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Growth performance and amino acid digestibility responses of broiler chickens fed diets containing purified soybean trypsin inhibitor and supplemented with a monocomponent protease

机译:肉鸡鸡喂养含纯化大豆胰蛋白酶抑制剂的饮食的生长性能和氨基酸消化率应答并用单一组分蛋白酶补充

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摘要

Trypsin inhibitors (TI) resident in soybeans affects protein utilization. While heat treatment influences residual TI, it simultaneously affects the structure and solubility of the soybean proteins and confounds any response to exogenous proteases. Using purified TI, the effect of exogenous protease to TI can be dissociated from changes in the soybean protein. Thus, the current study was designed to evaluate the growth performance and protein utilization responses of broiler chickens to purified TI and exogenous protease. Soybean meal (SBM) was preanalyzed for basal TI (2,996 TIU/g SBM), formulated into nutritionally adequate experimental diets to contain 1,033 TIU/g diet, and purified TI was added at 9,000 TIU/g diet. A total of 320 Cobb-500 broiler chicks were allocated to 4 diets, each with 8 replicate cages and 10 birds per replicate. The experimental diets were arranged as a 2 × 2 factorial with factors being dietary TI (1,033 or 10,033 TIU/g) and exogenous protease (0 or 15,000 PROT/kg). On day 7, 14, and 21 posthatching, protease supplementation improved the BW gain (P < 0.01) and gain to feed ratio (P < 0.05) of birds. On day 14 and 21 posthatching, the relative weight of pancreas increased (P < 0.05) with added TI but was reduced (P < 0.001) with protease supplementation. Apparent ileal digestibility of all amino acids, except methionine, decreased (P < 0.001) with added TI but increased (P < 0.05) with protease supplementation. Jejunal MUC-2 was downregulated (P < 0.01) and SCL7A-2 was upregulated (P < 0.05) by protease supplementation. Duodenal trypsin and chymotrypsin activities reduced (P < 0.05) with added TI but increased (P < 0.01) with protease supplementation. Exogenous protease produced longer villi (P < 0.05) and deeper crypts (P < 0.01) in the jejunal tissue. In conclusion, dietary addition of purified TI negatively affects nutrient utilization by broiler chickens. Furthermore, the study showed that the efficacy of the exogenous protease might be independent of dietary TI concentration.
机译:史族抑制剂(TI)居住在大豆中影响蛋白质利用率。虽然热处理影响残留的Ti,但它同时影响大豆蛋白的结构和溶解性,并对外源蛋白酶的任何反应混淆。使用纯化的Ti,外源蛋白酶至Ti的效果可以从大豆蛋白的变化中解离。因此,目前的研究旨在评估肉鸡鸡纯化Ti和外源蛋白酶的生长性能和蛋白质利用响应。对于基础Ti(2,996吨/克SBM)预先添加到营养充足的实验饮食中,以含有1,033μg/ g饮食,加入纯化的Ti,以9,000酮/ G饮食加入纯化Ti。共有320个COBB-500肉鸡雏鸡被分配给4次饮食,每次复制8个复制笼和10只鸟类。实验饮食被安排为2×2因子,因子是膳食Ti(1,033或10,033 TiU / g)和外源蛋白酶(0或15,000个prot / kg)。在第7,14和21天,蛋白酶补充改善BW增益(P <0.01)并获得饲料比率(P <0.05)鸟类。在第14和21天,胰腺增加(P <0.05)的相对重量增加(P <0.05),但蛋白酶补充剂(p <0.001)降低(p <0.001)。除甲硫氨酸外,所有氨基酸的表观髂骨消化率降低(P <0.001),添加了(P <0.001),但随着蛋白酶补充而增加(P <0.05)。通过蛋白酶补充,将Jejunal Muc-2下调(P <0.01)和SCL7A-2上调(P <0.05)。十二指肠胰蛋白酶和胰凝乳蛋白酶减少(P <0.05),添加Ti但增加(P <0.01),蛋白酶补充。外源蛋白酶在JEUNAL组织中产生较长的绒毛(P <0.05)和更深的隐窝(P <0.01)。总之,纯化Ti的膳食添加对肉鸡的营养利用产生负面影响。此外,该研究表明外源蛋白酶的功效可能与膳食Ti浓度无关。

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