metabolismo , Estradiol/sangre , Femenino , Hormona Folículo Estimulante/farmacología , Hormona Folículo Estimulante/fisiología , Genitales Femeninos/efectos de los fármacos , Genitales Femeninos/crecimiento & desarrollo , Genitales Femeninos/metabolismo , Ovario/efectos de los fármacos , Ovario/metabolismo , Receptores de Esteroides/genética , Receptores de Esteroides/metabolismo , Testosterona/sangre , Transcripción Genética
18.
Gen Comp Endocrinol ; 175(2): 251-8, 2012 Jan 15.
Artículo en Inglés | MEDLINE | ID: mdl-22154572

RESUMEN

Oviducts respond to hormonal cues from ovaries with tissue proliferation and differentiation in preparation of transporting and fostering gametes. These responses produce oviducal microenvironments conducive to reproductive success. Here, we investigated changes in circulating plasma sex steroid hormones concentrations and ovarian and oviducal mRNA expression to an in vivo gonadotropin (FSH) challenge in sexually immature, five-month-old alligators. Further, we investigated differences in these observed responses between alligators hatched from eggs collected at a heavily-polluted (Lake Apopka, FL) and minimally-polluted (Lake Woodruff, FL) site. In oviducts, we measured mRNA expression of estrogen, progesterone, and androgen receptors and also beta A and B subunits which homo- or heterodimerize to produce the transforming growth factor activin. In comparison, minimal inhibin alpha subunit mRNA expression suggests that these oviducts produce a primarily activin-dominated signaling milieu. Ovaries responded to a five-day FSH challenge with increased expression of steroidogenic enzyme mRNA which was concomitant with increased circulating sex steroid hormone concentrations. Oviducts in the FSH-challenged Lake Woodruff alligators increased mRNA expression of progesterone and androgen receptors, proliferating cell nuclear antigen, and the activin signaling antagonist follistatin. In contrast, Lake Apopka alligators displayed a diminished increase in ovarian CYP19A1 aromatase expression and no increase in oviducal AR expression, as compared to those observed in Lake Woodruff alligators. These results demonstrate that five-month-old female alligators display an endocrine-responsive ovarian-oviducal axis and environmental pollution exposure may alter these physiological responses.


Asunto(s)
Caimanes y Cocodrilos/metabolismo , Gonadotropinas/farmacología , Oviductos/metabolismo , ARN Mensajero/metabolismo , Receptores de Esteroides/metabolismo , Activinas/metabolismo , Activinas/fisiología , Caimanes y Cocodrilos/genética , Animales , Aromatasa/metabolismo , Exposición a Riesgos Ambientales , Contaminación Ambiental , Femenino , Hormona Folículo Estimulante/farmacología , Folistatina/metabolismo , Expresión Génica/efectos de los fármacos , Ovario/efectos de los fármacos , Oviductos/efectos de los fármacos , Antígeno Nuclear de Célula en Proliferación/metabolismo , Receptores Androgénicos/genética , Receptores Androgénicos/metabolismo , Receptores de Estrógenos/genética , Receptores de Estrógenos/metabolismo , Receptores de Progesterona/genética , Receptores de Progesterona/metabolismo , Receptores de Esteroides/genética , Transducción de Señal
19.
Gen Comp Endocrinol ; 174(3): 362-9, 2011 Dec 01.
Artículo en Inglés | MEDLINE | ID: mdl-21986089

RESUMEN

Thyroid hormones, essential for normal growth and health, are associated with changes in temperature, photoperiod, and reproduction. Iodide, a necessary element for thyroid hormone production, varies in diet, and is more abundant in estuarine environments, which could alter thyroid hormone variation. However, associations between thyroid hormone concentrations in animals from marine versus freshwater environments, which could become more pertinent with rising sea levels associated with global climate change, are not well studied. To determine the importance of dietary iodide in seasonal variation of plasma thyroid hormone concentrations, we analyzed seasonal variation of plasma thyroxine (T(4)) and triiodothyronine (T(3)) concentrations in juvenile alligators from an estuarine habitat (Merritt Island National Wildlife Refuge; MI) and a freshwater habitat (Lake Woodruff National Wildlife Refuge; LW) and compared these results to plasma inorganic iodide (PII) concentrations. Alligators from MI did not display seasonal variation in plasma T(4), but exhibited a seasonal pattern in plasma T(3) concentrations similar to alligators from LW. Plasma thyroid hormone concentrations were consistently higher at MI than at LW. PII concentrations were correlated with plasma T(4) and T(3) concentrations in juvenile alligators from LW but not MI. The data on plasma T(4) and T(3) concentrations suggest altered iodide metabolism in estuarine alligators. Differences in thyroid hormone concentrations between the populations could be due to differences in dietary iodide, which need to be further evaluated.


Asunto(s)
Caimanes y Cocodrilos/sangre , Ecosistema , Yodo/sangre , Hormonas Tiroideas/sangre , Animales , Análisis Químico de la Sangre/métodos , Femenino , Florida , Agua Dulce , Yodo/análisis , Masculino , Espectrometría de Masas , Concentración Osmolar , Población , Estaciones del Año , Agua de Mar , Hormonas Tiroideas/análisis , Estudios de Validación como Asunto
20.
J Aquat Anim Health ; 23(2): 92-9, 2011 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-21834332

RESUMEN

Elasmobranch susceptibility to goiter formation in captive environments has been well documented. Until recently, most public aquariums operated under the belief that the etiology of goiter in elasmobranchs was nutritional and specifically caused by insufficient dietary iodine. Recent studies have demonstrated that high environmental nitrate (NO3-N) inhibits the ability of the thyroid gland to utilize available iodide, resulting in thyroid gland overstimulation by thyroid stimulating hormone and ultimately leading to the development of goiter. The objective of this study was to evaluate the effects of high environmental nitrate concentrations on thyroid function in juvenile whitespotted bamboo sharks Chiloscyllium plagiosum. In July 2008, five juveniles (80-150 g) were exposed to a low-nitrate environment (NO3-N concentration < 1 mg/L of water) and five were exposed to an elevated-nitrate environment (NO3-N = 70 mg/L) for 29 d in a flow-through natural seawater system. Nitrate exposure did not affect growth rates (e.g., weight, length, and condition factor) and did not alter free plasma thyroxine concentrations during the 29-d experimental period. However, histological examination of thyroid glands from sharks exposed to elevated nitrate revealed the development of diffuse hyperplastic goiter. With increasing restrictions on water use, most modern aquaria operate as recirculating systems, which results in higher and more chronic nitrate exposure for captive animals. Goiter is one of the most common health problems in captive elasmobranchs, and this study suggests that nitrate exposure is an important factor in the etiology of this disease.


Asunto(s)
Enfermedades de los Peces/inducido químicamente , Bocio/veterinaria , Nitratos/toxicidad , Tiburones , Crianza de Animales Domésticos , Animales , Enfermedades de los Peces/sangre , Bocio/inducido químicamente , Masculino , Tiroxina/sangre
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