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Activity and post-prandial regulation of digestive enzyme activity along the Pacific hagfish (Eptatretus stoutii) alimentary canal

机译:沿太平洋豹(EPTATRetus Stoutii)消化道的消化酶活性的活动和折补后调节

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摘要

Hagfishes are living representatives of the earliest-diverging vertebrates and are thus useful for the study of early vertebrate physiology. It has been previously postulated that digestive enzymes account for the majority of digestion because hagfish are agastric with notable zymogen granules in specialized cells of the hindgut. While the presence of some digestive enzymes (amylase, lipase and leucinaminopeptidase) have been confirmed with histochemistry, quantification of enzymatic activity is limited. This study sought to biochemically quantify the tissue activity of six digestive enzymes (α-amylase, maltase, lipase, trypsin, aminopeptidase and alkaline phosphatase) along the length of the Pacific hagfish (Eptatretus stoutii) alimentary canal. In addition, the effect of feeding on the rate of enzyme activity was examined. Overall, maltase and trypsin activities were unchanging with respect to location or feeding status, while the activities of α-amylase and alkaline phosphatase decreased substantially following feeding, but were consistent along the length. Lipase and aminopeptidase activities were elevated in the anterior region of the alimentary canal in comparison to the more posterior regions, but were not altered with feeding. This study indicates hagfish have an assortment of digestive enzymes that likely are the result of a varied diet. The differential expression of these enzymes along the tract and in regards to feeding may be indications of early compartmentalization of digestive function.
机译:盲鳗生活在最早的发散脊椎动物的代表,因此早期脊椎动物生理学研究有用。前面已经假定消化酶占大多数的消化,因为盲鳗是agastric与后肠的特化细胞显着的酶原颗粒。虽然有些消化酶(淀粉酶,脂肪酶和leucinaminopeptidase)的存在已被证实与组织化学,酶促活性的定量限制。本研究旨在生物化学量化的沿太平洋盲鳗(Eptatretus stoutii)消化道的长度6的消化酶(α淀粉酶,麦芽糖酶,脂肪酶,胰蛋白酶,氨肽酶和碱性磷酸酶)的组织的活性。此外,检查了对酶活性的速率进料的效果。总体而言,麦芽糖酶和胰蛋白酶活性相对于位置或供给状态不变的,而α淀粉酶和碱性磷酸酶的活性下降基本上下列馈送,但是是沿着长度保持一致。脂肪酶和氨肽酶的活动在消化道的前部区域中升高相比,更靠后的区域,但没有用喂养改变。这项研究表明盲鳗有消化酶可能是多样化的饮食的结果的分类。沿道和在问候馈送这些酶的差异表达可以是消化功能的早期条块的指示。

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