25 resultados para CHERAX


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Cherax quadricarinatus, es una especie de langosta de agua dulce nativa de Australia y Papua Nueva Guinea que se cultiva en varios países incluyendo Argentina, por lo que las investigaciones acerca de su biología reproductiva están orientadas a conocer las condiciones óptimas de cultivo, y desarrollar técnicas para su reproducción y crecimiento. El objetivo general fue determinar el momento del desarrollo en que ocurre la diferenciación sexual y el posible rol regulador de la temperatura, caracterizar el proceso de diferenciación gonadal y madurez sexual, y los cambios morfométricos asociados. Los resultados indicaron que la diferenciación sexual secundaria ocurre a partir de los 0,23 g aproximadamente, correspondiente al estadio juvenil VI ó VII. La temperatura no ejerció un claro efecto sobre la diferenciación sexual. Las hembras, desde la diferenciación gonadal hasta su maduración, presentaron tres morfotipos ováricos. En función de la coloración ovárica, la estructura histológica y la proporción de los distintos tipos celulares se distinguieron cuatro estadios de desarrollo ovárico: I (blanco-transparente), II (crema pálido-naranja pálido), III (naranja con oocitos verdes) y IV (verde oliva). En los machos se identificaron tres estadios de desarrollo y dos tipos de appendices masculinae ó papilas fálicas. Se reconocieron diferentes patrones de intersexualidad y cuatro posibles combinaciones de aberturas genitales que permitieron definir cuatro tipos de intersexo: intersexo hembra (I), intersexo macho (II), y dos tipos de intersexo macho-hembra (III y IV). Los resultados del análisis morfométrico mostraron que los intersexos hembras representan un tipo sexual morfométricamente diferenciado de las hembras y los machos, aunque desde el punto de vista funcional son hembras. Los cambios en las relaciones morfométricas de las dimensiones de los quelípedos se vincularon con el inicio de la la madurez sexual desde el punto de vista histológico en los machos e intersexos hembra.

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Un adecuado manejo alimenticio es determinante en el éxito en la acuicultura, dado que el consumo de alimentos influye directamente en el crecimiento y en la conversión alimenticia de los organismos. En una producción semi-intensiva e intensiva, los costos de alimentación representan hasta el 80 por ciento del total y por esta razón un manejo alimenticio alternativo al habitualmente empleado (alimentación diaria) puede ser una estrategia viable para reducir dichos costos. Explorar el crecimiento compensatorio en los organismos después de una reducción en la cantidad de alimento suministrado es una herramienta que puede ser utilizada para dicho fin. Los juveniles tempranos de la langosta de agua dulce Cherax quadricarinatus presentaron la capacidad de compensar tanto un moderado como prolongado periodo de restricción alimenticia (alimentación intermitente)y los mecanismos involucrados fueron la hiperfagia y la mayor conversión alimenticia. La recuperación del crecimiento fue total o parcial, dependiendo de la extensión del periodo de alimentación diaria post-restricción (periodo de recuperación). La aplicación de un período de recuperación fue imprescindible para inducir la capacidad compensatoria en esta especie. De los factores que modulan el crecimiento compensatorio, se observó que las dietas altamente proteicas no afectan dicha capacidad, así como las tres temperaturas ensayadas (inferior a la óptima, óptima y superior a la óptima, para el crecimiento de la especie). La talla tampoco afectó dicha capacidad, pero, influye en la severidad de la respuesta del periodo restricción y consecuentemente en el tiempo de recuperación. La restricción no causó severas alteraciones en la estructura, composición bioquímica y actividad de las enzimas digestivas de la glándula digestiva, lo que refleja que estos juveniles no presentarían deficiencias nutricionales. La alta supervivencia observada en los juveniles que compensan es otro indicador de que tanto la restricción alimenticia como la propia compensación no causan posteriores daños en el organismos.

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Un adecuado manejo alimenticio es determinante en el éxito en la acuicultura, dado que el consumo de alimentos influye directamente en el crecimiento y en la conversión alimenticia de los organismos. En una producción semi-intensiva e intensiva, los costos de alimentación representan hasta el 80 por ciento del total y por esta razón un manejo alimenticio alternativo al habitualmente empleado (alimentación diaria) puede ser una estrategia viable para reducir dichos costos. Explorar el crecimiento compensatorio en los organismos después de una reducción en la cantidad de alimento suministrado es una herramienta que puede ser utilizada para dicho fin. Los juveniles tempranos de la langosta de agua dulce Cherax quadricarinatus presentaron la capacidad de compensar tanto un moderado como prolongado periodo de restricción alimenticia (alimentación intermitente)y los mecanismos involucrados fueron la hiperfagia y la mayor conversión alimenticia. La recuperación del crecimiento fue total o parcial, dependiendo de la extensión del periodo de alimentación diaria post-restricción (periodo de recuperación). La aplicación de un período de recuperación fue imprescindible para inducir la capacidad compensatoria en esta especie. De los factores que modulan el crecimiento compensatorio, se observó que las dietas altamente proteicas no afectan dicha capacidad, así como las tres temperaturas ensayadas (inferior a la óptima, óptima y superior a la óptima, para el crecimiento de la especie). La talla tampoco afectó dicha capacidad, pero, influye en la severidad de la respuesta del periodo restricción y consecuentemente en el tiempo de recuperación. La restricción no causó severas alteraciones en la estructura, composición bioquímica y actividad de las enzimas digestivas de la glándula digestiva, lo que refleja que estos juveniles no presentarían deficiencias nutricionales. La alta supervivencia observada en los juveniles que compensan es otro indicador de que tanto la restricción alimenticia como la propia compensación no causan posteriores daños en el organismos.

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Three experiments were conducted with juveniles of the crayfish Cherax quadricarinatus to investigate the effect of intermittent feeding regimes on growth and the ability to tolerate the shortage of food. In experiment 1, stage III juveniles were assigned to one of seven intermittent feeding groups (from FS1: 1 day fed/1 day non-fed to FS7: 7 days fed/7 days non-fed) and two control groups, continuously fed (CF) and continuously starved (CS) animals; this experiment comprised a short-term intermittent feeding period until the first molt, followed by a continuous feeding period. In the experiment 2, stage III juveniles were assigned to one of three intermittent feeding groups (FS2 to FS4) and one control group (CF); it consisted of a prolonged intermittent feeding period, until the end of the experiment In the experiment 3, stage VI and VII juveniles were assigned to one of three intermittent feeding groups (FS2 to FS4) and one control (CF); it also consisted of a prolonged intermittent feeding period. The red claw crayfish juveniles were able to tolerate periods of intermittent feeding and underwent compensatory growth after continuous feed was re-established. The ability of crayfish to tolerate intermittent feeding was influenced by developmental stage and duration of the intermittent feeding period. Stage III juveniles survived, but decreased growth, when subjected to prolonged intermittent feeding. However, they showed full compensatory growth when the intermittent feeding period was short and followed by continuous feeding. on the other hand, stage VI-VII tolerated 60 days of prolonged intermittent feeding without any change in growth and survival. The hepatosomatic index (based on wet weight) values of the treatments and the control were similar, suggesting that intermittent feeding may not be considered a nutritional stress condition. The relative pleon weight (based on wet weight) values of the treatments and control were similar suggesting low use of nutrients from the muscle to increase the chance for survival. The juveniles of C quadricarinatus can tolerate relatively long periods of low food availability and this is an important adaptation for their survival in changing/unpredictable environments and an attribute favorable for the production of the species. (C) 2011 Elsevier B.V. All rights reserved.

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The aim of this study is to analyze the impact of food shortage on growth performance, by means of energetic reserves (proteins, glycogen and lipids) mobilization and hepatopancreas cells analysis in C. quadricarinatus juveniles maintained in groups, as well as the effect on culture water quality. Two experiments were performed, each of them with two feeding regimes during 45 days. The Control feeding regime, in which crayfish were fed daily (once a day) throughout the experimental period (DF), and the Cyclic feeding regime, in which juveniles were fed for 2 or 4 days (once a day) followed by 2 or 4 days of food deprivation (2F/2D and 4F/4D, respectively) in repeated cycles. Cyclic feeding influenced growth, biochemical composition from hepatopancreas and muscle, and water quality. Juveniles cyclically fed were unable to maintain a normal growth trajectory during 45 days. Apparent feed conversion ratio, apparent protein efficiency ratio, hepatosomatic index and relative pleon mass were similar in cyclic and daily fed animals and no structural damage was found in the hepatopancreas of juveniles subjected to cyclic feeding. The novelty of this study was the significant accumulation of proteins in pleonal muscle in both cyclic feeding regimes (approx. 18%) suggesting that the storage of this constitutive material during food shortage may be an adaptation for a compensatory growth when food becomes abundant again. The cyclic feeding regimes had a positive effect on water quality decreasing inorganic nitrogen concentration. This was due to the reduction in the amount of animal excretes and feces in the group that received approx. 50% less feed. Additionally, water pH was higher in cyclic feeding tanks, as a result of lower organic matter decomposition and consequent release of CO2. Accordingly, total ammonia in the water was significantly lower for the cyclic feeding regimes compared to their respective controls. This study suggests that the protocol of cyclic feeding could be applied at least 45 days in 1 g juveniles maintained in group conditions, without affecting the energetic reserves and hepatopancreas structure, emphasizing the high tolerance of this species to food restriction.

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Differential heart rates during heating and cooling (heart rate hysteresis) are an important thermoregulatory mechanism in ectothermic reptiles. We speculate that heart rate hysteresis has evolved alongside vascularisation, and to determine whether this phenomenon occurs in a lineage with vascularised circulatory systems that is phylogenetically distant from reptiles, we measured the response of heart rate to convective heat transfer in the Australian freshwater crayfish, Cherax destructor. Heart rate during convective heating (from 20 to 30 degreesC) was significantly faster than during cooling for any given body temperature. Heart rate declined rapidly immediately following the removal of the heat source, despite only negligible losses in body temperature. This heart rate 'hysteresis' is similar to the pattern reported in many reptiles and, by varying peripheral blood flow, it is presumed to confer thermoregulatory benefits particularly given the thermal sensitivity of many physiological rate functions in crustaceans. (C) 2004 Published by Elsevier Inc.

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1. We examined the effect of thermal acclimation on fighting success and underlying performance traits in the crayfish Cherax destructor. We tested the hypothesis that animals will be more successful when fighting at their acclimation temperature than at a colder or warmer temperature, and that changes in metabolic capacity underlie differences in behavioural performance. 2. Thermal acclimation (to 20 degrees C and to 30 degrees C) had a significant effect on behavioural contests, and the likelihood of winning was significantly greater when individuals fought at their acclimation temperature against an individual from an alternate acclimation temperature. 3. The ratio of ADP stimulated respiration to proton leak (respiratory control ratio) of isolated mitochondria increased significantly in chelae muscle of the cold-acclimated group, and differences in respiratory control ratio between winners and losers were significantly correlated with the outcome of agonistic encounters. However, acclimation did not affect tall muscle mitochondria or the activity of pyruvate kinase in either chelae or tail muscle. 4. The force produced by closing chelae was thermally insensitive within acclimation groups, and there were no significant differences between acclimation treatments. None the less, differences in chelae width between contestants were significantly correlated with the outcome of agonistic encounters, but this perceived resource holding power did not reflect the actual power of force production. 5. Thermal acclimation in C destructor has beneficial consequences for dominance and competitive ability, and the success of cold acclimated animals at the cold temperatures can be at least partly explained by concomitant up-regulation of oxidative ATP production capacity.

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Three experiments were conducted with juveniles of the crayfish Cherax quadricarinatus to investigate the effect of intermittent feeding regimes on growth and the ability to tolerate the shortage of food. In experiment 1, stage III juveniles were assigned to one of seven intermittent feeding groups (from FS1: 1 day fed/1 day non-fed to FS7: 7 days fed/7 days non-fed) and two control groups, continuously fed (CF) and continuously starved (CS) animals; this experiment comprised a short-term intermittent feeding period until the first molt, followed by a continuous feeding period. In the experiment 2, stage III juveniles were assigned to one of three intermittent feeding groups (FS2 to FS4) and one control group (CF); it consisted of a prolonged intermittent feeding period, until the end of the experiment In the experiment 3, stage VI and VII juveniles were assigned to one of three intermittent feeding groups (FS2 to FS4) and one control (CF); it also consisted of a prolonged intermittent feeding period. The red claw crayfish juveniles were able to tolerate periods of intermittent feeding and underwent compensatory growth after continuous feed was re-established. The ability of crayfish to tolerate intermittent feeding was influenced by developmental stage and duration of the intermittent feeding period. Stage III juveniles survived, but decreased growth, when subjected to prolonged intermittent feeding. However, they showed full compensatory growth when the intermittent feeding period was short and followed by continuous feeding. on the other hand, stage VI-VII tolerated 60 days of prolonged intermittent feeding without any change in growth and survival. The hepatosomatic index (based on wet weight) values of the treatments and the control were similar, suggesting that intermittent feeding may not be considered a nutritional stress condition. The relative pleon weight (based on wet weight) values of the treatments and control were similar suggesting low use of nutrients from the muscle to increase the chance for survival. The juveniles of C quadricarinatus can tolerate relatively long periods of low food availability and this is an important adaptation for their survival in changing/unpredictable environments and an attribute favorable for the production of the species. (C) 2011 Elsevier B.V. All rights reserved.

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Farnesoic acid O-methyltransferase (FaMeT) is the enzyme responsible for the conversion of farnesoic acid (FA) to methyl farnesoate (MF) in the final step of MF synthesis. Multiple isoforms of putative FaMeT were isolated from six crustacean species belonging to the families Portunidae, Penaeidae, Scyllaridae and Parastacidae. The portunid crabs Portunus pelagicus and Scylla serrata code for three forms: short, intermediate and long. Two isoforms (short and long) were isolated from the penaeid prawns Penaeus monodon and Fenneropenaeus merguiensis. Two isoforms were also identified in the scyllarid Thenus orientalis and parastacid Cherax quadricarinatus. Putative FaMeT sequences were also amplified from the genomic DNA of P. pelagicus and compared to the putative FaMeT transcripts expressed. Each putative FaMeT cDNA isoform was represented in the genomic DNA, indicative of a multi-gene family. Various tissues from P. pelagicus were individually screened for putative FaMeT expression using PCR and fragment analysis. Each tissue type expressed all three isoforms of putative FaMeT irrespective of sex or moult stage. Protein domain analysis revealed the presence of a deduced casein kinase II phosphorylation site present only in the long isoform of putative FaMeT.

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Introduction of red claw crayfish (Cherax quadricarinatus) in Ecuador is presented together with the status and future of crayfish culture in the country.