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Overlapping offspring occurs when eggs are laid in a nest containing offspring from earlier reproduction. Earlier studies showed that the parentage is not always obvious due to difficulties in field observation and/or alternative breeding tactics. To unveil the parentage between overlapping offspring and parents is critical in understanding oviposition site selection and the reproductive strategies of parents. Amplectant pairs of an arboreal-breeding frog, Kurixalus eiffingeri, lay eggs in tadpole-occupied nests where offspring of different life stages (embryos and tadpoles) coexist. We used five microsatellite DNA markers to assess the parentage between parents and overlapping offspring. We also tested the hypothesis that the male or female frog would breed in the same breeding site because of the scarcity of nest sites. Results showed varied parentage patterns, which may differ from the phenomenon of overlapping egg clutches reported earlier. Parentage analyses showed that only 58 and 25% of the tadpole-occupied stumps were reused by the same male and female respectively, partially confirming our prediction. Re-nesting by the same individual was more common in males than females, which is most likely related to the cost of tadpole feeding and/or feeding schemes of females. On the other hand, results of parentage analyses showed that about 42 and 75% of male and female respectively bred in tadpole-occupied stumps where tadpoles were genetically unrelated. Results of a nest-choice experiment revealed that 40% of frogs chose tadpole-occupied bamboo cups when we presented identical stumps, without or with tadpoles, suggesting that the habitat saturation hypothesis does not fully explain why frogs used the tadpole-occupied stumps. Several possible benefits of overlapping offspring with different life stages were proposed. Our study highlights the importance of integrating molecular data with field observations to better understand the reproductive biology and nest site selection of anuran amphibians.  相似文献   
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Cultures of rete testis epithelial cell-enriched preparations from testes of adult rams have been investigated, and some of their properties have been determined. In monolayers, the cells form mosaic-like borders, and retain many ultrastructural features characteristic of rete epithelial cells in situ, including an indented nucleus with prominent heterochromatin clumps, short rod-shaped or round mitochondria that are easily distinguished from the elongated mitochondria of Sertoli cells, the presence of desmosomes, and few if any lipid droplets or vacuoles. Unlike Sertoli cell-enriched aggregates in culture, rete testis epithelial cell preparations do not form cytoplasmic extensions, and no associated germ cells are present. Rete cells in culture express cytokeratin and vimentin in the cytoskeleton, whereas Sertoli cells prepared from testes of adult rams contain vimentin but not cytokeratin. Both rete cells and Sertoli cells stain positively for laminin but not for fibronectin, Collagen Type I, or Collagen Type III. The rete cells synthesize and secrete several proteins into the culture medium, evident in gel electrophoresis patterns of radiolabeled proteins. This pattern is similar, but not identical, to that secreted by Sertoli cell-enriched preparations. Rete cells in culture in the presence of serum continue to undergo mitotic division, but Sertoli cells do not. A variety of criteria were employed to estimate the relative numbers of Sertoli cells present in the rete testis epithelial cell-enriched preparations from testes of adult rams, including morphological and ultrastructural differences between the two cell types, and the presence of desmosomal proteins and cytokeratin in rete cells but not in Sertoli cells. The relative number of fibroblast-like cells was determined by measuring the expression of fibronectin and Collagen Type I, and an immunocytochemical probe for the detection of Factor VIII was used to estimate the degree of contamination by vascular endothelial cells. Using these markers, we determined that the rete testis epithelial cell-enriched preparations were about 93% pure. Primary cultures under defined conditions contained relatively few Sertoli cells (0.4%), but were contaminated to a larger extent by fibroblast-like cells (approximately 4%) and by endothelial cells (about 3%). The possible functions of rete testis epithelial cells are discussed herein.  相似文献   
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By using an improved hybridoma technique with a semisolid medium of methylcellulose for initial cloning, numerous high affinity monoclonal antibodies against human thyroid stimulating hormone (TSH) were generated. These antibodies were characterized with respect to their subunit and epitope specificity. Epitope analysis of antibodies specific to the beta-subunit of TSH was performed by a sandwich pairing procedure. Based on the results of this analysis, it was concluded that there are four distinct TSH-specific epitopes on the beta-subunit of TSH; these are designated a, b, c, and ab. The five antibodies binding to epitopes a, b, and c are not mutually exclusive. However, the antibody binding to epitope ab prevents further binding of other antibodies to epitope a or b, but not to epitope c. This epitope analysis enabled us to combine three high affinity monoclonal antibodies, each of which reacts with epitopes a, b, and c, respectively, in a typical sandwich enzyme immunoassay. One was immobilized on polystyrene beads and the other two were conjugated with horseradish peroxidase and served as the second antibodies. This enzyme immunoassay can be performed within 90 min and with a minimum sensitivity of 0.2-0.3 microIU/ml.  相似文献   
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Previous studies showed that sperm auto- and alloantigens participate in guinea pig (GP) fertilization. In an effort to determine how alloantibodies to GP sperm acrosomal contents (AC) inhibit fertilization, we identified acrosomal auto- and alloantigens using Western blots. The predominant autoantigens migrated with Mr = 25,000, Mr = 51,000, and Mr = 55,000 under nonreducing conditions. The primary (Mr = 25,000) acrosomal autoantigen, AA1, was purified to homogeneity from AC by gel filtration, cation-exchange chromatography, chromatofocusing, and a final gel filtration. We also purified AA1 from an acidic glycerol extract of spermatozoa by gel filtration, chromatofocusing, and high-performance liquid chromatography on hydroxylapatite. AA1 is a protein and shares at least one antigenic determinant with a 51,000 Mr acrosomal component. AA1 is acrosome-specific, as determined by immunoabsorption and by indirect immunofluorescence on testicular cells. By quantitative enzyme-linked immunosorbent assay, AA1 comprises 6.4% of acrosomal protein in GP spermatozoa. On the basis of its physiochemical properties and localization, we conclude that AA1 is a unique sperm autoantigen. Surprisingly, several antibody preparations, including allo- and heteroantibodies with high anti-AA1 titers, did not inhibit fertilization in vitro. Thus, the mechanism by which alloantibodies to AC inhibit GP fertilization in vitro is not by binding to AA1.  相似文献   
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