24 resultados para Pachygrapsus Iransversus


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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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El crustáceo decápodo Pachygrapsus marmoratus , conocido como "cangrejo corredor" o "cangrejo zapatero", es un organismo que habita en la zona intermareal rocosa de la costa. No se caracteriza precisamente por su interés económico pero resulta muy útil para el análisis de ciertas variables fisiológica s relacionadas con su modo de vida. En su condición de osmorregulador eurihalino, es capaz de regular los cambios bruscos de salinidad a los que se encuentra sometido debido , principalmente , a la acción de las mareas . Es evidente que la regulación del medi o inte rno implica un gasto energético que se ve traducido en un aumento de la t asa metabólica. En este estudio se aborda el análisis del coste energético de la osmorregulación cuando estos animales son sometidos a diferentes salinidad es así como la influen cia que tienen otras variables, tales como la masa corporal y el tiempo que transcurren los animales en dicha condición , sobre la tasa metabólica en un proceso de aclimatación. Debido a su gran importancia tanto fisiológica como ecológica, en el presente estudio se trata de analizar la relación alométrica que presentan el peso y el metabolismo a fin de evaluar en qué medida influye la talla de los organismos sobre éste último. T al y como se esperaba la salinidad presenta un efecto claro sobre el metabolismo puesto que una dilución de ésta supone un aumento en la tasa de consumo de oxígeno. Por otro lado, la influencia de la masa corporal y del tiempo es también muy notoria ya que a medida que transcurren los días expuestos a la nueva condición , los cangrejos de mayor tamaño registran tasas de consumo de oxígeno que van en aumento mientras que los de pequeño tamaño descienden sus tasas de consumo de oxígeno. Cabe destacar que el he cho de haber estado expuestos a las condiciones del laboratorio, lugar en el que son mantenidos los ejemplares de este crustáceo, hace que estén sometidos a un estrés continuo que puede influenciar en menor medida , las tasas metabólicas analizadas.

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

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Megalopae were reared in the laboratory to the 7(th) crab stage. The megalopa and 1(st) crab stage are described and juvenile development was studied with emphasis on pleopodal differentiation. The megalopal phase, is easily identified, and shares with those of other Grapsinae and Plagusiinae big size, the presence of many natatory setae, and a series of conspicuous teeth on the inner margin of the dactyli from the 2(nd) to 4(th) walking leg. These features are regarded as adaptive for settlement in a wave-swept environment, such as the rocky marine intertidal where most of those species live. Fast development of juvenile pleopods is another characteristic of these subfamilies. In Pachygrapsus transversus, the sexes can be distinguished from the 2(nd) crab stage. Gonopod differentiation in males and the basic segmentation of all four pleopod pairs in females are already concluded at the 5(th) instar. A review of the available information indicated that settlement of large megalopae and fast juvenile development, preceding a precocious sexual maturity, are trends in Grapsinae and Plagusiinae. on the other hand, the Sesarminae pass through a more extensive juvenile instar sequence and presumably a delayed maturity.

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The mottled shore crab P. transversus is probably the most common brachyuran crab living in the marine rocky intertidal of southeastern Brazil. However, its biology is largely unknown. In this study, some aspects of the population biology of this species are investigated. Distribution of individuals in the intertidal range is heterogeneous. Sabellariid worm reefs and mytilid mussel beds can be considered as nursery grounds retaining most part of juveniles, while the rocky surface is mostly inhabited by adults, which find safety shelters in rock crevices. Annual size frequency distributions revealed clues of population stability and indicated that young individuals reach the adult habitat in a gradual process. Sex-ratio follows the 1:1 proportion in smaller size classes but is biased towards males in larger ones. Higher mortality in larger females is indicated as a possible cause of this pattern. Ovigerous ratio shows a remarkable seasonality in which highest percentages of ovigerous females occur during summer months, while recruitment of young is more intense from April to July, suggesting a very extensive larval development. Once established in the intertidal zone, young recruits will develop to mature individuals in late spring, when molting crabs become scarce and proportion of breeding females increases. Therefore, growth and reproduction are in a great part temporally separated, allowing an annual life cycle in which settlement, growth and breeding may take place within a I-yr period.

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The allometric growth of secondary sexual characters in Pachygrapsus transversus is investigated from the 2(nd) crab stage onward. Clear sexual dimorphism is restricted to abdominal morphology, but ANCOVA analyses showed that chelae become larger in males and the carapace becomes wider in females. Size at the puberty moult in both sexes was estimated using Somerton's computer techniques. Mature II analyses applied to bi-log gonopod length vs, carapace length relationships indicated a puberty moult at 5.0 mm in males.In females, Mature I analyses detected the overlapping growth phase lines in bi-log carapace length vs. abdomen width scatterplots. Fitting the logistic equation provided an estimate of 50% maturity at 5.5 mm. The regression lines separate young and resting individuals from the potentially reproductive females, but they do not separate young from adult crabs. Year-round monthly samples showed that the proportion of small adult-like females is higher during the breeding season. After breeding, females may moult to a young-like morphotype, as observed in controlled laboratory conditions. Moulting to a resting condition splits smaller mature females into different growth phase lines. Therefore, estimates of female size at sexual maturity by means of abdomen allometric growth analyses are inadequate in this species.

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The larval development of Pachygrapsus gracilis was studied in the laboratory under conditions of 25-degrees-C temperature and 20, 24, 28, 32 and 34 parts per thousand salinity. The objective of the study was to characterize the plankton phase of life of this species.

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Monthly samples of the shore crab Pachygrapsus transversus from two distinct annual periods showed that ovigerous females are present throughout the Year in the population. However, the relative ovigerous abundance of specimens among sexually mature changes from less than 10% during the winter months to almost 80% in summer. Linear correlations for each year revealed that both temperature and photoperiod were positively associated with relative abundance of ovigerous females. Multiple regression analyses suggested that photoperiod was the main factor affecting breeding in this species. Timing of observed reproductive pattern may enhance larval survival because of particular oceanographic conditions in the study region and favor early juvenile development due to certain species-specific growth features.

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ABSTRACT: This present study re-describes the megalopa stage and provides detailed morphological descriptions and main growth changes observed in stages I through VII of the juvenile instars of the dark shore crab Pachygrapsus gracilis (Saussure, 1858), from the Amazon region. The specimens in this study were reared in the laboratory and the megalopae were collected at Ajuruteua beach in northeastern Pará, Brazil. Previous studies had described the megalopa of P. gracilis from Mexican waters, as well as those of Pachygrapsus transversus (Gibbes, 1850) and Pachygrapsus marmoratus (Fabricius, 1787). A comparison between the Mexican and Amazonian populations of P. gracilis revealed significant morphological differences. The main difference is the presence of 3 elongated setae on the 5th pereiopods of individuals of the Amazonian population. The setal number and their arrangement in the appendages also differed. In P. gracilis, the male and female genital openings are observed from the juvenile instar III, whereas differentiation in male pleopods is observed only in juvenile instar V. In females, the pleopods undergo rapid differentiation during juvenile instar VI. These morphological comparisons and other observations on development are briefly compared and discussed with reports for other species.

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Uno de los factores limitantes de la vida animal en la zona intermareal es la disponibilidad de oxígeno. En el presente estudio se ha desarrollado un índice para medir el grado de oxidependencia que ha sido aplicado al comportamiento respiratorio para ejemplares de diferentes tamaños del cangrejo intermareal Pachygrapsus marmoratus, con objeto de realizar una aproximación a la relación existente entre la concentración de oxígeno del medio y la tasa de consumo de oxígeno, por una parte, y de ésta con el tamaño de los ejemplares, por otra. La relación entre la tasa de consumo de oxígeno (VO2) y el peso de los ejemplares de P. marmoratus se ajusta a una función potencial. Del valor de b (exponente de la masa) se desprende que existe alometría negativa (b<1) entre la tasa de consumo de oxígeno y el peso de los ejemplares, con lo que se cumple la ley de Kleiber: la tasa metabólica peso-específica se incrementa al reducirse el tamaño de los animales. Con respecto al índice de oxidependencia, se observa que las diferencias no son significativas entre los ejemplares grandes y los medianos pero si lo son entre los ejemplares grandes-medianos y los pequeños. Los grados de oxidependencia en los ejemplares de P. marmoratus grandes y medianos son mayores que en los pequeños. Es decir, en el curso de la hipoxia, los ejemplares más pequeños de P. marmoratus tienen una mayor capacidad de regulación de la tasa de consumo de oxígeno (son mas “oxirreguladores”), que los ejemplares de mayor tamaño (mas “oxiconcordantes”). Se puede concluir pues que el tamaño es una variable a tener en cuenta para las diferencias en el grado de oxidependencia de los animales intermareales, pero sus resultados pueden ser diferentes dependiendo de otro tipo de variables exógenas, como la temperatura o la salinidad.

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Settlement rate may not reflect larval supply to coastal waters in different marine invertebrates and demersal fishes. The importance of near-shore oceanography and behaviour of late larval stages may be underestimated. The present study conducted neustonic sampling over station grids and along full-length transects at two embayments in south-eastern Brazil to (1) compare diurnal and nocturnal occurrence of most frequent decapod stages to assess their vertical movements, (2) describe the formation of larval patches and (3) measure competence of crab megalopae according to their distance to recruitment grounds. Several shrimp species apparently undergo a diel vertical migration, swimming crab megalopae showed no vertical movements and megalopae of the intertidal crab Pachygrapsus transversus revealed a reversed vertical migration. During the day, crab megalopae aggregated in convergence zones just below surface slicks. These larvae consisted of advanced, pre-moult stages, at both mid-bay and near-shore patches. Competence, measured as the time to metamorphosis in captivity, was similar between larval patches within each taxon. Yet, subtidal portunids moulted faster to juveniles than intertidal grapsids, possibly because they were closer to settlement grounds. Megalopae of Pachygrapsus from benthic collectors moulted faster than those from bay areas. These results suggest that alternative vertical migration patterns of late megalopae favour onshore transport, and actual competence takes place very close to suitable substrates, where larvae may remain for days before settlement. Lack of correlation between larval supply and settlement for Pachygrapsus suggests that biological processes, besides onshore transport, may play an important role in determining settlement success of coastal crabs.

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Available information on the larval release rhythms of brachyurans is biased to temperate estuarine species and outcomes resulting from some sort of artificial manipulation of ovigerous females. In this study we applied field methods to describe the larval release rhythms of an assemblage of tropical rocky shore crabs. Sampling the broods of ovigerous females of Pachygrapsus transversus at two different shores indicated a spatially consistent semilunar pattern, with larval release maxima around the full and new moon. Yet, synchronism between populations varied considerably, with the pattern obtained at the site exposed to a lower wave action far more apparent. Breeding cohorts at one of the sampled shores apparently belonged to actual age groups composing the ovigerous population. The data suggest that these breeding groups release their larvae in alternate syzygy periods, responding to a lunar cycle instead of the semilunar pattern observed for the whole population. For the description of shorter-term rhythms, temporal series at hour intervals were obtained by sampling the plankton and confinement boxes where ovigerous females were held. Unexpectedly, diurnal release activity prevailed over nocturnal hatching. Yet, only grapsids living higher on the shore exhibited strong preferences over the diel cycle, with P. transversus releasing their larvae during the day and Geograpsus lividus during the night. The pea crab Dissodactylus crinitichelis, the spider crab Epialtus brasiliensis and a suite of xanthoids undertook considerable releasing activity in both periods. Apart from the commensal pea crab D. crinitichelis, all other taxa revealed tide-related rhythms of larval release, with average estimates of the time of maximum hatching always around the time of high tides; usually during the flooding and slack, rather than the ebbing tide. Data obtained for P. transversus females held in confinement boxes indicated that early larval release is mostly due to nocturnal hatching, while zoeal release in diurnal groups took place at the time of high tide. Since nocturnal high tides at the study area occurred late, sometimes close to dusk, early release would allow more time for offshore transport of larvae when the action of potential predators is reduced.