首页> 美国卫生研究院文献>Journal of Animal Science >160 Can growth performance digesta characteristics and oxidative status of swine fed diets high in insoluble fiber be improved? An investigation into the mode of action of xylanase
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160 Can growth performance digesta characteristics and oxidative status of swine fed diets high in insoluble fiber be improved? An investigation into the mode of action of xylanase

机译:160可以提高猪喂养饮食的生长性能Vigesta特征和氧化状态改善了不溶性纤维的饮食木聚糖酶作用方式的研究

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摘要

Xylanase may improve the utilization of insoluble fiber by the pig, but its mode of action (MOA) is incompletely understood. The experimental objective was to investigate xylanase MOA in vivo in growing pigs fed a diet higher in insoluble fiber. Sixty gilts (n = 15 pigs/treatment; 25.43 ± 0.88 kg BW; L337 X Camborough, PIC, Hendersonville, TN) were blocked by weight, housed individually, and randomly assigned to one of four dietary treatments: a low-fiber control (LF; NDF=8.45%), a 30% corn bran higher-fiber control (HF; NDF=24.5%), HF + 100 mg xylanase/kg (HF+XY; Econase XT 25P; AB Vista, Marlborough, UK), and HF + 50 mg arabinoxylan-oligosaccharide/kg (HF+AX; 3–7 degrees of polymerization). Gilts were fed ad libitum for 36 d, followed by a 10-d period of being limit fed (80% of average ad libitum intake) and housed in metabolism crates for use in a related study. Pigs and feeders were weighed on d 0 and 36. On d 46, pigs were necropsied and ileal, cecal, and colonic digesta pH were measured; serum was collected for malondialdehyde (MDA) and total antioxidant capacity (TAC) analysis. Data were analyzed using PROC MIXED (SAS; 9.4) as a randomized complete block design with pig as the experimental unit, block and replicate as random effects, and treatment as a fixed effect. Insoluble fiber reduced ADG (858 vs. 698 g/d; LF vs. HF, P < 0.001) and GF (0.433 vs. 0.353; LF vs. HF, P < 0.001), but not ADFI (P > 0.05). Xylanase, but not arabinoxylan-oligosaccharide, when compared to HF, improved ADG (762 vs. 698 g/d; P < 0.05), GF (0.382 vs. 0.353; P < 0.05), and final BW (P < 0.05). Cecal and colonic pH did not differ (P > 0.05), but LF and HF+XY reduced ileal pH (P < 0.05). Xylanase supplementation increased serum TAC (P < 0.05), and tended to reduce MDA (P = 0.098). In conclusion, xylanase supplementation improved insoluble fiber utilization. The MOA could include mitigation of reactive oxygen species.
机译:木聚糖酶可改善不溶性纤维的由猪的利用率,但其作用方式(MOA)的不完全理解。实验目的是调查木聚糖酶MOA体内在不溶性纤维喂食饮食更高生长猪。六十小母猪(N = 15头猪/治疗; 25.43±0.88 kg体重; L337 X Camborough,PIC,Hendersonville的,TN)的量受阻,单独圈养,并随机分配到四个日粮处理之一:低纤维控制( LF; NDF = 8.45%),30%的玉米麸更高纤维控制(HF; NDF = 24.5%),HF + 100毫克木聚糖酶/ kg的(HF + XY; Econase XT 25P; AB Vista中,马尔堡,UK),和HF + 50毫克阿拉伯木聚糖寡糖/ kg的(HF + AX; 3-7的聚合度)。母猪随意喂食36 d,随后被送入限制10 d周期(平均随意摄取的80%)和容纳在代谢箱用于在相关的研究中使用。猪和馈线上称重d 0和36。d 46,猪进行尸体剖检,测定回肠,盲肠,结肠和食糜的pH;收集血清用于丙二醛(MDA)和总的抗氧化能力(TAC)分析。使用Proc混合(SAS; 9.4)作为随机完整块设计分析数据,作为实验单元,块并作为随机效果复制,并作为固定效果进行处理。不溶性纤维减少ADG(858对比698克/ d; LF与HF,P <0.001)和GF(0.433与0.353; LF与HF,P <0.001),但不ADFI(P> 0.05)。木聚糖酶,但不是阿拉伯木聚糖寡糖,相比HF时,改善的ADG(762对比698克/ d; P <0.05),GF(0.382与0.353; P <0.05),和最终BW(P <0.05)。盲肠和结肠pH值没有差异(P> 0.05),而LF和HF + XY减少回肠的pH值(P <0.05)。添加木聚糖酶提高血清TAC(P <0.05),并趋于减少MDA(P = 0.098)。总之,木聚糖酶补充提高不溶性纤维的利用率。农业部可能包括活性氧的缓解。

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