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ROLE OF DIGESTIVE GLAND IN THE ENERGETIC METABOLISM OF PENAEUS SETIFERUS

机译:消化腺在对虾对虾能量代谢中的作用

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We determined the role of the digestive gland in the respiratory metabolism of Penaeus setiferus adult males as a step toward proposing a feeding schedule based on the cycle of activity in the digestive gland. We measured pre- and postprandial values for oxygen consumption rate and hemolymph glucose concentrations in live animals, and oxygen consumption rate and glycogen concentration in excised digestive gland. After the animals were fed, which enhanced general metabolic activity, these indices changed. There was a high correlation between the oxygen consumption rate of the animal and the glucose concentration in the hemolymph, and between the oxygen consumption rate by the digestive gland and the glycogen concentration in the digestive gland, all in relation to time after feeding. Correlations support the hypothesis that the energy demand depends upon the metabolic substrate concentration. In this theory, glucose sustains muscle activity (during ingestion of food) and glycogen is the product of the digestive gland during food assimilation. Our observations of metabolic dynamics during the feeding period allowed us to examine the feeding process. The metabolic activity of the digestive gland was highest 6 h after feeding. This could mean that assimilation, having started 2 h after food intake, peaked 6 h after feeding. Eight hours after feeding, the oxygen consumption rate of the digestive gland decreased and fell to values similar to those recorded for animals subjected to 72 h of fasting.
机译:我们确定了消化腺在南美白对虾成年男性呼吸代谢中的作用,以此作为根据消化腺活动周期提出喂养计划的步骤。我们测量了餐前和餐后动物的氧气消耗率和血淋巴葡萄糖浓度,以及切除的消化腺中的氧气消耗率和糖原浓度。喂养动物后,这些动物增强了一般的代谢活性,这些指标发生了变化。动物的耗氧率与血淋巴中的葡萄糖浓度之间以及消化腺的耗氧率与消化腺中的糖原浓度之间存在高度相关性,所有这些都与喂养后的时间有关。相关性支持以下假设:能量需求取决于代谢底物浓度。按照这种理论,葡萄糖可以维持肌肉活动(在食物摄取过程中),而糖原则是食物同化过程中消化腺的产物。我们在喂养期间对代谢动力学的观察使我们能够检查喂养过程。进食后6小时,消化腺的代谢活性最高。这可能意味着食物摄入后2小时开始同化,进食后6小时达到峰值。进食八小时后,消化腺的耗氧率下降并下降到与禁食72小时的动物所记录的相似。

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