首页> 外文期刊>Aquaculture Research >Digestive dynamics during chyme formation of Octopus maya (Mollusca, Cephalopoda)
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Digestive dynamics during chyme formation of Octopus maya (Mollusca, Cephalopoda)

机译:章鱼玛瑙(软体动物,头足类)的食糜形成过程中的消化动力学

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摘要

In the present study, digestive dynamics, measured through the changes in the in situ pH along the digestive tract, was evaluated along with the glycogen concentration in the digestive gland (DG) and the proteolytic enzyme activity of the gastric juice (GJ) (both acid and alkaline proteases) to obtain useful information that will allow for the understanding of the DG's function and the role that it plays as an extracellular digestive enzyme source and for energy storage, providing new information on the digestive physiology of Octopus maya. The results showed that pH along the digestive tract changed according to the postprandial time following the food transit. At the beginning, the pH on crop (St) was 5, changing to 6 when the food arrived. Similar changes were observed on the caecum (Ce) and DG. Glycogen from DG is used as a source of energy during digestion and recovered 8?h after feeding. Maximum activities of digestive gland GJ enzymes were observed 6?h after feeding, indicating that chyme enzymes are still active when they arrive at the DG's lumen. The presence of food in the digestive tract modifies the pH, which, in combination with GJ, favours the activity of the released enzymes of O. maya.
机译:在本研究中,通过沿消化道的原位pH的变化测量的消化动力学与消化腺(DG)中的糖原浓度和胃液(GJ)的蛋白水解酶活性一起评估(两者均酸和碱性蛋白酶)以获取有用的信息,从而有助于了解DG的功能及其作为细胞外消化酶源和能量存储的作用,从而提供有关八达通玛雅鱼消化生理学的新信息。结果表明,食物运输后沿消化道的pH值随餐后时间而变化。最初,农作物的pH值(St)为5,当食物到达时pH值变为6。在盲肠(Ce)和DG上观察到类似的变化。来自DG的糖原在消化过程中被用作能量来源,并在喂食8小时后恢复。进食后6?h观察到最大的消化腺GJ酶活性,表明食糜酶到达DG的管腔时仍具有活性。食物在消化道中的存在会改变pH值,与GJ结合,有利于释放O. maya酶的活性。

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