970 resultados para Yolk Sac


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Background: the paca is a South American rodent with potential as a commercial food animal. We examined paca placenta as part of a wider effort to understand the reproductive biology of this species.Methods: Thirteen specimens between midgestation and term of pregnancy were studied by light and transmission electron microscopy.Results: the placenta is divided into several lobes separated by interlobular trophoblast. Maternal arterial channels and fetal veins are found at the centre of each lobe. In the labyrinth, maternal blood flows through trophoblast-lined lacunae in close proximity to the fetal capillaries. The interhaemal barrier is of the haemomonochorial type with a single layer of syncytiotrophoblast. Caveolae occur in the apical membrane of the syncytiotrophoblast and recesses in the basal membrane, but there is no evidence of transtrophoblastic channels. The interlobular areas consist of cords of syncytiotrophoblast defining maternal blood channels that drain the labyrinth. Yolk sac endoderm covers much of the fetal surface of the placenta. The subplacenta comprises cytotrophoblast and syncytiotrophoblast. There are dilated intercellular spaces between the cytotrophoblasts and lacunae lined by syncytiotrophoblast. In the junctional zone between subplacenta and decidua, there are nests of multinucleated giant cells with vacuolated cytoplasm. The entire placenta rests on a pedicle of maternal tissue. An inverted yolk sac placenta is also present. The presence of small vesicles and tubules in the apical membrane of the yolk sac endoderm and larger vesicles in the supranuclear region suggest that the yolk sac placenta participates in maternal-fetal transfer of protein.Conclusion: the paca placenta closely resembles that of other hystricomorph rodents. The lobulated structure allows for a larger exchange area and the development of precocial young.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Broiler chicks aged 12 h after hatching were allotted according to a block design in a 7 x 2 factorial schedule of 14 treatments and four replications of 50 chicks each one. The main experimental factors were fasting for 0, 6, 12, 18, 24, 30, and 36 h after chick placement and sex. Independent of sex, fasting had a negative linear effect on weight and productivity of broilers at market age (42 d) without affecting feed conversion or mortality index. Groups subjected to 18 and 36 h of fasting after placement, corresponding to 30 and 48 h posthatching fasting, had lower biometrical values for small intestine (length, weight, and size; villus height; and crypt depth) than chicks fed immediately after placement. According to the Pearson test, BW of birds at 21 and 42 d were significantly correlated to BW at 7 d (r = 0.77) and 21 d (r = 0.45), respectively. Males performed better than females but had higher mortality rates. Fasting did not influence serum concentrations of corticosterone or sexual steroid hormones. Nevertheless, early signs of sexual dimorphism arose from the high estradiol (E2) concentration on female serum. Heterophil:lymphocyte ratio was not different among treatments, indicating that early fasting did not seem to be a stress factor 21 or 42 d after fasting. The results suggested a maximum fasting of 24 h after hatching in order to preserve broiler productivity at market age.

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Development within the cleidoic egg of birds and reptiles presents the embryo with the problem of accumulation of wastes from nitrogen metabolism. Ammonia derived from protein catabolism is converted into the less toxic product urea or relatively insoluble uric acid. The pattern of nitrogen excretion of the green iguana, Iguana iguana, was determined during embryonic development using samples from allantoic fluid and from the whole homogenized egg, and in hatchlings and adults using samples of blood plasma. Urea was the major excretory product over the course of embryonic development. It was found in higher concentrations in the allantoic sac, suggesting that there is a mechanism present on the allantoic membrane enabling the concentration of urea. The newly hatched iguana still produced urea while adults produced uric acid. The time course of this shift in the type of nitrogen waste was not determined but the change is likely to be related to the water relations associated with the terrestrial habit of the adult. The green iguana produces parchment-shelled eggs that double in mass during incubation due to water absorption; the eggs also accumulate 0.02. mM of urea, representing 82% of the total measured nitrogenous residues that accumulate inside the allantois. The increase in egg mass and urea concentration became significant after 55. days of incubation then were unchanged until hatching. © 2012 Elsevier Inc.

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Free amino acids (FAA) are used principally as substrate in protein synthesis and the source of energy in aerobic catabolism. In marine fish, embryo and larvae FAA are used to maintain body fluid osmolality during fish early development. However, there is essentially no information about FAA concentrations in early ontogeny of freshwater neotropical species in comparison to marine fishes. Therefore, the aim of this study was to evaluate the FAA concentrations in pacu, Piaractus mesopotamicus, eggs and larvae. Broodstock fish were induced to spawn and ovulated females were stripped of their eggs and immediately sampled for analysis. Larvae were sampled right after hatching (HL) and after the completion of the yolk-sac absorption (YSA). The wet weight of the HL and YSA larvae amounted to 0.5±0.1mg and 1.1±0.3mg, respectively. HL larvae showed higher levels of most of the indispensable amino acids (IAA) in comparison to eggs and YSA larvae. Exceptions were observed with His and Trp that showed higher or similar levels, respectively, in YSA larvae. The FAA Orn, Tau, Glu, Gln, Gly, and Tyr increased concentrations in both larval stages while that of Tau was found in higher concentration in all analyzed stages. Also, the concentrations of Asn, Ala, Pro, Ser, and Asp were higher in HL larvae. Both larval stages displayed a rise in total free IAA/total free DAA (dispensable amino acids) ratio. The authors conclude that the highest level of FAA in HL pacu larvae is indicative of active proteolysis of yolk reserves and a probable catabolism regulation of some FAA through spare-effect. In addition, Tau is one of the major FAA occurring during pacu ontogeny and may be performing regulation on body fluid osmolality regulation. © Copyright by the World Aquaculture Society 2013.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Pós-graduação em Aquicultura - FCAV

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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A grande importância dos recursos pesqueiros para a Amazônia, aliada à necessidade de ampliar os conhecimentos básicos sobre identificação das larvas de peixes (coletadas em ambiente natural), justifica o desenvolvimento deste trabalho, que tem como objetivo expandir as informações sobre o ictioplâncton, relacionando as com as tendências de variação diária e entre marés, do complexo estuarino do rio Amazonas – PA. As coletas foram realizadas durante o período diurno e noturno, no segundo semestre de 2007, pelo Projeto PIATAM mar II, sob ponto fixo na subárea 1 (estuário do rio Paracauari) e na subárea 2 (baía do Guajará) nas marés de sizígia e quadratura, em arrastos horizontais na sub-superfície da coluna d‟água com rede de plâncton cônico-cilíndrica e malha de 300μm. As amostras foram acondicionadas em recipientes contendo formalina a 4%. Os fatores hidrológicos foram obtidos in situ pelo Grupo de Oceanografia Química do Museu Paraense Emilio Goeldi. As amostras foram triadas e identificadas por meio de características morfológicas, morfométricas e merísticas, baseando-se na técnica de sequência regressiva de desenvolvimento e em bibliografias especializadas. As principais estruturas e características das fases iniciais dos peixes foram descritas e ilustradas, facilitando assim futuros estudos ictioplanctônicos para região. A temperatura superficial da água, potencial hidrogeniônico e oxigênio dissolvido não apresentaram diferenças significativas nas áreas estudadas. Os valores de salinidade não apresentaram diferença significativa entre as estações de coleta e marés, registrando apenas variação horizontal com aumento gradativo em direção à foz com valores máximos (12) e mínimos (0) para as subárea 1 e subárea 2, respectivamente. As maiores densidades de ovos foram registradas na subárea 1, em relação à subárea 2, com as maiores densidades para o período diurno (163,29 ovos/100m³) na subárea 1 e noturno (19,70 ovos/100m³) na subárea 2. As larvas foram distribuídas em 22 taxa representados por 13 famílias e 21 espécies, sendo os taxa dominantes: P. flavipinnis (46,29%), R. amazonica (19,75%), Engraulidae (10,70%), P. squamosissimus (7,55%), A. lineatus (5,19%), O. saurus (3,30%) e Gobiosoma sp. (2,15%), com elevada participação relativa dos Clupeiformes (76,75%). Quanto aos estágios de desenvolvimento, foi observada maior abundância de larvas em pré-flexão nas subáreas 1 e 2, sendo o estágio larval vitelino e pós-flexão os menos representativos. O período noturno apresentou as maiores densidade de larvas e número de taxa, evidenciando uma possível migração nictemeral do ictioplâncton. Apenas M. furnieri apresentou abundância significativamente maior nas amostras diurnas. A grande maioria dos taxa não apresentaram diferenças significativas entre as abundâncias diurnas e noturnas. Logo, a densidade de larvas e o número de taxa diferem entre o período diurno e noturno e entre maré. Portanto, as características morfológicas descritas no presente trabalho permitem uma adequada identificação das larvas, ampliando o conhecimento biológico das espécies estuarinas do litoral paraense, uma vez que as informações sobre larvas de peixes ainda são escassas, fazendo-se necessária uma intensificação nas pesquisas. Além disso, a compreensão da ecologia dos organismos, sobre tudo daqueles que apresentam seu ciclo de vida associado aos estuários, e as variações no transporte das larvas entre os períodos do dia e da noite e entre as marés são questões fundamentais para aprimorar o manejo e a conservação destes recursos renováveis.

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Pós-graduação em Zootecnia - FCAV

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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In mares, the embryo migrates to the uterus between days 5 and 6 postovulation beginning its mobility through all uterine segments, which is essential for the maternal recognition of pregnancy. During the mobility phase, the embryonic vesicle shows a linear growth rate until its fixation between days 15 and 17, when the orientation phenomenon occurs. From fixation to day 28 of pregnancy, the embryonic growth is less evident (plateau) by cross-section ultrasound examination. After this period the linear growth rate is reestablished until day 46. This plateau is attributed to the increased uterine tone that compresses the vesicle and to volume expansion, making it difficult to detect the conceptus growth only by the cross-section diameter. Around day 20, the embryo proper is visualized as an echogenic spot in the ventral aspect of the vesicle. Additionally, development of allantoic sac, embryonic heartbeat, yolk sac regression and posterior umbilical cord formation also can be visualized from days 20 to 40. An intimate interaction between uterus and conceptus is essential for the normal pregnancy development. Color-and spectral-Doppler ultrasonography can be useful for the evaluation of this interface. A gradual increase on uterine vascularity during the early pregnancy and transient changes in endometrial vascularity accompanying the vesicle location during the mobility phase have been described. Around day 38 of gestation, the formation of the endometrial cups begins and, consequently, the synthesis of the equine chorionic gonadotropin (eCG) induces the formation and development of supplementary corpora lutea, which are important to secrete progesterone and to maintain pregnancy until around day 120.