4 resultados para latency

em Acceda, el repositorio institucional de la Universidad de Las Palmas de Gran Canaria. España


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[EN]The objective of this experiment was to determine the efficacy of different GnRHa doses for the induction of the spawning in meagre broodstock born in captivity. Five experimental groups were established, and one control group that was not injected. Fish were acclimated in six 10 m3 tanks, and in each tank there was 3? and 4? with an average weight of 8.33±0.97 and 8.47±1.09 kg respectively. Throughout the experimental period (April 14- June 2 of 2009), broodstock were induced on a weekly basis. Each time one female and two males from each of the five experimental groups were induced with an injection of GnRHa at the doses of 10, 20, 30, 40 and 50 ?g.kg-1 respectively. No significant differences were found in any of the controlled parameters: % of injected females with spawning, latency period and % of spawns. Although the highest spawning ratio was obtained with the lower doses, a statistically significant negative correlation between the doses and percentage spawning was found.

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[EN]The present study aimed to determine the spawning efficacy, egg quality and quantity of captive breed meagre induced with a single gonadotrophin-releasing hormone agonist (GnRHa) injection of 0, 1, 5, 10, 15, 20, 25, 30, 40 or 50 μg kg–1 to determine a recommended optimum dose to induce spawning. The doses 10, 15 and 20 μg kg–1 gave eggs with the highest quality (measured as: percentage of viability, floating, fertilisation and hatch) and quantity (measured as: total number of eggs, number of viable eggs, number of floating eggs, number of hatched larvae and number of larvae that reabsorbed the yolk sac). All egg quantity parameters were described by Gaussian regression analysis with R2 = 0.89 or R2 = 0.88. The Gaussian regression analysis identified that the optimal dose used was 15 μg kg–1. The regression analysis highlighted that this comprehensive study examined doses that ranged from low doses insufficient to stimulate a high spawning response (significantly lower egg quantities, p < 0.05) compared to 15 μg kg–1 through to high doses that stimulated the spawning of significantly lower egg quantities and eggs with significantly lower quality (egg viability). In addition, the latency period (time from hormone application to spawning) decreased with increasing doses to give a regression (R2 = 0.93), which suggests that higher doses accelerated oocyte development that in turn reduced egg quality and quantity. The identification of an optimal dose for the spawning of meagre, which has high aquaculture potential, represents an important advance for the Mediterranean aquaculture industry.

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[EN]The three males and three females of tank 2 were induced with EV-500μg GnRHa implants, one implant (500μg) was used for the females and half that doses for males. The first injection was on the 3rd of June and the last one spawning’s the 21st of October, a total of 37 injections and 29 spawns were obtained. The first implant was introduced the 20th of June, the last spawn was on the 16th of October of the implant set the 14th, a total of 17 implants and 38 spawns were obtained. The number of spawns per induction was significantly higher (P < 0.01) in implanted females, no significant differences were found in latency period which was of 43-44 hours.

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[EN]Eighteen mature meagre (Argyrosomus regius) broodstock, born in captivity, were divided in 3 experimental groups in ratios of 3 ♀ and 3 ♂ each. One group was inducted by injections of hCG, the other with GnRHa and the last group with implants of GnRHa. In all three treatments all females responded positively to the hormonal treatment. Statistically differences were found, in the number of spawns per induction, of females induced with hCG with the GnRHa treatments. Latency period was longer in spawns from GnRHa implants, and showed statistically differences with the other two treatments.