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Gut-bone axis response to dietary replacement of soybean meal with raw low-tannin faba bean seeds in broiler chickens

机译:肉仔鸡用低单宁蚕豆种子替代豆粕对肠轴的反应

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摘要

It seems that faba bean (FB) seeds could be a good protein-energy component in animal feed, but the presence of anti-nutritional substances limits their use as a substitute of soybean meal. The aim of the study was to examine the influence of different concentrations of raw, low-tannin, FB seeds on the gut-bone axis in Ross 308 broilers. One-day old chickens were randomly subjected to one of the 3 dietary treatments: the control group was fed standard diet based on soybean meal and without FB seeds, and two groups were fed 8%/15% and 16%/22% of raw low-tannin FB seeds in the starter and grower, respectively. On the 35th day, hematological and serum biochemical analyses as well histomorphometry of the small intestine and liver tissue and bone mechanical tests were performed. The diet type had no effect on the body weight gain and feed conversion ratio. However, the basal intestinal structures were significantly reduced in birds fed the lower concentration of FB. The enlargement of nerve plexuses was dependent on the concentration used in the diet and, additionally, on the kind of plexus and location in the intestinal tract. The liver was characterized by an increase in non-hepatocytes. There was no influence of the low-tannin FB seeds on most of the analyzed serum parameters in the 35-day-old broiler chickens, except the decreased concentration of total cholesterol and Ca in both experimental groups, triglycerides in group I, and P and uric acid in group II. Furthermore, the increasing concentration of the dietary low-tannin FB did not influence the activities of AspAT (except the group fed the higher amount of FB), ALAT, and LDH. The broiler chickens had no visible leg lesions and no problem in the locomotor function, but the tibiae were lighter mainly in birds fed the higher concentration of FB seeds. Geometric analysis revealed reduction of the cross section area and wall thickness, indicating a decline in the bone midshaft, which influenced the densitometric parameters and the results of mechanical tests. In conclusion, the dietary inclusion of raw low-tannin FB seeds had no negative effects on broiler growth, but disturbed the intestine structure and tibia characteristics. Therefore, all these negative effects necessitate additional examinations before inclusion of raw low-tannin FB seed into poultry diet.
机译:蚕豆(FB)种子可能是动物饲料中良好的蛋白质能量成分,但是抗营养物质的存在限制了它们用作豆粕的替代品。该研究的目的是检验罗斯308肉鸡中不同浓度的原始,低单宁,FB种子对肠骨轴的影响。一天大的鸡随机接受三种饮食处理中的一种:对照组饲喂基于大豆粉且不含FB种子的标准饮食,而两组饲喂未加工种子的8%/ 15%和16%/ 22%低单宁FB种子分别在发酵剂和种植者中。在第35天,进行了小肠和肝脏组织的血液学和血清生化分析以及组织形态测定和骨力学测试。日粮类型对体重增加和饲料转化率没有影响。然而,饲喂较低浓度FB的家禽的基础肠结构明显减少。神经丛的扩大取决于饮食中所用的浓度,另外取决于丛的种类和在肠道中的位置。肝脏的特征是非肝细胞增加。低鞣质FB种子对35天大的肉鸡的大多数分析血清参数没有影响,除了两个实验组中总胆固醇和Ca浓度降低,第一组中的甘油三酸酯以及P和P和第二组尿酸。此外,日粮低单宁FB浓度的增加不会影响AspAT的活性(除了饲喂较高FB的组),ALAT和LDH。肉鸡没有可见的腿部病变,运动功能也没有问题,但胫骨较轻,主要是在饲喂了较高浓度FB种子的禽类中。几何分析表明横截面积和壁厚减小,表明骨中轴下降,这影响了光密度测定参数和机械测试结果。总之,日粮中添加的低单宁FB种子对肉鸡的生长没有负面影响,但扰乱了肠道结构和胫骨特征。因此,所有这些负面影响都需要在将低鞣质FB原始种子纳入家禽饮食之前进行额外的检查。

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