Scientia Agricultura Sinica ›› 2011, Vol. 44 ›› Issue (15): 3223-3234.doi: 10.3864/j.issn.0578-1752.2011.15.018

• ANIMAL SCIENCE·RESOURCE INSECT • Previous Articles     Next Articles

Effects of Adding Pectinase Produced by Penicillium Oxalicum from Goose to Diet on the Digestive Physiology and Immunological Mechanisms for Improving the Performance of Broilers

WANG  Bao-Wei, JIANG  Xiao-Xia, ZHANG  Ming-Ai, GE  Wen-Hua, YUE  Bin   

  1. 1.青岛农业大学优质水禽研究所
    3.青岛农业大学食品科学与工程学院
  • Received:2010-07-20 Revised:2010-10-15 Online:2011-08-01 Published:2010-11-19

Abstract: 【Objective】 The objective of the experiment is to study the mechanism of pectinase produced by penicillium oxalicum Currie and Thom from goose, to determine the adding effects and the usage of pectinase in broiler diet, and to provide a theoretical basis and a technical support for the application of pectinase. 【Method】 Two hundred and forty healthy 1-day-old broiler chickens under same condition were randomly divided into 4 groups. Group 1 was the control group fed normal level of basal diet The other three groups’ diets were added with, respectively, pectinase at 0.249%, cellulose at 0.168%, compound enzyme at 0.15% prepared with pectinase and cellulose in proportion of 1﹕1. 【Result】 The growth of broilers in pectinase group was significant, pectinase improved the digestibility of P, CF, NDF, ADF, Met, Lys, Cys, Thr, and Ile significantly (P<0.05), and the digestibility of CP was improved by 17.31% remarkably (P<0.01). On the 28th day, compared with the control group, pectinase group’s amylase, lipase, trypsin activities of duodenum and pancreas (P<0.05), lipase activities of jejunum were significantly increased, pepsin activity was also higher than that of control group (P<0.01). On the 49th day pectinase group’s amylase, lipase, trypsin activities of pancreas, amylase, trypsin activities of duodenum, lipase activity of jejunum and pepsin activity were significantly higher than that of the control group (P<0.05), jejunum’s villous height was increased significantly (P<0.05) and the thickness of intestinal wall was decreased significantly (P<0.05). Pectinase group’s uric acid level and urea nitrogen level significantly decreased during 0-28 days and 29-49 days, blood glucose level significantly increased on 49th day (P<0.05), the numbers of Escherichia coli and Salmonella significantly decreased (P<0.05), the numbers of Lactobacillus and Bacillus bifidus significantly increased (P<0.05). Serum antibody titres to NDV of 49-day-old significantly increased (P<0.05). 【Conclusion】 The pectinase produced by penicillium oxalicum Currie and Thom from goose could increase the production of broiler performance and nutrient utilization, and improve the gut morphology, digestive enzyme activities and micro-ecological environment.

Key words: Pectinase Produced by Penicillium oxalicum Currie & Thom, broilers, growth, digestive physiology

[1]Saleh F, OHtsuka A, Tanaka T, Hayashi K. Effect of enzymes of microbial origin on in vitro digestibilities of dry matter and crude protein in soybean meal. Animal Science Journal, 2003, 74: 23-29.

[2]Malathi V, Devegowda G. In vitro evaluation of nonstarch polysaccharides digestibility of feed ingredients by enzymes. Poultry Science, 2001, 80: 302-305.

[3]Hruby M E. Pierson E E M. Implications of enzyme use in corn/sorghum/soy diets on performance nutrient utilization and gut microflora//Proceedings of the Multi-State Poultry Feeding and Nutrition Conference. Indianapolis, Indiana, USA, 2002.

[4]张礼星, 郑文陆, 章银军. 果胶酶的固态发酵法及在肉仔鸡饲养中的应用, 浙江工业大学学报, 2004(2): 33-37.

Zhang L X, Zheng W L, Zhang Y J. Pectinase production by solid-state fermentation and application in feeding young chickens. Journal of Zhengjiang Uinversity of Technology, 2004(2): 33-37.

[5]Kocher A, Choct M, Porter M D, Broz J. Effect of feed enzymes on nutritive value of soybean meal fed to broilers. British Poultry Science, 2002, 43: 54-63.

[6]许  毅. 果胶酶对肉鸡玉米豆粕型日粮养分利用率的影响[D]. 南京: 南京农业大学, 2004.

Xu Y. Study on the effects of pectinase on the nutrition utilization of corn-soybean meal diet in broilers[D]. Nanjing: Nanjing Agriculture University, 2004. (in Chinese)

[7]王宝维, 荆丽珍, 张  倩, 王巧莉. 果胶酶对鹅纤维及钙、磷消化率的影晌. 吉林农业大学学报, 2009, 31(6): 738-740, 745.

Wang B W, Jing L Z, Zhang Q, Wang Q L. Effects of pectinase on digestibility of fiber, Ca and P in Geese. Journal of Jilin Agricultural University, 2009, 31(6): 738-740, 745. (in Chinese)

[8]王春林, 陆文清, 李德发, 龚利敏, 徐桂云, 马  丹. 果胶酶对肉仔鸡生长性能及屠体性状的影响. 中国畜牧杂志, 2004, 40(2): 19-21.

Wang C L, Lu W Q, Li D F, Gong L M, Xu G Y, Ma D. Effect of pectinase on growth performance and carcass traits. Chinese Journal of Animal Science, 2004, 40(2): 19-21. (in Chinese)

[9]Patel M B, McGinnis J, Pubols M H. Effect of dietary cereal grain, citrus pectin and guar gum on liver fat in layinn hens and young chicks. Poultry Science, 1981, 60: 631-636.

[10]王菊花, 张克英, 陈代文, 非淀粉多糖酶对蛋白酶体外酶解棉籽粕效果的影响研究. 畜禽业, 2005(9): 12-15.

Wang J H, Zhang K Y, Chen D W. Study on the effect of non-starch polysaccharides to hydrolyzation of neutrase to cottonseed meal in vitro. Livestock and Poultry Industry, 2005(9): 12-15. (in Chinese)

[11]张浩森, 缪  静, 余晓斌. 果胶酶高产菌株的筛选及产酶条件的研究. 生物学杂志, 2008, 25(1): 28-30.

Zhang H S, Miao J, Yu X B. Breeding of high pectinase activity strain and its fermentation. Journal of Biology, 2008, 25(1): 28-30. (in Chinese)

[12]刘  曦, 路福平, 黎  明. 碱性果胶酶高产菌株产酶条件的优化. 生物技术, 2008, 18(6): 71-74.

Liu X, Lu F P, Li M. Optimization of culture conditions by a bacterium with high yield of alkaline pectinase. Biotechnology, 2008, 18(6): 71-74. (in Chinese)

[13]吴  琼, 刘自溶. 放线菌果胶酶产酶条件及酶促反应条件研. 工业微生物, 1994, 26(4): 28-32.

Wu Q, Liu Z R. Enzyme-produetion conditions and enzyme-reaetion conditions of peetinase produeed by actinomycetes. Industrial Microbiology, 1994, 26(4): 28 -32. (in Chinese)

[14]张健红, 李  寅, 刘  和, 刘登如, 陈  坚. 一株碱性果胶酶高产菌株的分离、系统发育分析和产酶条件的初步优化. 应用与环境生物学报, 2005, 11(3): 354-358.

Zhang J H, Li Y, Liu H, Liu D R, Chen J. Isolation, phylogenetic analysis of a bacterium with high yield of alkaline pectate lyase and optimization of its culture conditions, Applied and Environmental Biology, 2005, 11(3): 354-358. (in Chinese)

[15]王宝维. 菌种鉴定结果: 草酸青霉. 中国农科院微生物研究所检测鉴定报告, 2005, 11.

Wang B W. Species identification results: penicillium oxalicum. Identification reports from Microbiology Institute of Chinese Academy of Agricultural Sciences, 2005, 11.

[16]肉仔鸡饲养标准. 中华人民共和国农业行业标准. 北京: 中国农业出版社, 2004.

Standard of Broiler Feeding. Agricultural Industry Standards of the People's Republic of China. Beijing: China Agriculture Press, 2004. (in Chinese)

[17]陆胜民, 金勇丰, 张耀洲, 席  芳. 果实成熟过程中细胞壁组成的变化. 植物生理学通讯, 2001, 37(3): 246-249.

Lu S M, Jin Y F, Zhang Y Z, Xi F. Change of cell wall substances during ripening of fruit. Plant Physiology Communications, 2001, 37(3): 246-249. (in Chinese)

[18]钱利纯, 孙建义, 许梓荣. 酶制剂对肉鸡胴体组成和钙磷代谢的影响. 浙江大学学报, 2000, 26(6): 657-660.

Qian L C, Sun J Y, Xu Z R. Effects of enzymes on carcass composition and calcium phosphorus metabolism in broiler chicks. Journal of Zhejiang University, 2000, 26(6): 657-660. (in Chinese)

[19]高  峰. 非淀粉多糖酶制剂对鸡、猪生长的影响及其作用机制研究[D]. 南京: 南京农业大学, 2001.

Gao F. Effects of non-starch polysaccharides enzyme preparations supplemented to diets on the performances in chicken and pig and the mechanisms involved[D]. Nanjing: Nanjing Agriculture University, 2001. (in Chinese)

[20]赵  华. 复合酶制剂对肉鸡生产性能和养分利用率影响的研究[D]. 雅安: 四川农业大学, 2002.

Zhao H. Effects of enzyme complex on growth performance and nutrient utilization in broiler chickens[D]. Ya’an: Sichuang Agriculture University, 2002. (in Chinese)

[21]Osei S A, Oduro S. Effects of dietary enzyme on broiler chickens fed diets containing wheat bran. Journal of Animal and Feed Sciences, 2000, 9(4): 681-686.

[22]王爱娜. 嗜热毛壳菌纤维酶的稳定性及其对肉鸡的促生长机理研究[D]. 泰安: 山东农业大学, 2006.

Wang A N. Study on the stability of chaetomium thermophile fiber enzyme and mechanism of growth promotion in broilers[D]. Tai’an: Shandong Agriculture University, 2006. (in Chinese)

[23]胡秀华. 不同酶制剂对肉鸡饲粮养分回肠消化率的影响及作用机理研究[D]. 雅安: 四川农业大学, 2006.

Hu X H. The effects of different enzyme preparation on the ileal nutrient digestibility and the mechanisms in broilers[D]. Ya’an: Sichuang Agriculture University, 2006. (in Chinese)

[24]王明海, 高  峰. 复合酶制剂对肉仔鸡消化酶活性和代谢的影响. 中国家禽, 2008, 30(11): 23-26.

Wang M H, Gao F. Effects of enzyme preparations supplementation on digestive enzyme activity and metabolism in broiler chickens. China Poultry, 2008, 30(11): 23-26. (in Chinese)

[25]雷  丽. 木聚糖酶对小麦日粮非淀粉多糖降解规律及其对肉仔鸡肠道组织形态的影响研究[D]. 南京: 南京农业大学, 2007.

Lei L. Effect of xylanase supplementation in diets on digestibility of non-starch polysaccharides and on intestinal histology of broilers[D]. Nanjing: Nanjing Agriculture University, 2007. (in Chinese)

[26]Ritz C W, Hulet R M. Self B B, Denbow D M. Growth and intestinal morphology of male turkeys as influenced by dietary supplementation of amylase and xylanase. Poultry Science, l995, 74: 1329-1334.

[27]Mathlouthi N, Lallès J P, Lepercq P, Juste C, Larbier M. Xylanase and β-glucanase supplementation improve conjugated bile acid fraction in intestinal contents and increase villus size of small intestine wall in broiler chickens fed a rye-based diet. Animal Science, 2002, 80: 2773-2779.

[28]李兆勇. 玉米-豆粕型日粮添加复合酶制剂对仔猪生产性能影响及其机理研究[D]. 泰安: 山东农业大学, 2007.

Li Z Y. Study on the effects and mechanisms of multienzyme preparation on performance in piglets fed corn and soybean meal-based diets[D]. Tai’an: Shandong Agriculture University, 2007. (in Chinese)

[29]Brühlmann F. Purification and characterization of an extracellular pectate lyase from an Amycolata sp. Microbiolgy, 1995, 61(10): 3580-585.

[30]王  玲, 张慧玲. 复合酶制剂对肉雏鸡消化机能的影响. 饲料工业, 2000, 21(9): 32-33.

Wang L, Zhang H L. Effects of polyenzyme on digestive function of broiler chicken. Feed Industry, 2000, 21(9): 32-33. (in Chinese)

[31]Bedford M R. Reduced viscosity of intestinal digesta and enhanced nutrient digestibility in chickens given exogenous enzymes. Enzymes in Poultry and Swine Nutrition, 1997, 161-165.

[32]王清吉, 陈伟华, 韩正康. 大麦饲粮添加酶制剂对雏鸡增重、甲状腺激素水平及免疫力的影响. 畜牧与兽医, 1997, 29(6): 243-245.

Wang Q J, Chen W H, Han Z K. Effect of crude enzyme preparation supplemente to barley based diet on the body weight gain, immunity and endocrine secretion in chicks. Animal Husbandry and Veterinary Medicine, 1997, 29(6): 243-245. (in Chinese)

[33]朱忠珂. 玉米-豆粕日粮添加微生物酶对肉仔鸡生产性能、消化代谢及免疫功能的影响[D]. 杨凌: 西北农林科技大学, 2004.

Zhu Z K. Effects of microbial enzyme on performance, metabolism and immuno-function with broilers fed with corn-soybean diets[D]. Yangling: Northwest Sci-Tech University of Agriculture and Forestry, 2004. (in Chinese)
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