植酸酶转基因动物的研究进展
摘要
植酸酶能专一分解植酸及其盐类物质,形成禽、畜可直接利用的磷酸和肌醇磷酸,同时可解除植酸的抗营养作用,从而提高饲料中磷的利用率、降低饲料成本、减轻磷污染、保护生态环境,并有效防止与植酸有关的动物消化系统疾病。因而近年来对植酸酶的研究日益增多。本文介绍了植酸酶基因转基因动物的研究进展。
出处
《当代畜禽养殖业》
2010年第5期3-6,共4页
Modern Animal Husbandry
参考文献16
-
1北京师范大学生物系生物化学教研室.基础生物化学实验[M].北京:高等教育出版社,1997.244-245.
-
2PruvaVats, Uttam C.Banerjee. 2004, Producnon studies and catalytic properties of phytase (myo- inositolhexakisphosphate phsophohydrolases): an overview. Enzyme and Microbial Technology, 35: 3-14.
-
3Richardson A E, Hadobas P A, et al. 2001, Extracelluar secretion of Aspergillus phytase from arabidopsis roots enables plants to obtain phosphorus from phytase. The Plant Journal, 25: 641-649.
-
4Gulati HK, Chadha BS, Saini HS. Production and characterization of thermostable alkaline phytase from Bacillus laevolacticus isolated from rhizosphere soil. [J]Ind Microbiol Biotechnol. 2006,12.
-
5Cowieson AJ, Singh DN, Adeola O. Prediction of ingredient quality and the effect of a combination of xylanase, amylase, protease and phytase in the diets of broiler chicks. 1. Growth performance and digestible nutrient intake. Br Poult Sci. 2006,47(4):477-489.
-
6Greiner R, Muzquiz M, Burbano C Purificafton and characterization of a phytate·degding enzyme from germinated fababeans(Fida, 8ba gar.Alameda)JAc Food Chem,2001,49 (5): 2234-2240.
-
7Linghua Zhang, Lijia An, Xiaorong Gao, et al. 2005, Properties of A. ficuum AS3.324 phytase expressed in tobacco. Proccess Biochemistry, 40: 213-216.
-
8Quantitative conversion of phytate to inorganic phosphorus in soybean seeds expressing a bacterial phytase.Plant Physiol. 2007 Dec 27.
-
9Transgenic maize plants expressing a fungal phytase gene.Transgenic Res. 2007 Oct1 2.
-
10孙伟,孙建义,翁晓燕.植物基因工程表达植酸酶的研究进展[J].饲料研究,2006,29(9):57-60. 被引量:2
二级参考文献29
-
1[1]Nelson T S. The utilization of phytate P by poultry, a review [J]. Poul Sci,1967,46: 862
-
2[2]Jongbloed A W,Kemme P A.Apparent digestible phosphorus in the feeding of pigs in relation to availability, requirement and environment:Ⅰ. Digestible phosphorus in feedstuffs from plant and animal origin [J].Nether J Agri Sci,1990,38:567
-
3[3]Jongbloed A W,Mroz Z, Kemme P A. The effect of supplementary Aspergillus niger phytase in diets for pigs on concentration and apparent digestibility of dry matter, total phosphorus and phytic acid in different sections of the alimentary tract[J]. J Anim Sci, 1992,70: 1159~1168
-
4[4]Kornegay E T, Qian H. Replacement of inorganic phosphorus by microbial phytase for young pigs fed a corn soybean meal diet [J]. Brit J Nutr,1996,76: 563~578
-
5[5]Lei X G,Ku P K, Miller E R, et al. Supplementing corn-soybean meal diets with microbial phytase linearly improves phytate phosphorus utilization by weanling pigs [J]. J Anim Sci, 1993, 71(12): 3359~3367
-
6[6]Beers S. Relative tussen dosering microbieel fytase en de verteerbaarheid van fosfor in twee verschillende startvoeders voor varkens [R]. Rapport I.V.V.O. 1992,Nr. 228, Lelystad
-
7[7]Simons P C M, Versteegh H A J,Jongbloed A W, et al. Improvement of phosphorus availability by microbial phytase in broilers and pigs [J]. Brit J Nutr ,1990,64: 525~540
-
8[8]Kornegay E T. Effectiveness of Natuphos phytase in improving the bioavailability of phosphorus and other nutrients in corn soybean meal diets for young pigs [A]. In: Coelho M B, Kornegay E T,eds. Phytase in Animal Nutrition and Waste Management [C]. BASF Corporation, Mount Olive, New Jersey, 1996a Corporation, Mount Olive, New Jersey, 1996d. 515~524
-
9[9]Officer D I,Batterham,E S. Enzyme supplementation of Linola meal [A]. Proceedings of Wollongbar Pig Industry Seminar on Feed Enzymes[C]. Queensland, 1992,56~57
-
10[10]Jongbloed A W,Kemme P A,Mroz Z,Jongbloed R.The effect of organic acids in diets for growing pigs on the efficacy of microbial phytase [A]. In:Coelho M B,Kornegay E T,eds.Phytase in Animal Nutrition and Waste Management [C]. BASF Corporation,Mount Olive,New Jersey, 1996d.515~524
共引文献41
-
1刘建平.植酸酶在猪饲料中的应用研究[J].畜牧与饲料科学,2004,25(5). 被引量:5
-
2张萍,梁建光,杨立红,常斌,蔡德华.草菇不同菌株的生物学特性研究[J].中国食用菌,2005,24(2):17-19. 被引量:12
-
3杜华茂,黄伟,谢和芳,王洪波,范守成.含PHYA基因的EDSV转移载体构建及表达研究[J].西南农业大学学报(自然科学版),2005,27(1):132-135.
-
4李娜,王钦德.转基因动物乳腺生物反应器研究概况[J].上海畜牧兽医通讯,2005(4):12-13. 被引量:2
-
5王娟,王永才,周勤飞.植酸酶及其对仔猪的影响[J].饲料博览,2005,17(11):10-12. 被引量:1
-
6袁建民,胡建宏,李青旺,贾永红,王立强.动物乳腺生物反应器研究进展[J].中国农学通报,2006,22(3):20-24. 被引量:7
-
7封伟贤,廖志超,黄所含,夏中生,谢建华,詹志春,卢玉发,马恒峻.饲粮中添加植酸酶对猪生长性能和血清生化指标的影响[J].饲料工业,2006,27(18):37-39. 被引量:7
-
8高春生,范光丽,张书松.植酸酶对断奶仔猪生产性能及对植酸磷代谢的影响[J].动物医学进展,2006,27(9):88-91. 被引量:3
-
9封伟贤,廖志超,夏中生,黄所含,谢建华,詹志春,卢玉发,马恒峻.生长猪玉米豆粕型饲粮中添加植酸酶的效果试验研究[J].广西农业生物科学,2006,25(B09):119-122. 被引量:1
-
10梁福广,何欣,马秋刚,宋春玲,计成.低蛋白日粮不同磷水平及添加植酸酶对生长猪氮磷代谢的影响[J].北京农学院学报,2007,22(1):24-27. 被引量:8
-
1王爽,冷义福,张守纯.植酸酶转基因动物的研究进展[J].当代畜禽养殖业,2008(11):3-5.
-
2苑建军,李金宝.奶牛肢蹄病的影响因素与预防措施[J].浙江畜牧兽医,2002,27(2):31-31. 被引量:14
-
3王晶.猪圆环病毒相关性系统疾病(PCV2-SD)和猪呼吸道疾病综合征(PRDC)的关系[J].中国猪业,2013,8(10):72-72.
-
4罗叶强.山羊亚硝酸盐中毒病例报告[J].贵州畜牧兽医,2006,30(6):19-19.
-
5王坤.蔬菜不宜久放[J].致富天地,2008(5):8-8. 被引量:1
-
6王印.种猪繁殖系统疾病[J].北方牧业,2007(19):15-15.
-
7杨德凤,王景芳.畜禽“免疫系统疾病”研究探讨及防治[J].畜牧兽医科技信息,2005,21(4):28-29. 被引量:4
-
8吕本忠.蔬菜测土配方施肥技术[J].食品安全导刊,2015(9X):146-147.
-
9周洁,宋雪晴,何旭东,王保松.柳树SjMIPS基因的克隆及其表达分析[J].江苏林业科技,2016,43(6):1-5. 被引量:5
-
10李文飞.宠物犬的饲养及疾病防治[J].甘肃畜牧兽医,2015,45(9):74-75. 被引量:1