首页> 外文期刊>Aquaculture Research >Dietary protein level, microbial phytase, citric acid and their interactions on bone mineralization of Labeo rohita (Hamilton) juveniles.
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Dietary protein level, microbial phytase, citric acid and their interactions on bone mineralization of Labeo rohita (Hamilton) juveniles.

机译:日粮蛋白质水平,微生物植酸酶,柠檬酸及其对拉比欧(汉密尔顿)幼鱼骨矿化的相互作用。

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摘要

A feeding trial was conducted for 60 days to study the effect of dietary protein, microbial phytase and citric acid on intestinal digesta pH, bone ash and bone mineral contents in Labeo rohita juveniles. Eight experimental diets were prepared in 2x2x2 factorial arrangement with crude protein levels (25% and 35%), microbial phytase (0 and 500 U kg-1), and citric acid (0 and 3%). The 25% crude protein level feed was supplemented with phytase (U kg-1) and citric acid (%) at the level of 0,0 (C25); 500,0 (T1); 0,3 (T2); 500,3 (T3), and 35% crude protein level feed at 0.0 (C35); 500,0 (T4); 0,3 (T5) and 500,3(T6) respectively. One hundred and twenty juveniles of L. rohita (av. wt. 12.61-13.72 g) were distributed randomly in eight treatments, each of with three replicates. Addition of citric acid in the 25% crude protein feed significantly decreased (P<0.001) feed pH with concurrent decrease in intestinal digesta pH (P<0.001) and increased the bone ash content (P<0.05) by 4.6%. An interaction between citric acid and phytase (P<0.05) was also observed for bone ash content. Increasing the dietary protein content from 25% to 35% significantly decreased (P<0.01) bone Zn content by 14.9%, which was more prominent with the addition of citric acid, resulting in significant interaction between protein and citric acid (P<0.05), but the bone Cu content was significantly increased (P<0.01) with increasing dietary protein content. Dietary supplementation of microbial phytase (500 U kg-1) significantly increased (P<0.05) bone Na, Ca, K, P and Fe contents by 15%, 12.1%, 17.4%, 9.2% and 40.7%, respectively, whereas bone P and Mn content was significantly increased (P<0.05) by addition of citric acid (3%). Addition of phytase to plant-based diets increased the bioavailability of minerals, thereby increasing bone mineralization. The effect of phytase was increased because of addition of citric acid (3%)..
机译:进行了为期60天的喂养试验,以研究日粮蛋白,微生物植酸酶和柠檬酸对Labeo rohita幼鱼肠道消化pH,骨灰分和骨矿物质含量的影响。八种实验饮食以2x2x2析因排列,粗蛋白水平分别为25%和35%,微生物植酸酶为0和500 U kg-1,柠檬酸为0和3%。在25%的粗蛋白水平饲料中补充了植酸酶(U kg-1)和柠檬酸(%),含量为0(C25); 500,0(T1); 0,3(T2); 500,3(T3)和35%的粗蛋白水平以0.0(C35)进料; 500,0(T4); 0,3(T5)和500,3(T6)。在八个处理中随机分配了120个少年罗氏乳杆菌(平均重量12.61-13.72 g),每个处理重复三次。在25%的粗蛋白饲料中添加柠檬酸可显着降低(P <0.001)饲料pH,同时降低肠内消化液的pH(P <0.001),并使骨灰含量增加(P <0.05)4.6%。柠檬酸和植酸酶之间的相互作用(P <0.05)也观察到骨灰含量。饮食中蛋白质的含量从25%增加到35%可以​​显着降低(P <0.01)骨锌含量14.9%,在添加柠檬酸的情况下更为明显,导致蛋白质与柠檬酸之间的显着相互作用(P <0.05) ,但随着日粮蛋白质含量的增加,骨中铜的含量显着增加(P <0.01)。膳食补充微生物肌醇六磷酸酶(500 U kg-1)可使骨骼中的钠,钙,钾,磷和铁的含量分别显着增加(P <0.05)15%,12.1%,17.4%,9.2%和40.7%,而骨骼通过添加柠檬酸(3%),磷和锰含量显着增加(P <0.05)。在植物性饮食中添加植酸酶可增加矿物质的生物利用度,从而增加骨骼矿化度。由于添加了柠檬酸(3%),肌醇六磷酸酶的作用增强了。

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