›› 2015, Vol. 42 ›› Issue (6): 1464-1470.doi: 10.16431/j.cnki.1671-7236.2015.06.021
Previous Articles Next Articles
LI Ze-yang1,2, FENG Jing-hai1, ZHOU Ming2
Received:
2014-12-19
Online:
2015-06-20
Published:
2015-07-23
CLC Number:
LI Ze-yang, FENG Jing-hai, ZHOU Ming. Research Progress on Safety Assessment of Transgenic Bt Rice as Animal Diets[J]. , 2015, 42(6): 1464-1470.
[1] Van N N,Ferrero A.Meeting the challenges of global rice production[J].Paddy and Water Environment,2006,4(1):1-9. [2] Yuan L P.Hybird rice technology for food security in the world[A].International Conference on Sustainable Rice Systems.FAQ,Rome,Italy[C].2004. [3] Rao Y,Dong G,Zeng D,et al.Genetic analysis of leaffolder resistance in rice[J].Journal of Genetics and Genomics,2010,37(5):325-331. [4] Sanahuja G,Banakar R,Twyman R M,et al.Bacillus thuringiensis:A century of research,development and commercial applications[J].Plant Biotechnology Journal,2011,9(3):283-300. [5] Betz F S,Hammond B G,Fuchs R L.Safety and advantages of Bacillus thuringiensis protected plants to control insect pests[J].Regulatory Toxicology and Pharmacology,2000,32(2):156-173. [6] Shao Z,Cui Y,Liu X,et al.Processing of delta-endotoxin of Bacillus thuringiensis subsp.kurstaki HD-1 in Heliothis armigera midgut juice and the effects of protease inhibitors[J].Journal of Invertebrate Pathology,1998,72(1):73-81. [7] Knight P J,Crickmore N,Ellar D J.The receptor for Bacillus thuringiensis Cry1A (c) delta-endotoxin in the brush border membrane of the lepidopteran Manduca sexta is aminopeptidase N[J].Molecular Microbiology,1994,11(3):429-436. [8] McClintock J T,Schaffer C R,Sjoblad R D.A comparative review of the mammalian toxicity of Bacillus thuringiensis-based pesticides[J].Pesticide Science,1995,45(2):95-105. [9] James C.Global status of commercialized biotech/GM crops:2009[M].Ithaca,NY:ISAAA,2009. [10] James C.Global status of commercialized biotech/GM crops:2011[M].Ithaca,NY:ISAAA,2011. [11] James C.2012年全球生物技术/转基因作物商业化发展态势[J].中国生物工程杂志,2013,33(2):1-8. [12] Toriyama K,Arimoto Y,Uchimiya H,et al.Transgenic rice plants after direct gene transfer into protoplasts[J].Bio/Technology,1988,6:1072-1074. [13] Zhang W,Wu R.Efficient regeneration of transgenic plant from rice protoplasts and correctly regulated expression of the foreign gene in the plant[J].Theoretical and Applied Genetics,1988,76(6):835-840. [14] 谢道昕,范云六,倪王冲.苏云金芽孢杆菌杀虫蛋白基因导入中国栽培品种中花11号获得转基因植株[J].中国科学B辑,1991,8:830-834. [15] Fujimoto H,Itoh K,Yamammoto M,et al.Insect resistant rice generated by introduction of a modified delta-endotoxin gene of Bacillus thuringiensis[J].Nature Biotechnology,1993,11(10):1151-1155. [16] Wünn J,Klöti A,Burkhardt P K,et al.Transgenic indica rice breeding line IR58 expressing a synthethic Cry1A(b) gene from Bacillus thuringiensis provides effective insect pest control[J].Biotechnology,1996,14(2):171-176. [17] Wu C,Fan Y,Zhang C,et al.Transgenic fertile japonica rice plants expressing a modified Cry1A (b) gene resistant to yellow stem borer[J].Plant Cell Reports,1997,17(2):129-132. [18] 舒庆尧,叶恭银.转基因水稻"克螟稻"选育[J].浙江农业大学学报,1998,24(6):579-580. [19] 张志罡,李 勇,朱兆洲.Cry1Ab杀虫蛋白在转Bt水稻中的表达及在害虫体内的积累动态[J].中国植保科学,2010,7:10-13. [20] 孙国庆,金芜军,宛煜嵩,等.中国转基因水稻的研究进展及产业化问题分析[J].生物技术通报,2010,12:1-6. [21] Young A L,Lewis C G.Biotechnology and potential nutritional implications for children[J].Pediatric Clinics of North America,1995,42(4):917-930. [22] Colman A.Production of proteins in the milk of transgenic livestock:Problems,solutions,and successes[J].The American Journal of Clinical Nutrition,1996,63(4):639S-645S. [23] Nordlee J A,Taylor S L,Townsend J A,et al.Identification of a Brazil-nut allergen in transgenic soybeans[J].New England Journal of Medicine,1996,334(11):688-692. [24] Mcmillan M,Thompson J C.An outbreak of suspected solanine poisoning in schoolboys:Examinations of criteria of solanine poisoning[J].Q J Med,1979,48(190):227-243. [25] OECD.Safety evaluation of foods derived by modern biotechnology:Concepts and principles[R].Organization for Economic,1993. [26] Shimada N,Kim Y S,Miyamoto K,et al.Effects of Bacillus thuringiensis Cry1Ab toxin on mammalian cells[J].The Journal of Veterinary Medical Science,2003,65(2):187-191. [27] Kulkarni S D,Sinha B N,Kumar J K.Synthesis,characterization and evaluation of release retardant modified starches of Lagenaria siceraria seeds[J].International Journal of Biological Macromolecules,2013,61:396-403. [28] FAO/WHO.Safety aspects of genetically modified foods of plant origin[R].Report of a Joint FAO/WHO Expert Consultation on Foods derived from Biotechnology,World Health Organization,Geneva,2000. [29] Snell C,Bernheim A,Bergé J B,et al.Assessment of the health impact of GM plant diets in long-term and multigenerational animal feeding trials:A literature review[J].Food and Chemical Toxicology,2012,50(3):1134-1148. [30] 王忠华,吴殿星,夏英武.转Bt基因水稻"克螟稻"淀粉食用品质与稻米营养成分的研究[J].农业生物技术学报,2005,13(6):718-722. [31] Cao S S,He X Y,Xu W T,et al.Safety assessment of transgenic Bacillus thuringiensis rice T1c-19 in sprague-dawly rats from metabonomics and bacterial profile perspectives[J].IUBMB Life,2012,64(3):242-250. [32] 贾乾涛,杨长举,石尚柏,等.转Bt基因水稻氨基酸含量研究[J].浙江农业学报,2005,17(1):39-41. [33] 杜红方.转基因水稻作为肉仔鸡饲粮原料的安全性评价[D].北京:中国农业科学院,2006. [34] 熊燕飞,覃铜城,陈 超,等.转Bt基因水稻对雄性小白鼠体内酶活性的影响[J].湖北农业科学,2011,50(24):5200-5205. [35] 王忠华,王 茵,崔海瑞,等.Bt水稻"克螟稻"稻米毒理性评价研究初报[J].中国农业科学,2002,5(12):1487-1492. [36] Wang E H,Yu Z,Hu J,et al.Effects of 90-day feeding of transgenic Bt rice TT51 on the reproductive system in male rats[J].Food and Chemical Toxicology,2013,62:390-396. [37] Cao S,Xu W,Luo Y,et al.Metabonomics study of transgenic Bacillus thuringiensis rice (T2A-1) meal in a 90 day dietary toxicity study in rats[J].Molecular Biosystems,2011,7(7):2304-2310. [38] Xu W,Cao S,He X,et al.Safety assessment of Cry1Ab/Ac fusion protein [J].Food and Chemical Toxicology,2009,47(7):1459-1465. [39] Cao S,He X,Xu W,et al.Potential allergenicity research of Cry1C protein from genetically modified rice[J].Regulatory Toxicology and Pharmacology,2012,63(2):181-187. [40] Cao S,He X,Xu W,et al.Safety assessment of Cry1C protein from genetically modified rice according to the national standards of PR China for a new food resource[J].Regulatory Toxicology and Pharmacology,2010,58(3):474-481. [41] Wang E H,Yu Z,Hu J,et al.A two-generation reproduction study with transgenic Bt rice TT51 in Wistar rats[J].Food and Chemical Toxicology,2014,65:312-320. [42] Tang X,Han F,Zhao K,et al.A 90-day dietary toxicity study of genetically modified rice T1C-1 expressing Cry1C protein in Sprague Dawley rats[J].PLoS One,2012,7(12):e52507. [43] 汪 洋.转Bt基因稻谷对小鼠安全性的影响[D].长沙:湖南农业大学,2012. [44] Wang Y,Wei B,Tian Y,et al.Evaluation of the potential effect of transgenic rice expressing Cry1Ab on the hematology and enzyme activity in organs of female Swiss rats[J].PLoS One,2013,8(11):e80424. [45] 张珍誉,刘立军,张 琳,等.转Bt基因稻谷对小鼠的亚慢性毒性实验[J].毒理学杂志,2010,24(2):126-129. [46] 李俊生,肖能文,赵彩云,等.转基因稻米饲料对昆明雄性小白鼠营养效应的影响[J].湖北农业科学,2011,50(19):4013-4017. [47] 孙 锴.转基因水稻对肉仔鸡饲用安全性研究[D].南京:南京农业大学,2011. [48] 王 军.转基因糙米在肉仔鸡日粮中的安全性初探[D].杨凌:西北农林科技大学,2006. [49] 秦海峰.转Cry1Ac_sck基因糙米作为肉仔鸡日粮原料的安全性评价[D].北京:中国农业科学院,2012. [50] 杜红方,齐广海,武书庚,等.转基因糙米对肉仔鸡消化能力及血液生化指标和器官发育的影响[J].中国畜牧杂志,2007,43(11):15-18. [51] 冯永全,胡 静,支 媛,等.转Bt基因大米暴露对亲代雌性大鼠免疫系统影响的研究[J].中国食品卫生杂志,2013,25(4):298-302. [52] Yuan Y F,Xu W T,Luo Y B,et al.Effects of genetically modified T2A-1 rice on faecal microflora of rats during 90 day supplementation[J].Journal of the Science of Food and Agriculture,2011,91:2066-2072. [53] Yuan Y,Xu W,He X,et al.Effects of genetically modified T2A-1 rice on the GI health of rats after 90-day supplement[J].Scientific Reports,2013,3:1962. [54] 赵康宁,孙 锴,刘 晶,等.转基因水稻对肉仔鸡生产性能及肠道微生物群落的影响[J].南京农业大学学报,2012,35(6):118-124. [55] Schrder M,Poulsen M,Wilcks A,et al.A 90-day safety study of genetically modified rice expressing Cry1Ab protein (Bacillus thuringiensis toxin) in Wistar rats[J].Food and Chemical Toxicology,2007,45(3):339-349. [56] Ash J,Novak C,Scheideler S E.The fate of genetically modified protein from roundup ready soybeans in laying hens[J].The Journal of Applied Poultry Research,2003,12(2):242-245. [57] Rossi F,Morlacchini M,Fusconi G,et al.Effect of Bt corn on broiler growth performance and fate of feed-derived DNA in the digestive tract[J].Poultry Science,2005,84(7):1022-1030. [58] Aeschbacher K,Messikommer R,Meile L,et al.Bt176 corn in poultry nutrition:Physiological characteristics and fate of recombinant plant DNA in chickens[J].Poultry Science,2005,84(3):385-394. [59] Reuter T,Aulrich K.Investigations on genetically modified maize (Bt-maize) in pig nutrition:Fate of feed-ingested foreign DNA in pig bodies[J].European Food Research and Technology,2003,216(3):185-192. [60] Einspanier R,Klotz A,Kraft J,et al.The fate of forage plant DNA in farm animals:A collaborative case-study investigating cattle and chicken fed recombinant plant material[J].European Food Research and Technology,2001,212(2):129-134. [61] Scheideler S E,Hileman R E,Weber T,et al.The in vivo digestive fate of the Cry3Bb1 protein in laying hens fed diets containing MON 863 corn[J].Poultry Science,2008,87(6):1089-1097. [62] Palka-Santini M,Schwarz-Herzke B,Hösel M,et al.The gastrointestinal tract as the portal of entry for foreign macromolecules:Fate of DNA and proteins[J].Molecular Genetics and Genomics,2003,270(3):201-215. |
[1] | WANG Yangyang, QIN Shizhen, TANG Defu, SHAO Yuxin, SHI Zhaoguo, WANG Zheng, LI Xing, ZHAO Dongdong. Effects of Zinc, Lactobacillus on Immune and Antioxidant Function of Squabs Infected with Salmonella [J]. China Animal Husbandry and Veterinary Medicine, 2023, 50(6): 2276-2285. |
[2] | LI Yanghui, XU Tao, ZHANG Shuxian, LIU Ke, JIA Tianqing, CHEN Ning, YIN Junliang, XI Linqiao, WANG Dong, ZHOU Xiaoling. Effect of Replacing Wheat Straw with Cumin Straw on Growth Performance, Slaughter Performance and Plasma Biochemical Parameters of Lambs [J]. China Animal Husbandry and Veterinary Medicine, 2023, 50(6): 2296-2304. |
[3] | WU Liting, LU Rui, LIU Banhong, BAO Hongduo, WANG Yongjuan, ZHOU Yan, WANG Ran, ZHANG Hui. Combination of Clostridium perfringens Phage and Lactobacillus Improves Growth Performance and Regulates Intestinal Flora Function of Broilers [J]. China Animal Husbandry and Veterinary Medicine, 2023, 50(6): 2321-2332. |
[4] | LI Jie, CHEN Chuwen, ZHAO Ruipeng, LIU Yuan, LI Zhixiong. Research Progress on Long Non-coding RNA of Muscle Development in Livestock and Poultry [J]. China Animal Husbandry and Veterinary Medicine, 2023, 50(6): 2427-2438. |
[5] | QIAO Hongxing, ZHANG Han, ZHAO Shengzhen, SUN Yanting, ZHANG Xiaojing, KANG Yu, BIAN Chuanzhou. Effects of Fermented Eucommia ulmoides Leaves on Production Performance, Antioxidant Properties and Immune Related Gene Expression in Broilers [J]. China Animal Husbandry and Veterinary Medicine, 2023, 50(5): 1845-1854. |
[6] | OUYANG Kun, WEI Limin, SUN Ruiping, XIE Yali, QI Qi, LI Xiang, LIU Quanwei, CHAO Zhe, ZHANG Yongliang, CHEN Ting. Effects of Curcumin on Growth Performance,Feed Apparent Digestibility and Serum Biochemical Indexes in Hainan Tunchang Pigs [J]. China Animal Husbandry and Veterinary Medicine, 2023, 50(5): 1867-1875. |
[7] | ZHANG Huaqiang, WANG Pinsheng, LI Xiao, WEI Panpeng, YAN Lingmin, JIANG Bingbing, WANG Zhaogui, WANG Xuefang, ZENG Huanqing, FAN Yi, GAO Zhenglong, WANG Xuebing. Effects of Fermented Hybrid Broussonetia papyrifera on Growth Performance, Meat Quality,Digestive Enzyme Activity and Intestinal Flora Structure of Hu Sheep [J]. China Animal Husbandry and Veterinary Medicine, 2023, 50(5): 1876-1887. |
[8] | JIANG Haijun, WANG Dan, GUO Yu, WEI Li, HOU Lei, WANG Jing, ZHU Shanshan, LIU Jue. Fusion Expression and Immunogenicity of Recombinant Cap-flagellin Protein of Porcine Circovirus Type 3 [J]. China Animal Husbandry and Veterinary Medicine, 2023, 50(5): 2044-2052. |
[9] | HU Honglian, LI Chao, CHEN Liqing, SONG Liwen, ZHAO Meng, ZHANG Jianxia, WANG Dian, GAO Min. Effects of Dietary β-carotene Supplementation on Lactation Performance, Blood Routine,Serum Biochemical and Immune Indexes of Dairy Cows during the Lactating Peak Period [J]. China Animal Husbandry and Veterinary Medicine, 2023, 50(4): 1375-1384. |
[10] | GUO Bingyu, LI Li, LI Chen, KONG Xianghui. Role and Molecular Mechanism of Mpeg1 in Pathogen Clearance [J]. China Animal Husbandry and Veterinary Medicine, 2023, 50(4): 1584-1592. |
[11] | REN Jiangang, GUAN Peng, HUANG Jianzhi, SHENG Yueyun, BAO Tiezhu, MA Zhiping, QIAN Wenxi. Effects of Dietary Energy Level on Growth-fattening Performance and Serum Biochemical Indices of Angus Bulls [J]. China Animal Husbandry and Veterinary Medicine, 2023, 50(3): 966-976. |
[12] | XIONG Taidi, JIANG Shouqun, ZHANG Huihua, ZHU Cui. Research Progress on Transportation Stress and Its Mitigation Measures in Poultry [J]. China Animal Husbandry and Veterinary Medicine, 2023, 50(3): 977-988. |
[13] | LIU Zhen, ZHOU Xueqin, XU Fei, LI Zhefeng, SUN Hanxue, LI Guoqin, TAO Zhengrong, GUAN Mei, ZHENG Qiang, DIAO Xinping, LU Lizhi. Effects of Coated Sodium Butyrate on Growing Performance,Slaughter Performance, Immune Organ Index and Digestive Enzyme Activity of Breeding Pigeons and Squabs [J]. China Animal Husbandry and Veterinary Medicine, 2023, 50(3): 998-1006. |
[14] | CHEN Shaojun, LI Gang, NAI Zida, LIU Di, JIANG Xinpeng. Research and Application of Gene-edited Probiotics in Animal Intestinal Health [J]. China Animal Husbandry and Veterinary Medicine, 2023, 50(3): 1016-1024. |
[15] | LIU Xinyue, LI Lifang, WANG Zhenbao, ZHANG Wenliang, ZHANG Xin, ZHAO Hongtao, LI Pengyu, ZHENG Haotian, XIAO Jin, QI Peng. Adjuvants Screening and Immune Protection of Porcine Circovirus Type 2 Synthetic Peptide Vaccine [J]. China Animal Husbandry and Veterinary Medicine, 2023, 50(3): 1068-1080. |
Viewed | ||||||||||||||||||||||||||||||||||||||||||||||||||
Full text 161
|
|
|||||||||||||||||||||||||||||||||||||||||||||||||
Abstract 307
|
|
|||||||||||||||||||||||||||||||||||||||||||||||||