首页> 外文OA文献 >Dosage Effects of Aqueous Extract of Baobab Tree (Adansonia digitata Linn) Bark on Growth Performance, Blood Profile, Intestinal Morphology and Microflora of Cockerel Chickens
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Dosage Effects of Aqueous Extract of Baobab Tree (Adansonia digitata Linn) Bark on Growth Performance, Blood Profile, Intestinal Morphology and Microflora of Cockerel Chickens

机译:猴面包树(Adansonia Digitata Limn)树皮对生长性能,血液剖面,肠形态和微生物的剂量效应

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摘要

This experiment investigated the dosage effects of the aqueous extract of Baobab Tree Bark (AEBTB) on growth performance, blood profile and intestinal micro-flora of cockerel chickens for 16 weeks. A total of 200 Isa brown day-old cockerel chicks were used in groups of AEBTB (0, 300, 325, 350 and 375 mg/ litre of water) for the experiment. Qualitative and quantitative (mg/100 g) phytochemical screening revealed that AEBTB contained flavonoid (36.33 mg), cardiac glycoside (31.46 mg), saponin (23.26 mg), alkaloid (24.86 mg), tannin (19.28 mg) and phenolic (17.06 mg). The most common components in GS-MSwas 9-Octadecenoic acid (C19H36O2; 296.0 g/mol). At the chick phase, significantly (p<0.05) highest final weight (416.50 g/bird) and weight gain of 47.69 g/bird/day were recorded in birds on 375 mg/litre when compared with the control. Alkaline phosphatase, RBC, Hb, PCV and MCHC were significantly (p<0.05) reduced by AEBTB in the birds when compared with the control and the lowest total bacterial count was in birds on 375 mg/litre of AEBTB. However, at the grower phase, birds on 300 mg/litre AEBTB had the best (p<0.05) feed conversion ratio. The study concluded that AEBTB at 300 mg/litre improved health status and growth performance of meat-type chickens.
机译:该实验研究了猴面包树皮(AEBTB)水提取物对生长性能,血液曲线和肠道微群16周的剂量效应。对于实验,共使用200个ISA Brown-Day-Dare-Daker Cockerel Chicks以AEBTB(0,300,325,350和375毫克/升水)组使用。定性和定量(Mg / 100g)植物化学筛查显示,AEBTB含有类黄酮(36.33mg),心糖苷(31.46mg),皂苷(23.26mg),生物碱(24.86mg),单宁(19.28mg)和酚醛(17.06毫克) )。 GS-MSWAS 9-十八烷烯酸(C19H36O2; 296.0g / mol)中最常见的组分。在鸡阶段,显着(P <0.05)与对照相比,在375毫克/升时,在375毫克/升时记录47.69克/鸟类/天的最高最终重量(416.50克/鸟)和体重增加。与对照相比,鸟类磷酸酶,RBC,Hb,PCV和MCHC显着(P <0.05)减少了鸟类中的AEBTB,并且在375毫克/升AEBTB上鸟类中最低的总细菌计数。然而,在种植者期间,300mg /升AebbTB的鸟类具有最佳(P <0.05)的饲料转化率。该研究得出结论,AEBTB适用于300毫克/升提高了肉类鸡的健康状况和生长性能。

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