本试验旨在研究不同木聚糖水平饲粮中添加木聚糖酶对断奶仔猪生长性能、肠道微生物代谢产物和菌群数量的影响。选择30头体重相近,遗传背景相似的28日龄"杜×长×大"三元杂交断奶阉公猪,采用2×3因子试验设计,设2个饲粮木聚糖酶添加量(0和1 000 U/kg)和3个饲粮木聚糖水平(4.58%、6.23%和7.54%),将仔猪随机分为6个处理,每个处理5个重复,每个重复1头猪,试验期14 d。结果表明:试验1~14 d,添加木聚糖酶能显著提高仔猪平均日增重(P<0.05);添加木聚糖酶趋于提高回肠内容物乙酸含量(P>0.05),显著提高总挥发性脂肪酸含量(P<0.05),显著降低盲肠内容物氨含量(P<0.05),显著增加盲肠内容物双歧杆菌数量(P<0.05),且以上各项指标均以饲粮木聚糖水平为7.54%时,木聚糖酶的添加效果最为明显。但饲粮木聚糖水平对于以上指标均无显著影响(P>0.05)。综上所述,在本试验条件下,添加木聚糖酶可以提高断奶仔猪生长性能,并在一定程度上改善肠道微生态环境,且木聚糖酶的作用效果与饲粮木聚糖水平存在着剂量依赖关系。
A 2×3 factorial design was conducted to study the effects of dietary xylan level and xylanase supplementation on growth performance, intestinal microbial metabolites and intestinal flora of weaned piglets. Tow main factors were xylanase supplementation (0 and 1 000 U/kg) and dietary xylan level (4.58%, 6.23% and 7.54%). Thirty cross-bred (Duroc×Landrace×Large white) weaned piglets at 28 days of age with the similar weight and genetic background were randomly allotted to 6 treatments with 5 replicates each and 1 piglet in each replicate. The experiment lasted for 14 days. The results showed that during the experimental period from 1 to 14 days, the supplementation of xylanase increased the average daily gain (P<0.05). The supplementation of xylanase tended to improve the acetate content of ileum digesta (P>0.05), and improved the total volatile fatty acid content of ileum digesta (P<0.05), reduced the ammonia content of caecum digeta (P<0.05), and increased the amount of Bifidobacterium in caecum digeta (P<0.05). When dietary xylan level was 7.54%, the most significant effect of xylanase supplementation was found in those indexes (P<0.05). However, dietary xylan level did not significantly affect those indexes. In conclusion, under the condition of this trial, the supplementation of xylanase can improve growth performance and intestinal microenvironment of weaned piglets. In addition, there is a dose-dependent relationship between xylanase supplementation and dietary xylan level.
[1] BEDFORD M R. Mechanism of action and potential environmental benefits from the use of feed enzymes[J]. Animal Feed Science and Technology, 1995, 53:145-155.
[2] PARTRIDGE G G, BEDFORD M R. Enzymes in farm animal nutrition[M]. Wallingford: CABI Publishing, 2000:161-198.
[3] YIN Y L, MCEVOY J D G, SCHULZE H, et al. Apparent digestibility (ileal and overall) of nutrients and endogenous nitrogen losses in growing pigs fed wheat (var. Soissons) or its by-products without or with xylanase supplementation[J]. Livestock Production Science, 2000, 62:119-132.
[4] 何军.高效木聚糖酶基因工程菌的构建及重组酶酶学性质与功效研究 .博士学位论文.雅安:四川农业大学,2009:96-99.
[5] 陈洪.日粮中添加恩拉霉素对断奶仔猪生产性能、肠道微生物区系及代谢产物的影响 .硕士学位论文.雅安:四川农业大学,2009:20-23.
[6] 唐琼.酶制剂对肉鸭生产性能、消化器官和肠道内环境的影响 .硕士学位论文.雅安:四川农业大学,2009:29-30.
[7] DUSEL G, SCHULZE H, KLUGE H, et al. The effect of wheat quality measured by extra viscosity and dietary addition of feed enzymes on performance of young pigs[J]. Journal of Animal Science, 1997, 75(Suppl.1):200.
[8] 王修启,郑海刚,安汝义,等.小麦型饲粮添加复合酶对猪生产性能的影响[J].中国饲料,2000,21:12-13.
[9] 黄金秀,陈代文,张克英.木聚糖酶对不同木聚糖含量的仔猪饲粮养分消化率的影响[J].中国畜牧杂志,2008,44(7):21-24.
[10] CHOCT M, ANNISON G. Anti-nutritive effect of wheat pentosans in broiler chickens: roles of viscosity and gut microflora[J]. British Poultry Science, 1992, 33:821-834.
[11] HÖGBERG A, LINDBERG J E. Influence of cereal non-starch polysaccharides and enzyme supplementation on digestion site and gut environment in weaned piglets[J]. Animal Feed Science Technology, 2004, 116:113-128.
[12] WILLIAMS B A, VERSTEGEN M W A, TAMMINGA S. Fermentation in the large intestine of single-stomached animals and its relationship to animal health[J]. Nutrition Research Reviews, 2001, 14:207-227.
[13] DIEBOLD G, MOSENTHIN R, PIEPHO H P, et al. Effect of supplementation of xylanase and phospholipase to a wheat-based diet for weanling pigs on nutrient digestibility and concentrations of microbial metabolites in ileal digesta and feces[J]. Journal of Animal Science, 2004, 82(9):2647-2656.
[14] HSU C K, LIAO J W, CHUNG Y C, et al. Xylooligosaccharides and fructooligosaccharides affect the intestinal microbiota and precancerous colonic lesion development in rats[J]. The Journal of Nutrition, 2004, 134:1523-1528.
[15] 高俊勤,江芸,张耀,等.木聚糖酶对肉仔鸡后肠道微生物的影响[J].草业学报,2008,17(5):104-110.
[16] ENGBERG R M, HEDEMANN M S, STEENFELD S, et al. Influence of whole wheat and xylanase on broiler performance and microbial composition and activity in the digestive tract[J]. Poultry Science, 2004, 83:925-938.
[17] 丁雪梅,张克英.小麦-豆粕型日粮添加木聚糖酶对艾维茵肉鸡免疫指标、肠道形态和微生物菌群的影响[J].动物营养学报,2009,21(6):931-937.
[18] DÄNICKE S, VAHJEN W, SIMON O, et al. Effects of dietary fat type and xylanase supplementation to rye-based broiler diets on selected bacterial groups adhering to the intestinal epithelium, on transit time of feed, and on nutrient digestibility[J]. Poultry Science, 1999, 78:1292-1299.