981 resultados para Rete testis
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A leptina tem um papel importante na regulação do sistema reprodutivo além de seu papel principal na regulação do peso corporal e ingestão alimentar. O objetivo deste estudo foi avaliar o efeito da administração de leptina durante o período neonatal na função testicular da prole adulta. Vinte e quatro filhotes de 12 mães foram divididos em 2 grupos: Grupo leptina: injetados com 50 L de leptina (80ng/gPC, subcutânea) nos primeiros 10 dias de vida e Grupo Controle: injetados com o mesmo volume de solução salina. Todos os animais foram sacrificados aos 90 dias de vida. Parâmetros analisados: consumo alimentar, massa corporal, crescimento linear, data de início da puberdade, perfil lipídico, níveis séricos de estradiol e testosterona, expressão gênica (PCR em tempo real) e expressão proteica (Western blot) de ObRa, OBRb, aromatase, AR, ER, morfometria testicular, número, morfologia e viabilidade de espermatozoides. Os dados foram expressos como média erro padrão. A significância estatística foi determinada pelo teste t de Student. A Injeção de leptina levou a uma redução (p≤0,008) no consumo alimentar a partir do dia 26 ao 40 e do dia 70 em diante, enquanto que a massa corporal (p≤0,03) e o crescimento linear (p≤0,05) foram reduzidos do dia 26 até o dia 45. O peso da hipófise (p≤0,0006), hipotálamo (p≤0,01), próstata (p≤0,003), testículo (p≤0,008) e epidídimo (p≤0,004) e bexiga (p≤0,009) foram significativamente reduzidos pela injeção de leptina. A Injeção de leptina adiantou o início da puberdade (C=45,0 0,3; L=41,6 0,3; dias, P≤0,0001). Em relação ao perfil lipídico, a administração de leptina gerou um aumento nos níveis séricos de TG (C= 116,5 15,9; L=172,6 19,7; ng/dL, P≤0,05) e uma redução nos níveis de HDL (C=33 1,5; L = 24 3,5; ng/dL, P≤0,02). Os níveis séricos de testosterona também foram reduzidos pela leptina (C=5,2 1,0; L=1,1 0,3; ng/mL, P≤0,003). Todos os genes avaliados por PCR em tempo real mostraram um aumento na sua expressão: Obra (C=0,32 0,04; L=0,69 0,16; P≤0,04), OBRb (C=0,37 0,06; L=0,71 0,16; P≤0,03), AR (C=0,28 0,02; L=0,71 0,16; P≤0,02), Aromatase (C=0,31 0,04; L=0,53 0,09; P≤0,04), ER-α (C=0,79 0,03; L=0,93 0,03; P≤0,01), ER-β (C=0,29 0,03; L=0,73 0,16; P≤ 0,02). Por outro lado, a expressão proteica de OBR (C=4,4 0,29; L=6,6 0,84; P≤0,05), ER-α (C=0,4 0,02; L=0,6 0,05; P≤0,03) e aromatase (C=0,4 0,03; L=0,5 0,02; P≤0,04) aumentaram, enquanto que a expressão proteica de AR (C=0,16 0,01; L=0,09 0,01; P≤0,009) foi reduzida pela administração de leptina. A análise morfométrica mostrou que a leptina levou a um aumento da área total do túbulo seminífero (C=64,6 3,1; L=56,1 2,1;μm, P≤0,01), aumento da área luminal (C=40,6 2,3; L= 48,7 0,9; μm P≤ 0,004) e na altura do epitélio (C=21,5 1,2; L=24,6 1,1; μm, P≤0,03), enquanto que o comprimento do túbulo seminífero foi reduzido no grupo tratado (C=2200 350; L= 1100 110;cm, P≤0,006). A administração de leptina levou a um aumento no número total de espermatozoides (C=20x107 2x107; L=30x107 5x107;Cls/mL, P≤0,009) e no número de anormalidades (C=40,6 1,9; L=45,8 1,2, P≤0,049). Podemos concluir que a leptina tem um papel importante na morfologia e função testicular. A leptina parece ter efeito direto neste tecido uma vez que a expressão gênica e proteica de OBR, AR, ER e aromatase foram alterados pela administração da leptina.
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Estudos demonstram que o sobrepeso e a obesidade podem afetar a fertilidade masculina. Além disso, a função tireóidea também esta associada à alteração da função testicular, entretanto, o papel fisiológico dos hormônios tireoideanos na regulação do sistema reprodutor masculino ainda não esta claro. Aos 21 dias de idade, ratos machos receberam uma dieta manipulada contendo diferentes concentrações de óleo de soja até a idade de 30 e 60 dias, os grupos controle (C30, n=6 e C60, n=6), receberam dieta contendo 7% e os grupos hiperlipídicos (HL30, n=6 e HL60, n=6), receberam dieta contendo 19% deste óleo. Ao final de cada período, os animais foram avaliados por DXA (Absorciometria de Raios-x em Duas Energias) e sacrificados por exsanguinação. Para avaliar alterações na estrutura dos tecidos testicular e tireóideo, foram realizados a morfologia e a estereologia. No plasma, para determinar os perfis bioquímico e hormonal, foram avaliados, triglicerídeos, colesterol total, HDL-colesterol, VLDL, glicose e albumina, por métodos colorimétricos e leptina, insulina, T4, T3, TSH e testosterona por radioimunoensaio (RIE). Para evidenciar a expressão de receptor androgênico (AR) em testículos, foi realizado imunomarcação, com anti-AR. Durante todo o período experimental, foram analisados a massa corporal, a ingestão alimentar e o comprimento corporal, os quais permaneceram inalterados. No grupo HL, a massa magra foi menor aos 30 dias, já a gordura corporal total foi maior no mesmo grupo, aos 60 dias nenhuma diferença foi notada entre os grupos. No grupo HL30 não houve diferença quanto à massa dos tecidos, já no grupo HL60, o peso do epidídimo, fígado e gordura visceral mantiveram-se aumentados. No grupo HL30 não houve diferença em relação ao perfil bioquímico, já no grupo HL60, os níveis de glicose, mantiveram-se altos. Quanto às dosagens hormonais no grupo HL30, TSH e leptina estiveram aumentados e T3 reduzido, e no grupo HL60, T3 e leptina estiveram aumentados. Os dados morfométricos e estereológicos de testículo no grupo HL30 mostram aumento no número de túbulos seminíferos e da densidade de comprimento (Lv), já no grupo HL60, há redução no número de túbulos seminíferos e no diâmetro do mesmo. Quanto à expressão de receptor androgênico nas células testiculares, não parece haver diferença entre os grupos independente da idade de consumo da dieta. A dieta hiperlipídica promoveu alterações metabólicas aos 30 dias e modificações na morfologia do tecido tireoidiano e testicular em ambas as idades, o que indica reflexos na função reprodutora.
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Torção testicular (TT) é uma síndrome urológica comumente encontrada em recém nascidos, crianças e adolescentes. Neste trabalho foi estudada as lesões morfológicas e a função reprodutiva em ratos adultos que sofreram TT, em diferentes idades de maturidade sexual e o efeito protetor da L-arginina, contra os danos causados pela isquemia/reperfusão na torção testicular. Dezoito ratos pré-púberes (4 semanas de vida) dezessete púberes (6 semanas de vida) e dezessete adultos (9 semanas de vida) foram submetidos à TT. Sob anestesia o testículo direito foi rotacionado em 720 e fixado, sendo então destorcido após 4 horas. Vinte e quatro ratos (ARG4, n=8, ARG6, n=8 e ARG9 n=8) foram submetidos ao tratamento com 650mg/kg de L-arginina, por via oral, durante 7 dias. Outros trinta ratos de mesma idade sofreram cirurgia simulada (SH4, n=10, SH6, n=10 e SH9, n=10). Com 12 semanas de idade, foram submetidos ao acasalamento controlado com 3 fêmeas e ao vigésimo dia de gestação o número de fetos, corpos lúteos, absorções e implatações foram contados. Na 14 semana, os ratos foram mortos e os espermatozóides coletados da cauda dos epidídimos, foi anotado o peso corporal, o peso e volume testicular. O soro foi usado para dosagem de testosterona. Foram avaliadas a concentração, motilidade e a viabilidade espermática. Os testículos coletados foram fixados em Bouin, pós-fixados em formalina e processados em parafina. Utilizando o programa de imagem Image J, lâminas coradas com HE, mensuramos a altura do epitélio, densidade volumétrica e diâmetro do túbulo seminífero. Para avaliar a integridade do epitélio seminífero foi utilizado a frequência dos estágios do ciclo do epitélio e o escorre de Johnsen. Também foi avaliado a proliferação do compartimento tubular e intertubular, através da imunomarcação com PCNA. Os dados foram tabulados e as médias dos grupos comparadas pelo teste de ANOVA com pós-teste de Bonferroni ou teste de Kruskal-Wallis com pós teste de Dunns (programa Graphpad Prism, com p < 0,05). Os resultados revelaram grandes danos produzidos pela injuria testicular, no testículo ipsilateral, com diminuição da capacidade reprodutiva, da concentração, viabilidade e mobilidade, do peso e volume testicular. Animais TT9 não apresentaram espermatozoides nas amostras coletas. Houve diminuição do diâmetro dos túbulos seminíferos e da altura do epitélio, aumento do compartimento intertubular, com ênfase dos vasos sanguíneos, aumento da proliferação celular estromal e diminuição da proliferação epitelial. Houve diminuição da concentração sérica de testosterona no grupo TT4, quando comparado como grupo TT9. Em geral, os animais submetidos à torção na fase adulta foram os mais acometidos. Não foram encontradas alterações dignas de nota, nos testículo contralaterais. Animais tratados com L-arginina obtiveram melhora dos índices reprodutivos, com aumento da potência em todas as idades. Houve aumento da concentração espermática no testículo contralateral de ARG4 e ARG6, mostrando que a L-arginina atuou como antioxidante. Não houve proteção para as lesões causadas pela torção na maioria dos grupos, mas os animais tratados ARG9 apresentaram concentração espermática mensuravel, quando comparados aos ratos TT9, que tinham azospermia.
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Testis histological structure was studied in bluefin tuna (Thunnus thynnus) from the eastern Atlantic and Mediterranean during the reproductive season (from late April to early June). Testicular maturation was investigated by comparing samples from bluefin tuna caught on their eastward reproductive migration off Barbate (Strait of Gibraltar area) with samples of bluefin tuna fished in spawning grounds around the Balearic Islands. Histological evaluations of cross sections showed that the testis consists of two structurally different regions, an outer proliferative region where germ cells develop synchronously in cysts, and a central region made up of a well-developed system of ducts that convey the spermatozoa produced in the proliferative region to the main sperm duct. Ultrastructural features of the different stages of the male germ cell line are very similar to those described in other teleost species. The bluefin tuna testis is of the unrestricted spermatogonial testicular type, where primary spermatogonia are present all along the germinative portion of the lobules. All stages of spermatogenesis were present in the gonad tissue of migrant and spawning bluefin tuna, although spermatids were more abundant in spawning fish. The testis size was found to increase by a factor of four (on average) during migration to the Mediterranean spawning grounds, whereas the fat bodies (mesenteric lipid stores associated with the gonads) became reduced to half their weight, and the liver mass did not change significantly with sexual maturation. Linear regression analysis of the pooled data of migrant and spawning bluefin tuna revealed a significant negative correlation between the gonad index (IG) and the fat tissue index (IF), and a weaker positive correlation between the gonad index (IG) and the liver index (IL). Our analyses indicate that the liver does not play a significant role in the storage of lipids and that mesenteric lipid reserves constitute an important energy source for gametogenesis in bluefin tuna.
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The reproductive biology of male franciscanas (Pontoporia blainvillei), based on 121 individuals collected in Rio Grande do Sul State, southern Brazil, was studied. Estimates on age, length, and weight at attainment of sexual maturity are presented. Data on the reproductive seasonality and on the relationship between some testicular characteristics and age, size, and maturity status are provided. Sexual maturity was assessed by histological examination of the testes. Seasonality was determined by changes in relative and total testis weight, and in seminiferous tubule diameters. Testis weight, testicular index of maturity, and seminiferous tubule diameters were reliable indicators of sexual maturity, whereas testis length, age, length, and weight of the dolphin were not. Sexual maturity was estimated to be attained at 3.6 years (CI 95% =2.7–4.5) with the DeMaster method and 3.0 years with the logistic equation. Length and weight at attainment of sexual maturity were 128.2 cm (CI 95%=125.3–131.1 cm) and 26.4 kg (CI 95% =24.7–28.1 kg), respectively. It could not be verified that there was any seasonal change in the testis weight and in the seminiferous tubule diameters in mature males. It is suggested that at least some mature males may remain reproductively active throughout the year. The extremely low relative testis weight indicates that sperm competition does not occur in the species. On the other hand, the absence of secondary sexual characteristics, the reversed sexual size dimorphism, and the small number of scars from intrassexual combats in males reinforce the hypothesis that male combats for female reproductive access may be rare for franciscana. It is hypothesized that P. blainvillei form temporary pairs (one male copulating with only one female) during the reproductive period.
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NYD-SP12 is a recently identified spermatogenesis-related gene with a pivotal role in human testis development. In this study, we analyzed between-species divergence and within-species variation of NYD-SP12 in seven representative primate species, four wo
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Background: Genes involved in male reproduction are often the targets of natural and/or sexual selection. SCML1 is a recently identified X-linked gene with preferential expression in testis. To test whether SCML1 is the target of selection in primates, we
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Spermiogenesis is a unique process in mammals during which haploid round spermatids mature into spermatozoa in the testis. Its successful completion is necessary for fertilization and its malfunction is an important cause of male infertility. Here, we report the high-confidence identification of 2116 proteins in mouse haploid germ cells undergoing spermiogenesis: 299 of these were testis-specific and 155 were novel. Analysis of these proteins showed many proteins possibly functioning in unique processes of spermiogenesis. Of the 84 proteins annotated to be involved in vesicle-related events, VAMP4 was shown to be important for acrosome biogenesis by in vivo knockdown experiments. Knockdown of VAMP4 caused defects of acrosomal vesicle fusion and significantly increased head abnormalities in spermatids from testis and sperm from the cauda epididymis. Analysis of chromosomal distribution of the haploid genes showed underrepresentation on the X chromosome and overrepresentation on chromosome 11, which were due to meiotic sex chromosome inactivation and expansion of testis-expressed gene families, respectively. Comparison with transcriptional data showed translational regulation during spermiogenesis. This characterization of proteins involved in spermiogenesis provides an inventory of proteins useful for understanding the mechanisms of male infertility and may provide candidates for drug targets for male contraception and male infertility.
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Studies on reproductive biology and artificial propagation including larval rearing of freshwater mud eel, Monopterus cuchia and spiny eel, Mastacembelus armatus were attempted. The gonadosomatic index (GSI) of mud eel ranged from 0.41 (August) to 5.52 (June) in males and 0.53 (August) to 7.61 (June) in females. In both cases the GSI showed a peak in June. Fecundity ranged from 228 (TL - 396 mm; W - 78g) to 5510 (TL - 865 mm; W - 630 g). In case of spiny eel, the GSI varied from 0.65 (August) to 8.30 (July) in males and 0.70 (August) to 10.46 (July) in females. GSI showed single peak in July. Fecundity ranged from 570 (TL - 240 mm; W - 30 g) to 10870 (TL - 601; W - 350g). Histology of the testes and ovaries of the eels were carried out to investigate the gonadal development stages during the reproductive months (August to November 2003). In case of male M. cuchia, the secondary primordial germ cells, primary spermatogonium, some spermatogonia A and clone of spermatogonium B in testis were observed in September. In October-males different sized lobules having spermatogonia, spermatocytes and spermatids were observed. In the ovary of M. cuchia, polygonal shaped oocytes were seen during September. The oogonia were reduced with dense and irregular shaped during October. Numerous pycnotic cells were visible during November. In male M. armatus numerous broken lobule walls were found in testes during September. In October, abundant primary germ cells, pycnotic nests of degenerating cells, spermatogonia and spermatids were observed. In females, ovaries had distinct yolk vesicles stage and yolk granules stages in August. In September, the follicular cells of the oogonia were ruptured, shrunk forming irregular shaped in October. Oogonia were also shrunk with thin, irregular shaped structure but broken parts of the ruptured follicular cells were scattered in case of M. armatus. Experimental attempts on artificial propagation indicated that both freshwater eels were difficult to breed using inducing agents like pituitary glands (PG) of 10, 20, 50, 100 and 150 mg per kg of body weight. Same doses were used for both sexes with equal sex-ratio. In both cases, brood fish died at higher doses of injection given at 100 and 150 mg PG/kg bodyweight. However, M. cuchia breed naturally in cisterns when provided with water hyacinths and tunnel in muddy bottom. M. cuchia fed with chopped cooked fish attained a mean weight of 18.75 ± 2.3 g and cent percent survival. While in case of M. armatus best growth by weight (12.0 ± 2.48 g) and cent percent survival were achieved using chopped raw fish. Car tyre was observed as best shelter for attaining the mean weight gain 22.53 ± 2.24 g and cent percent survival of M. cuchia. While PVC pipe was found to be the best shelter for M. armatus, where it attained the mean weight of 12.73 ± 1.88 g and cent percent survival.
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This study was carried out to seasonal determination of some morphological characteristics, Seasonal fecundity, Seasonal fluctuations of vertebrate-type steroids and seasonal analysis of gonadal histology in both female and male sexes of freshwater crayfish (Astacus leptodactylus Eschscholtz 1823) in the area of Aras dam Lake. Crayfish were collected respectively in June, August, November (2011) and January (2012). The average length and weight of male crayfish was higher than that of females. %GSI of females fluctuated within an extended range (between 0.6 and 13.5% from June to January). Both of synchronous and asynchronous ovaries were seen in August sampled ovaries; however asynchronous form was higher than another. The annual reproductive cycle of male A. leptodactylus was surveyed by study on the seasonal changes of the external appearance of the testes and vasa deferentia, fluctuations in the gonadosomatic index (GSI%) and the histological analysis of the male reproductive system. Based on the histological differentiation of testis, spermatogenisis devided to 5 separated stages. The findings suggested asynchronous testis in the species A.leptodactylus. The presence of primary spermatophore layer may help keeping spermatozoa alive while the secondary spermatophore layer may produces spermatophore or synthesize of acellular material which forms spermatophre. Pleopodal fecundity was 37.3%lower than ovarian fecundity observed. The significantly higher number of eggs attached to 3rd and 4th pairs of pleopods. The egg number and gonadosomatic index increased with female size while egg weight and egg diameter didn’t increase with female size. Hemolymph levels of 17β-estradiol and progesterone followed a similar fluctuation pattern with % GSI in females, while testosterone didn’t follow the mentioned pattern. The testis of November sampled crayfish presented significantly higher gonadosomatic (%GSI) index (P < 0.05).The most observed gonadosomaticindices were 13.5%(forfemales) and 1.21% (for males, in autumn. Althogh the lowest GSI was (0.50%) formales in spring and (0.26%0 for spent females in January. Testosterone which followed a similar pattern with %GSI in males increased remarkably in November. 17β-estradiol increased strictly in January. The strictly enhancement of the three estroid hormones in January in both male and female sexes could bedue totheir stimulating role in in spermatophre and egg lying in the mating season (In January). Most of the ovaries followed the asynchoronous growth pattern. Also the testes presented asynchoronous growth pattern in autumn.
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The acute toxicity and effects of diazinon on some haematological parameters of kutum (Rutilus frisii kutum, Kamensky, 1901) weighing 613.33 g±157.06 g were studied under static water quality conditions at 15°C ± 2ºC in winter and spring 2009. The effective physical and chemical parameters of water were pH= 7-8.2, dh= 300mg/L (caco3), DO= 7 ppm and T= 15°C±2ºC. The first test was primarily to determine the effects of acute toxicity (LC5096 h) of the agricultural toxicant diazinon (emulsion 60%) on kutum male brood stocks. For this purpose, 4 treatments were used to test toxicity; each treatment was repeated in 3 tanks with 9 fish per treatment and with 180 litres water capacity. After obtaining the final results, the information was analysed statistically with Probit version 1.5 (USEPA, 1985), and we determined the LC10, LC50 and LC90 values at 24 hours, 48 hours, 72 hours and 96 hours; the maximum allowable concentration value (LC5096 h divided by 10) (TRC, 1984); and the degree of toxicity. The second stage of testing consists of four treatments: LC0= 0 as experimental treatment, treatment A with a concentration of LC1= 0.107 mg/L, treatment B with concentration of LC5= 0.157 mg/L, treatment C with concentration of MAC value= 0.04 mg/L. Male brood stocks of kutum were treated with these concentrations for 45 days. Experiments were carried out under static conditions based on the standard TRC, 1984 method over 45 days. Our results show that long-term exposure to diazinon causes a decrease in the erythrocyte count (RBC), haemoglobin (Hb), haematocrit (PCV), mean corpuscular volume (MCV), mean corpuscular haemoglobin (MCH), mean corpuscular haemoglobin concentration (MCHC), leucocyte count (WBC), lymphocyte, testosterone, iron (Fe), sodium (Na), lactate dehydrogenase (LDH), and cholinesterase (CHeS). In addition, diazinon also causes an increase in prolymphocyte, aspartate aminotransferase (AST), cholesterol, alkaline phosphatase (ALP) and adrenaline (P<0.05). There are no significant effects on monocyte, eosinophil, magnesium (Mg), chloride (Cl), glucose (BS), urea (BUN), uric acid (U.A), triglyceride (TG), calcium (Ca), albumin (Alb), total protein (TP), cortisol, noradrenaline and high density lipoprotein (HDL) levels in kutum male brood stocks (P>0.05). Pathology results showed toxin diazinon no effect on average weight and fish body length, the average weight of heart, brain, spleen, liver, kidney and liver index but caueses decrease of gonad weigth and gonad index and also, cause complications of tissue necrosis, vascular congestion, inflammation in the liver, a sharp reduction in the number of glomeruli, necrosis, vascular congestion and haemorage in the kidney, capsule thickening and fibrosis, atrophy, vascular congestion, macrophages release increased, increasing sediment Hemosiderine and thickening of artery walls in the spleen, atrophy, fibrosis and necrosis in testis , vascular congestion, increased distance between the myocardium and fibrous string in heart and neuronal loss, vascular congestion and edema in the brain of kutum male brood stocks.
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Sea cucumbers belong to phylum Echinodermata, order Holothuroidea are an abundant and diverse group of Invertebrates, with over 1400 species occuring from the intertidal to the deepest oceanic trenches. Sea cucumbers are important components of the food chain in temperate and coral reef ecosystems and they play an important role as deposite feeders and suspension feeders. Rapid decline in populations may have serious consequences for the survival of other species that are part of the same complex food web,as the eggs, larve and juveniles constitute an important food source for the other marine species including crustaceans, fish and mollusks. In addition sea cucumbers are often called the earthworms of the sea, because they are responsible for the extensive shifting and mixing of the substrate, and recycling of detrital matter. Sea cucumbers consume and grind sediment and organic material into finer particles , turning over the top layers of sediment in lagoons , reefs and other habitats and allowing the penetration of oxygen. While the taxonomy of the holothurian families is generally well known , the distinction of similar species is difficult. There are relatively few holothurian taxonomist.Most sea cucumber species can be identified by Holothurin taxonomists by using the calcareous skeletal ossicles found in the body wall. In this study , at first a sea cucumber from Kish island in Persian gulf has recognized. Individuals collected from west and east extend far away into north and south of coral reefs by diving. I have checked them morphologically and anatomically.Then with key to the orders of the Holothuroidea, They belong to the Aspidochirotida with key to the families of Aspidochirotida, they were in Stichopodidae families and with key to the genus of Stchopodidae, they were Stichopus. Then ossicles were extracted at National Museum of Natural History, by Dr David Pawson. The ossicles were measured on a transect across a slide prepared from the mid-dorsal region of each specimen.The one we have in the shallow waters of Kish island, is Stichopus hermanni, a massive holothurian, body broad, considerably flattened ventraly ,the dorsal side slightly arched and the lateral sides almost vertical; body wall fairy thick and soft ; mouth subterminal; anus central; tentacles usually 20 in number of length and leaf shaped. Numerous ossicles consisting of table with large discs having usually 7 to 15 peripheral holes, but often irregular or incomplete and spire of moderate height ending in a group of spinelets, rosettes of variable development, and c-shaped rods. Color (exept papillae)partly remained after preservation in alcohol which is found at the depth of 4 to 8 meters, on coral reef. Furthermore, the sexual reproductive cycle was described using standard methods. Gonads were removed and transferred to Bouin's fixative for four weeks and then processed according to standard embedding technique. To prevent the loss of tubule contents during embedding, the tubule sections, were cut well beyond the segment selected for sectioning. For each individual, six sections, each section with 5µm diameter by microtome were cut from tubules. These sections were first placed on gelatin coated slides (the gelatin was heated to 42°c) and then transferred to the oven at 37°c for one hour. This technique usually prevents the fragil tubules from breaking and the loss of gametes. The slides were stained with Eosin and Hematoxylin, and good resolution of the various cell types achieved.A second series of slides was stained with the Periodic Acid Schiff(PAS) to identify polysaccharides(glycogen). Monthly sampling was occurred.The sexual reproductive cycle was defined through the combined use of these criteria: Monthly percentages of the gonad stages for each sex, the monthly gonad index (GI) , given as the ratio of the wet gonad weight (G) to the dray weight (DW)and the monthly percentage of individuals that undetermined sex. The gonad consists of two tufts of tubules on which saccules develop. Gonadal development was classified into five stages: post spawning, recovery, growth, advanced growth, and mature stage that were adapted from the earlier studies of holothurians. Histological preparations showed that the sex of larger individuals could be identified by the presence of oogonia and young oocytes in females, and spermatogonic stages in males.The mean diameter of the tubules and gonadal mass follow annual cycles, increasing from late winter through spring, and dropping abruptly after spawning in the summer. Gametogenesis is generally a prolongate process and begins in March. By summer the ovarian tubules contain oocytes with diameter of 120-240 pm and the testicular tubules contain an abundance of spermatozoa (diameter 5-6 gm ).Following spawning the predominant activity within the spent tubules is phagocytosis of the residual gamets.The active phase of gametogenesis (March to July), coincides with an increasing photoperiod regim, and an accelerated gametogenesis occurs in July when temperature is high. Throughout the year, the gonad of Stichopus hermanni is larger in males than in females, and this is due to the number of tubules in the testis rather than to tubules length or diameter.
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The ribbon fishes ‘of the family Trichiuridac are represented as one of the most important food resources in Indian ocean. High density of the dominant species of ribbon fish (Trichiurus lepturus) in Oman sea and the 'Tillable catch in last yeas (more than 7000 tones per year) makes a trust area for studing their population biolog and stock assessment. As our knowledge on reproductive biology of this species has an important role on their fisheries management, as well as conservation of this stock from decline or over fishing, this research was held to determine some aspects of reproductive physiology of ribbon fish and the effects of environmental factors in gonadal cycle. The goals of the present thesis is to determine some aspects of reproductive physiology such as gonadosomatic index (GSI) , hepatosomatic index (HSI), condition factor (Ko, fecundity, sex ratio, size at first maturity, size at maturity (LM5O) and their relative hormonal & biochemical fluctuations. In this regards annual variation of sex hormones ic. estradiol 17-B, progestron, cortisol, testostrone and gonadotropins FSH (GTH-I) , LH (GTH-ll)I were measured ; gonadal histological studies were done by light & electron micrography. The research was carried out from April 1995 to January 19% in Ras Nleidani in the north part of Oman sea, and the environmental factors such as temperature, salinity, oxygen, rainfall and pH were measured. The effects of these parameters on reproductive cycle and hormonal fluctuationswere discussed by using correlation and principle component analysis (PCA). Female Ribbon fish reproductive strategy shows the same paterns of nonguarder marine teleosts. T. lepturus has more than one spawning season (existance of egges in different size in each month) and therfore it must have asynchronous ovaries and belong to continious spawners. GSI and HSI are good evidences for this type of reproductive patern. The testis of the lobular type , which is typical of most teleosts , is composed of numerous lobules which are separated from each other by a thin layer of fibrous connective tissue. GSI fluctuations revealed prolong- spawning time in males. There is significant increase in 17-13 estradiol. progestrone , cortisol and gonadotropins with maturity and prespawning period of female T lepturus. Plasma concentration of E2 and GTH II incresaed along with water temperature increasing (3300).. Spawning was observed from Nov. 1995 to Apr. 1996 in this species. Progestrone increased significantly with increasing rainfall in this season (P<0.01). Plasma cortisol levels increased with maturation and vitelpgenesis and also with the peak of spawning. From lenght-weight frequency and size distribution in each age groups and also minimum size at first maturity (52a cm) it would he concluded that T. lepturus must be matured at 2 years of age. Serum cholestrol and triglicerides significantly increased when maturation occured in this species. The relationship between alkaline phosphatase activity and hormonal fluctuations with maturity and vitelogenesis were discussed. Proximate compostion (muscle) shows significant variation with spawning period and maturity. Absolute individual fecundity (17420-159150) increased with body length and weight. Ultrastructural observations show dramatic variation in cell membrane (0ocyte membrane), yolk vesicles and, nucleolus dispersal in relation to maturity stages. fluctuations of gonadal hormones were discused in relation with vitelogenesis. Testosterone increased in males from Nov: to Mar. due to environmental impacts and spawning time. Sex ratio in different depth (10-40 m ,80-110 m) shows significnt differences in this ratio for two depths. In 10-40 m depth female shows dominant abundance to male in each months that may be due to their reproductive migration behaviour. The effects of temperature photoperiod and rainfall to maturity and spawning were discussed. According to -pawning period of T. leptunts in our sampling area it could be suggested that ribbon fish fi,theries must be restricted in the peak of spawning seasons (Feb. to Mar.) and in the spawning grounds (under 40 m depths). Other suggestions for population conservation have been mentioned.
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Ab levels in the genital tract may be important in fertility and in preventing sexually transmitted diseases, In this study, I-125-labeled polymer or monomer mAb IgA (C4pIgA or C4mIgA) and IgC2b (C4IgC) to murine lactate dehydrogenase C4 and a polymer mAb IgA (npIgA) not cross-reacting with mouse sperm were intravenously injected into BALB/c mice, and the relative distribution of these Abs was determined. Polymer IgA was transported much more efficiently into the genital tract, trachea, and duodenum of both sexes than C4IgG and C4 mIgA (p < 0.01), The transport of polymer IgA (C4pIgA and npIgA) into the male genital tract greatly increased following orchiectomy (p < 0.01); this change was not affected by testosterone, suggesting that the unknown regulatory factor(s) from the testis may suppress polymer IgA transport, However, the transport of polymer IgA into female genital tissues was significantly decreased by ovariectomy (p < 0.01); this decline can be rectified by P-estradiol but not progesterone treatment, suggesting that estradiol may stimulate polymer IgA transport, Furthermore, the transport of C4IgG into tissues of the Fallopian tubes and the uterus was significantly decreased by treatment with progesterone (p < 0.01). Together, these findings indicate that serum polymer IgA can be transported selectively into the genital tracts of both sexes, that this transport is strongly under the control of gonads, and that transport of Ige into the Fallopian tubes and uterus is downregulated by progesterone.
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We have cloned a mouse homologue (designated Myak) of the yeast protein kinase YAK1. The 1210 aa open reading frame contains a putative protein kinase domain, nuclear localization sequences and PEST sequences. Myak appears to be a member of a growing family of YAK1-related genes that include Drosophila and human Minibrain as well as a recently identified rat gene ANPK that encode a steroid hormone receptor interacting protein. RNA blot analysis revealed that Myak is expressed at low levels ubiquitously but at high levels in reproductive tissues, including testis, epididymis, ovary, uterus, and mammary gland, as well as in brain and kidney. In situ hybridization analysis on selected tissues revealed that Myak is particularly abundant in the hormonally modulated epithelia of the epididymis, mammary gland, and uterus, in round spermatids in the testis, and in the corpora lutea in the ovary, Myak is also highly expressed in the aqueduct of the adult brain and in the brain and spinal cord of day 12.5 embryos, Mol. Reprod. Dev. 55:372-378, 2000. (C) 2000 Wiley-Liss, Inc.