Ultrastructural and formaldehyde-fluorescence studies on the hypothalamus of Poecilia latipinna (Teleostei, Cyprinodontiformes).
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Senescence is age-related decline that may carry over to subsequent generations. Advanced parental age can both improve or reduce offspring fitness, however. Identification of mechanisms of parental effects senescence thus proved challenging so far. We investigated the effects of old parental age on offspring performance in a laboratory short-lived fish, Nothobranchius furzeri (Cyprinodontiformes). We followed age-related changes in parents and then focused on the effect of parental age on key offspring life-history traits (embryonic survival, hatching rate and juvenile growth). We employed telomere length as a senescence marker and a potential route for transmitting senescence effects from parents to the offspring. As parents aged, their body condition, reproductive output, and telomere length declined. Offspring of older parents showed lower survival and hatching rate. In contrast, old parental age did not compromise juvenile growth and telomere length of the successfully hatched offspring. This, among other things, resulted in decoupling of parent-offspring telomere length. Our study highlights the sensitivity of the early life-stages to old parental age in contrast to offspring post-hatching performance.
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The toxicity syndrome of toxaphene to G. affinis was divided into 5 stages, and the residue level at each stage was determined. By the time fish were exhibiting the first toxicity response (stage 2), 90.3% of the mean fatal residue level had been sorbed. Regression analysis indicated that sorption of toxaphene is a linear function with respect to time. Excretion was not observed following an 8 hour exposure to 2ppm toxaphene. Metabolic alteration of toxaphene during the experiments appeared to be minimal. Differences in individual mortality appeared to be due to differences in uptake rather than differences in ability to tolerate particular body loads of toxaphene.
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Radiolabeled benzo-((alpha)-pyrene, benzidine, and vinyl chloride were evaluated in laboratory model ecosystems for environmental fate, degradation pathways, bioconcentration, and food chain accumulation. The comparative effects of microsomal detoxications were evaluated using the inhibitor piperonyl butoxide. The accumulation and bioconcentration of benzo-(alpha)-pyrene and benzidine were closely correlated with their octanol/water partition coefficients and water solubility. Benzo-(alpha)-pyrene as predicted by these parameters was bioaccumulated to substantial levels in several organisms. Vinyl chloride was not accumulated because of its high volatility.
The livers from a naturally occurring insecticide-resistant mosquitofish population were examined cytologically and compared to liver preparations from a susceptible population. There was a marked increase in cell size and lipid inclusions in the hepatocytes of resistant mosquitofish as compared to susceptible mosquitofish. The pronounced lipid inclusions in the liver preparations of resistant mosquitofish remained essentially unchanged in mosquitofish starved for up to 2 weeks. No observable differences were noted in any cellular organelles.
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1. Muscle esterases of Gambusia affinis were separable into 14 electrophoretic bands that formed five groups according to differential physical and chemical properties. 2. Nine phenotypic patterns were observed among the populations sampled, based on variation within the EST-3 group of carboxylesterases. 3. A model for the molecular and genetic bases of the EST-3 polymorphism was proposed on the basis of phenotypic patterns and physicochemical characterization. 4. The isozymes of EST-3 are inferred to be dimeric molecules on the basis of electrophoretic patterns observed following incubation of the EST-3 enzymes with neuraminidase. 5. The binding of sialic acid is believed to be an epigenetic mechanism which operates to maintain the structural integrity of these enzymes.
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Variations in gene expression are essential for the evolution of novel phenotypes and for speciation. Studying allelic specific gene expression (ASGE) within interspecies hybrids provides a unique opportunity to reveal underlying mechanisms of genetic variation. Using Xiphophorus interspecies hybrid fishes and high-throughput next generation sequencing technology, we were able to assess variations between two closely related vertebrate species, Xiphophorus maculatus and Xiphophorus couchianus, and their F(1) interspecies hybrids. We constructed transcriptome-wide SNP polymorphism sets between two highly inbred X. maculatus lines (JP 163 A and B), and between X. maculatus and a second species, X. couchianus. The X. maculatus JP 163 A and B parental lines have been separated in the laboratory for ≈70 years and we were able to identify SNPs at a resolution of 1 SNP per 49 kb of transcriptome. In contrast, SNP polymorphisms between X. couchianus and X. maculatus species, which diverged ≈5-10 million years ago, were identified about every 700 bp. Using 6524 transcripts with identified SNPs between the two parental species (X. maculatus and X. couchianus), we mapped RNA-seq reads to determine ASGE within F(1) interspecies hybrids. We developed an in silico X. couchianus transcriptome by replacing 90,788 SNP bases for X. maculatus transcriptome with the consensus X. couchianus SNP bases and provide evidence that this procedure overcomes read mapping biases. Employment of the in silico reference transcriptome and tolerating 5 mismatches during read mapping allow direct assessment of ASGE in the F(1) interspecies hybrids. Overall, these results show that Xiphophorus is a tractable vertebrate experimental model to investigate how genetic variations that occur during speciation may affect gene interactions and the regulation of gene expression.
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