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首页> 外文期刊>Aquaculture >Ontogeny of digestive tract of Stellate sturgeon (Acipenser stellatus) from hatching to juvenile stage: Digestive enzymes activity, stomach and proximal intestine
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Ontogeny of digestive tract of Stellate sturgeon (Acipenser stellatus) from hatching to juvenile stage: Digestive enzymes activity, stomach and proximal intestine

机译:从孵化到少年阶段的星状鲟(acipenser stellatus)的消化道的组织发生:消化酶活性,胃和近端肠

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摘要

This study was an attempt to evaluate ontogenic development of digestive enzymes activity, histomorphological changes of stomach and proximal intestine of Stellate sturgeon (Acipenser stellatus) from hatching up to 50 days post hatching (dph). The digestive enzymes activity of pepsin, trypsin, chymotrypsin, alkaline phosphatase, amylase and lipase was considered. Pepsin activity was detected in one-day-old prelarvae followed by a sharp increase at the beginning of larval stage (i.e., 8 dph) onward. However, few fluctuations coincided with changes of food types consumed by the fish. The highest chymotrypsin activity was observed at 1 dph. During larvae period, the enzyme activity showed two surges that occurred at 15 and 31 dph. Although descending trends for trypsin (with the highest activity at 8 dph) and amylase (with the highest activity at 24 dph) were observed, lipase and alkaline phosphatase revealed an incremental trend during early growth stages. At 10 dph, functional stomach was observed with epithelia containing some crypts. Intestinal morphometric indices such as intestinal folds were measurable at 4 dph; epithelium, however, appeared immediately after hatching. Pearson's correlation coefficient revealed positively related activities of trypsin, chymotrypsin and amylase. They all reflected negative relationships with pepsin, alkaline phosphatase and lipase. The findings suggest that gastric digestion of proteins become dominant during the ontogenetic development of Stellate digestive tract. Over this period, the fish relied on energy dense lipid molecules to meet their metabolic demands while they spare protein for further tissue synthesis/maintenance. Moreover, pepsin seems to be more responsive to the type of food consumed by the Stellate and might be a useful indicative of the nutritional status of the fish. The concluding remarks are discussed in light of the significance of various histological changes and their interrelations with ontogeny of digestive enzymes activity.
机译:该研究试图评估消化酶活性的细胞生成,胃鲟(acipenser stellatus的近端肠道的细胞生成酶活性,从孵化后50天从孵化(DPH)上长达50天。考虑了胃蛋白酶,胰蛋白酶,胰凝乳素,碱性磷酸酶,淀粉酶和脂肪酶的消化酶活性。在一天历天的PRELARVAE中检测到胃蛋白酶活性,然后在幼虫阶段开始(即8分钟)开始急剧增加。然而,很少有可能恰逢鱼类消耗的食物类型的变化。在1 dPH中观察到最高的胰凝乳蛋白活性。在幼虫期间,酶活性显示出在15至31分钟的两种血液中发生。虽然观察到胰蛋白酶(以8分钟的最高活性)和淀粉酶(以24分钟的最高活性)降序,但脂肪酶和碱性磷酸酶在早期生长阶段揭示了增量趋势。在10分中,用含有一些隐窝的上皮细胞观察到功能性胃。肠道形态学索引如肠折叠在4分钟内可测量;然而,上皮孵化后立即出现。 Pearson的相关系数揭示了胰蛋白酶,胰凝乳蛋白酶和淀粉酶的正相关活动。它们都反映了与胃蛋白酶,碱性磷酸酶和脂肪酶的负面关系。研究结果表明,在星状消化道的植入发育期间,蛋白质的胃消化成为显性。在此期间,鱼依赖于能量致密的脂质分子,以满足它们的代谢需求,同时它们备用蛋白质进行进一步的组织合成/维护。此外,胃蛋白酶似乎更加敏感,对星星消耗的食物类型更为敏感,并且可能是鱼类营养状况的有用。鉴于各种组织学变化的重要性及其与消化酶活性的组织活动的相互关系的重要性,讨论了结论性。

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