Genetically engineered (modified) crops (Bacillus thuringiensis crops) and the world controversy on their safety
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Al-Deeb MA, Wilde GE (2003) Effect of Bt corn expressing Cry3Bb1 toxin for corn rootworm on above ground non-target arthropods. Environ Entomol 32(5):1164–1170
Alvarez-Alfageme F, Bigler F, Romeis J (2010) Laboratory toxicity studies demonstrating no adverse effects of Cry1Ab, Cry3Bb to larvae of Adalia bipunctata. Transgenic Res 20:467–479
Anilkumar B, Gopala A, Kalukumar B, Usha M, Anjaneyulu Y, Gopi KS (2010) Sero-biochemical studies in sheep fed on Bt cotton plants. Toxicol Int 17(2):99–101
Anonymous (2000) Bt cotton. www.bt.ucsd.edu/bt_cotton.html , pp 1–3
Anonymous (2009) Genetically modified food. https://en.wikipedia.org/wiki/genetically_modified_food_controversies , pp 1–11
Anonymous (2010) Genetically modified maize. http://en.wikipedia.org/wiki/Genetically_modified_maize , pp 1–6
Anonymous (2012) Genetically modified maize in Europe. http://www.gmocompass.org/eng/grocery_shopping/crops/18.genetically_modified_ , pp 1–2
Anonymous (2016) Current cotton scenario: cotton production and balance sheet. The Cotton Corporation of India Ltd, Navi Mumbai
Baeshen NA, Sheikh A, Bora RS, Ahmed MM, Ramadan HA, Radwan EM (2014) Cell factories for insulin production. Microb Cell Factories 13:1–9
Ben-Dov E (2014) Bacillus thuringiensisvar.israelensis and its dipteran specific toxins. Toxins (Basel.) 6(4):1222–1243
Bravo A, Gill SS, Soberon M (2007) Mode of action of Bacillusthuringiensis cry and Cyt toxins and their potential for insect control. Toxicon 49:422–435
Broderick NA, Raffa KF, Handelsman J (2006) Midgut bacteria required for Bt insecticidal activity. Proc. Natl. Acad.Sci., USA 103(41):196–199
Brookes, G. and Barfoot, P. 2017. GM crops: global socio-economic and environmental impacts (1996–2015). Dorcester: PG Economics LTD. Online: www.pgeconomics.co.uk/pdf/2017globalimpactstudy
Chakroun M, Banyulls N, Bel Y, Ferre J (2016) Bacterial vegetative insecticidal proteins from entomopathogenic bacteria. Microbiol Mol Biol Rev 80:329–350
Chowdhury EH, Kuribara H, Hino A, Sultana B, Mikami O, Shimada N (2003) Detection of corn intrinsic and recombinant DNA fragments and Cry1Ab protein in the gastrointestinal contents of pigs fed genetically modified corn. J Animal Sci 81:2546–2551
Crickmore N (2017) Bacillus thuringiensis toxins classification, pp 41–53. http://link.springer.com/chapter/10.1007/978-3-319-56678_3.pdf
Crickmore N, Zeigler DR, Feitelson J, Schnepf E (1998) Revision of the nomecluture for Bacillus thuringiensis pesticidal crystal proteins. Microbiol Mol Biol Rev 62(3):807–813
Crickmore, N.; Zeigler, D.R.; Schnepf, E.; Baum, J.; Bravo, A. and Dean, D.H. 2014. Bacillus thuringiensis toxins nomenclature. www.btnomencluture.infolifesci.sussex.ac.uk/Home/Neil_Crickmore/Bt (7 Nov. 2014)
Dahi HF (2013) Assessment of the effects of transgenic Bt cotton that contains Cry1Ac and Cry2Ab toxins on the abundance of non-target organisms community. Journal Nature and Science (JNSCI) 11(2):117–122
deVendomois JS, Roullier F, Dominique C, Seralini G (2009) A comparison of the effects of three GM corn varieties on mammalian health. Int J Biol Sci: 5(7):706-26
Domingo JL (2016) Safety assessment of GM plants: an updated review of the scientific literature. Food Chem Toxicol 95:12–18
Duan JJ, Marvier M, Huesing J, Dively G, Huang ZY (2008) A meta-analysis of effects of Bt toxins on honeybees. PLoS One 3(1):e1415
Gill SS, Cowels EA, Pietrantonio PV (1992) The mode of action of Bt endotoxins. Annu Rev Entomol 37:615–636
Gucciardi A (2011) Monsanto declared worst company of 2011. http://naturalociety.com/merck-monsanto-worst-company-award , pp 1–5
Hall H (2011) Bt corn: is it worth the risk. http://www.scq.ubc.ca/bt-corn-is-it-worth-the-risk , pp 1–3
Hammond BG, Jes JM (2011) Impact of food processing on the safety assessment for proteins introduced into biotechnology- derived soybean and corn crops. Food Chem Toxicol 49:711–721
Hammond BG, Kough J, Herouet GC, Jez JM (2013) Toxicological evaluation of proteins introduced into food crops. Grit Rev Toxixol 43(2):25–42
Herman R, Gao Y, Storer N (2006) Acid-induced unfolding kinetics in simulated gastric digestion of proteins. Regul Toxicol Pharmacol 46:93–96
Hilbeck A, Baumgartner M, Fried PM, Bigler F (1999) Effects of transgenic Bt corn-fed prey on immature development of Chrysoperla carnea. Environ Entomol 27:480–487
Hilbeck A, McMillan JM, Meier M, Himbel A, Tertikova M (2012) A controversy, re-visited: is Adalia bipunctata adversely affected by Bt toxins? Environ Sci Eur 24:10
Hilbeck A, Moar W, Pusztai-Garet M, Bigler F (1998) Toxicity of Bacillus thuringiensis Cry1Ab toxin to Chrysoperla carnea. Environ Entomol 27:1255–1263
Hofte H, Whitely HP (1989) Insecticidal crystal proteins of Bacillus thuringiensis. Microbiol Mol Biol Rev 53(2):242–255
James, C. 2016. Global status of commercialized Biotech/GM crops: ISAAA Brief No 52. ( http://www.isaaa.org )
Koch MS, Ward JM, Levine SL, Baum GA, Vicini JL, Hammond BG (2015) The food and environmental safety of Bt crops. Front Plant Sci 6:283–336
Kruger M, Van Renzburg JJ, Van den Berg J (2009) Prospective on the development of the stem borer resistance to Bt maize and refuge compliance at the Vaalharts irrigation scheme in South Africa. Crop Port 28:684–689
Liu F, Xu Z, Zhu YC, Huang F, Wang Y, Zhou W, Shen J (2010) Evidence of field evolved resistance to Cry1Ac expressing Bt cotton in Helicoverpa armigera in northern China. Pest Manag Sci 66:155–161
Liu XD, Zhai BP, Zhang XX, Zong JM (2005) Impact of transgenic cotton on Aphis gossypii. Ecol Entomol 30:307–315
Lu YH (2010) Mirid bug outbreaks in multiple crops correlated with wide scale adoption of Bt cotton in China. Science 328:1151–1154
Lu YH, Kongming W, Yuying J, Yuyuan G, Nicolas D (2012) Widespread adoption of Bt cotton and insecticide decrease promotes biocontrol services. Nature 487:362–365
Luthy P, Cordier J, Fischer H (1982) Bacillus thuringiensis as a bacterial insecticide: basic considerations and application. In: Kurstack E (ed) Microbial and viral pesticides. Marcel Dekker, New York, pp 35–74
Luttrel, R.G. and Ali, M.I. 2007. Exploring selection for Bt resistance in heliothines: results of laboratory and field studies. Pp. 1073–1086. In: D.A. Richter (ed.) Proceedings, 2007, Beltwide cotton conference, 9–12 January, 2007. New Orleans
Martineau B (2001) First fruit: the creation of the FlavSavr tomato and the birth of biotech foods. McGraw-Hill, p 269
Matten SR, Head GP, Quemada HD (2008) How governmental regulation can help the integration of Bt crops within IPM programs. In: Romois J, Shelton AM, Kennedy GG (eds) Integration of insect resistant genetically modified crops within IPM programs. Springer, New York, pp 27–39
Mendelshon M, Kough J, Vaituzis Z, Mathews K (2003) Are Bt crops safe? Nat Biotechnol 21(9):1003–1009
Mesnage R, Clair E, Gress S, Then C, Seralini GE (2011) Cytotoxicity of human cells of Cry1ab and Cry1Ac Bt insecticidal toxins alone or with glyphosphate-based herbicide. J Appl Toxicol:1–5
Mezzomo BP, Miranda AL, Freire IDS, Barbosa LCP, Lacava ZGM (2013) Hematoxicity of Bacillus thuringiensis as spore-crystal strains, Cry1Aa, Cry1Ab, Cry1Ac or Cry2Aa in Swiss albino mice. J. Hematol. Thromb. Dis 1:104
Moar WJ, Eubanks M, Freeman B, Head G (2004) Effects of Bt cotton on biological control agents in the southeastern United States. 1st international symposium on biol. Control of arthropods, Honolulu
Moussa S, Baiomy F, Abouzaid K, Nasr M, Moussa EA, Kamel EA (2018) Potential impact of host pest fed on Bt corn on the development of Chrysoperla carnea (Neur.: Chrysopidae). Egypt. J. Biol. Pest Control 28(23):1–6
Naranjo SE (2005) Long term assessment of the effects of transgenic Bt cotton on the abundance of non-target arthropod natural enemies. Environ Entomol 34:1193–1210
Naranjo SE (2011) Empact of Bt transgenic cotton on integrated pest management. J Agric Food Chem 59:5842–5851
Naud, M.; Krivine, J.; Houdebine, L.M.; Kuntz, M.; Dattee, Y. and Fellous, M. 2007. No. to a moratorium on the cultivation of Gm maize. http://nonaumorattoire.fr/english.htmnonaumoratoire.free.fr/english.htm: pp. 1-3
Netherwood T, Martin-Orue SM, O-Donnel AG, Gilbert HG (2004) Assessing the survival of transgenic plant DNA in the human gastro-intestinal tract. Nat Biotechnol 22(2):204–209
Onose J, Imai T, Hasumura M, Ueda M, Ozeki Y, Hirose M (2008) Evaluation of subchronic toxicity of diatery administered Cry1Ab protein from Bacillus thuringiensis in male rats with chemically induced gastrointestinal impairment. Food Chem Toxicol 46:2184–2189
Palma L, Muhuz D, Berry C, Murillo J, Caballero P (2014) Bacillus thuringiensis toxins: an overview of their biocidal activity. Toxins 6:3296–3325
Rettner R (2017) DNA: definition, structure and discovery. www.livescience.com/37247-dna , p 3
Roh JY, Choi JY, Li MS, Jin BR, Je YH (2007) Bacillus thuringiensis as a specific, safe and effective tool for insect control. J Microbiol Biotechnol 17(4):547–559
Romeis J, Alvarez-Alfageme F, Bigler F (2012) Putative effects of Cry1Ab to larvae of Adalia bipunctata -reply to Hilbeck et al., 2012. Environ. Sci Eur 24:18
Rose R, Dively GP, Pettis J (2007) Effects of Bt corn pollen on honeybees: emphasis on protocol development. Apidologie 38:1–11
Schmidt J, Braun Cw, Whitehouse IP, Hilbeck A (2009) Effects of activated Bt transgene products (Cry1Ab and Cry3Bb) on immature stages of the ladybird, Adalia bipunctata in laboratory. Arch Environ Contam Toxicol 56:221–228
Sears MK, Hillmich RL, Stanley DE, Oberhouser KS, Pleasants JM (2001) Impact of Bt corn pollen on monarch butterfly populations: a risk assessment. Proceedings of the National Academy of science (PNAS) 98:11937–11943
Seralini GE, Cellier D, de Vendomois JS (2007) New analysis of a rat feeding study with a genetically modified maize reveals signs of haepatorenal toxicity. Arch Environ Cotam Toxicol 52(4):596–602
Shelton AM, Olmstead DL, Burkness EC, Hutchison WD, Dively G, Welty C (2013) Multi-state trials of Bt sweet corn varieties for control of the corn earworm. J Econ Entomol 106:2151–2159
Sieradzki Z, Mazur M, Kwiatek K, Swiatkiewicz S, Koreleski J (2013) Assessing the possibility of genetically modified DNA transfer from GM feed to broiler laying hen, pig and calf tissues. Pol J Vet Sci 16:435–441
Smith JM (2007) Genetic roulette: the documented health risks of genetically engineered foods, Fairfield
Soberon M, Pardo L, Monoz C, Sanchez J, Gomez I, Porta H (2010) Pore formation by toxins. In: Andeluh G, Lakey J (eds) proteins: membrane binding and pore formation. Landes bioscience and springer science, New York, pp 127–142
Stewart, S.D. 2007. Bt cotton. www.utcrops.com/cotton_insects/pubs/Wi29-Btcotton
Tabashnik BE, Van Renzberg JJ, Carriere Y (2009) Field-evolved insect resistance to Bt crops: definition, theory, and data. J Econ Entomol 102(6):2011–2025
Vaek M, Reynaerts A, Hofte A (1987) Transgenic plants protected from insects. Nature 325(6125):33–37
Van Rensburg JJ (2007) First report of field resistance by stem borer, Busseo lafusca to Bt transgenic maize. S. African J. Plant Soil 24:147–151
Vyavhare, S.S. 2017. Bt cotton. Lubbock.tamu.edu ./2017/Bt_cotton
Wang Z, Wang Y, Cui H, Xia Y, Altosar J (2002) Toxicological evaluation of transgenic rice flour from Bacillus thuringiensis. J Sci food and Agriculture 82(7):738–744
Zakharyan RA (1979) Plasmid DNA from Bacillus thuringiensis. Microbiologia 48(2):226–229