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首页> 外文期刊>Fish Physiology and Biochemistry >Studies on digestibility and digestive enzyme activities in Labeo rohita (Hamilton) juveniles: effect of microbial α-amylase supplementation in non-gelatinized or gelatinized corn-based diet at two protein levels
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Studies on digestibility and digestive enzyme activities in Labeo rohita (Hamilton) juveniles: effect of microbial α-amylase supplementation in non-gelatinized or gelatinized corn-based diet at two protein levels

机译:研究Labeo rohita(Hamilton)幼鱼的消化率和消化酶活性:在两种蛋白质水平下,添加微生物α-淀粉酶对非糊化或糊化玉米基日粮的影响

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摘要

A 60-days feeding trial was conducted to delineate the effect of both gelatinized and non-gelatinized corn with or without supplementation with exogenous α-amylase at two dietary protein levels (35% and 28%) on dry matter digestibility, digestive enzymes and tissue glycogen content of Labeo rohita juveniles. Three hundred and sixty juveniles (average weight 10±0.15 g] were randomly distributed into 12 treatment groups with each of two replicates. Twelve semi-purified diets containing either 35% or 28% crude protein were prepared by including gelatinized (G) or non-gelatinized (NG) corn as carbohydrate source with different level of microbial α-amylase (0, 50, 100 and 150 mg kg−1). The dry matter digestibility of G corn fed groups was significantly higher (P < 0.05) than that of the NG corn fed groups. Hepatosomatic index (HSI), liver glycogen and intestinal amylase activity of G starch fed groups were significantly higher (P < 0.05) than those of the NG corn fed groups. However, the reverse trend was found for gastrosomatic index (GSI), muscle glycogen and intestinal protease activity. Addition of 50 mg α-amylase kg−1 feed improved the dry matter digestibility of NG starch fed groups, which was similar to that of the G corn fed groups or NG corn supplemented with 100/150 mg α-amylase kg−1 feed. HSI, liver glycogen and intestinal amylase activity were significantly increased (P < 0.05) at minimum level of α-amylase in the feed (50 mg kg−1) and did not increase due to further inclusion of amylase in the diet. Supplementation with α-amylase at 50 mg kg−1 increased the intestinal amylase activity beyond which no significant changes were observed. Protease activity of liver and intestine was highest (P < 0.05) in higher crude protein (CP) fed groups, but protease activity of the intestine was significantly higher in the α-amylase supplemented groups. Hence, it was concluded that feed with 28% CP containing either G corn without α-amylase or NG corn with 50 mg α-amylase kg−1 may be used as the alternative carbohydrate source for L. rohita juveniles.
机译:进行了为期60天的喂养试验,以描述糊化和非糊化玉米在两种饮食蛋白水平(35%和28%)下添加或不添加外源α-淀粉酶对干物质消化率,消化酶和组织的影响Labeo rohita幼鱼的糖原含量。将360只(平均体重10±0.15 g)幼鱼随机分为12个处理组,每组一式两份,分别制成12种半纯化饲料,分别含有35%或28%的粗蛋白,包括糊化(G)或非糊化。糊化玉米(NG)作为碳水化合物来源,且微生物α-淀粉酶水平不同(0、50、100和150 mg kg-1 )。G玉米饲喂组的干物质消化率显着更高(P < 0.05%)高于NG玉米饲喂组,G淀粉饲喂组的肝体指数(HSI),肝糖原和肠道淀粉酶活性显着高于NG玉米饲喂组(P <0.05),但趋势相反发现其胃肠道指数(GSI),肌肉糖原和肠道蛋白酶活性,添加50 mgα-淀粉酶kg-1 饲料可改善NG淀粉饲喂组的干物质消化率,与G相似。玉米饲喂组或补充100/150 mgα-a的NG玉米mylase kg-1 供稿。在饲料中最低α-淀粉酶水平(50 mg kg-1 )下,HSI,肝糖原和肠淀粉酶活性显着增加(P <0.05),但由于日粮中进一步包含淀粉酶而没有增加。补充50 mg kg-1 的α-淀粉酶可增加肠道淀粉酶活性,在此范围内未观察到明显变化。在较高粗蛋白(CP)喂养组中,肝和肠的蛋白酶活性最高(P <0.05),但是在补充α-淀粉酶的组中,肠的蛋白酶活性显着更高。因此,可以得出结论,含有28%CP的饲料既可以含有不含α-淀粉酶的G玉米,也可以含有含有50 mgα-淀粉酶kg-1 的NG玉米饲料,作为罗氏乳蝇幼体的替代碳水化合物来源。

著录项

  • 来源
    《Fish Physiology and Biochemistry》 |2006年第3期|209-220|共12页
  • 作者单位

    Department of Fish Nutrition and Biochemistry Central Institute of Fisheries Education Versova Mumbai 400061 India;

    Department of Fish Nutrition and Biochemistry Central Institute of Fisheries Education Versova Mumbai 400061 India;

    Department of Fish Nutrition and Biochemistry Central Institute of Fisheries Education Versova Mumbai 400061 India;

    Department of Fish Nutrition and Biochemistry Central Institute of Fisheries Education Versova Mumbai 400061 India;

    Department of Fish Pathology and Microbiology Central Institute of Fisheries Education Versova Mumbai India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Apparent digestibility; α-Amylase; Carbohydrate; Gelatinization; Glycogen; Labeo rohita; Protease;

    机译:表观消化率;α-淀粉酶;碳水化合物;糊化;糖原;Labeo rohita;蛋白酶;

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