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The Science Behind It Vol. 3, L-Q, p. 2 Matthews-Paganelli

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This is a work in progress, please excuse any mistakes or duplicates. Last updated 8/29/13.

This document shall be used to list links to scientific studies that:

a)  document the fallacies in scientific studies which find that GMOs and related pesticides are safe, or
b)  studies which identified dangerous health and environmental impacts of GMOs and related pesticides.
 
The studies are divided into four linked volumes organized by primary scientist last name.  org

        The Science Behind It Vol. 1, A-H http://www.babesagainstbiotech.org/#!the-science-behind-it/c18ku

        The Science Behind it Vol. 2, I-K http://www.babesagainstbiotech.org/#!v2-science-behind-it-/cvak

       The Science Behind It Vol. 3, L-Q  

        p. 1 Laitinen-Marvier http://www.babesagainstbiotech.org/#!v3-p1-science-behind-it/crp6

           p. 2 Matthews-Paganelli http://www.babesagainstbiotech.org/#!v3-science-behind-it-l-q-page-2/c1nd4

           p. 3 Pawlowski-Quist http://www.babesagainstbiotech.org/#!v3-p3-science-behind-it/c1kbi

       The Science Behind It Vol. 4, R-Z http://www.babesagainstbiotech.org/#!v4-p1-science-behind-it/c18uz

The Science Behind It, Volume 3, L-Q, Page 2 Matthews-Paganelli

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Matthews, Sg; Brawley, Pa; Hayes, Rm, 1998: Effect of glyphosate drift on non-glyphosate tolerant corn. Proceedings Southern Weed Science Society1(51): 259-260

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Mayeno AN, Gleich GJ. (1994) Eosinophilia-myalgia syndrome and tryptophan production A cautionarytale.  Trends Biotechnol. Sep1994;12(9):346-352.  http://www.ncbi.nlm.nih.gov/pubmed/7765187

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Mc Gaughey WH and Whalon ME (1992) Managing insect resistance to Bacillus thuringiensis toxins.  Science 258: 1451-1455.  http://www.sciencemag.org/content/258/5087/1451.abstract

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Meihis LN, Higdon ML, Siegfried BD, Miller NJ, Sappington TW, Ellersieck MR, Spencer TA & Hibbard BE (2008) Increased survival of western corn rootworm on transgenic corn within 3 generations of on-plant greenhouse selection.  Proc Natl Acad Sci USA 105(49): 19177-82.  http://www.ncbi.nlm.nih.gov/pubmed/19047626

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Men X, Ge F, Edwards C.A. and Yardim E.N. (2005) The influence of pesticide applications on Helicoverpa armigera Hübner and sucking pests in transgenic Bt cotton and non-transgenic cotton in China.  Crop Protection 24 (4):319324.

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Mercer, D.K., Scott, K.P., Bruce-Johnson, W.A., Glover, L.A. and Flint, H.J. (1999) Fate of free DNA and transformation of oral bacterium Streptococcus gordonii DL1 plasmid DNA in human saliva. Applied and Environmental Microbiology 65, 6-10.  http://www.ncbi.nlm.nih.gov/pmc/articles/PMC90975/ 

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Mercer DK, Scott KP, Melville CM, Glover LA and Flint HJ (2001) Transformation of an oral bacterium via chromosomal integration of free DNA in the presence of human saliva.  FEMS Microbiol Lett. 200(2):163-7.  http://www.ncbi.nlm.nih.gov/pubmed/11425469

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Robin Mesnage, Christian Moesch, Rozenn Le Grand, Guillaume Lauthier,  Joël Spiroux de Vendômois, Steeve Gress, Gilles-Eric Séralini (2012) Glyphosate Exposure in a Farmer’s Family  Journal of Environmental Protection, 3, 1001-1003  www.scirp.org/journal/PaperDownload.aspx?paperID=22645

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Mesnage R, Bernay B, Séralini GE.  (2012) Ethoxylated adjuvants of glyphosate-based herbicides are active principles of human cell toxicity.  Toxicology. Sep 21. pii: S0300-483X(12)00345-9.  http://www.ncbi.nlm.nih.gov/pubmed/23000283

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R. Mesnage, E. Clair, S. Gress, C. Then, A. Székács, G.-E. Séralini (2013)

Cytotoxicity on human cells of Cry1Ab and Cry1Ac Bt insecticidal toxins alone or with a glyphosate-based herbicide  Journal of Applied Toxicology Volume 33,  Issue 7,  pages 695–699, July

http://onlinelibrary.wiley.com/doi/10.1002/jat.2712/abstract

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Messeguer J., Marfa V., Catala M.M., Guiderdoni E., Melé E.. (2004) A field study of pollen-mediated geneflow from Mediterranean GM rice to conventional rice and the red riceweed.  Molecular Breeding 13(1),103-112.  http://link.springer.com/article/10.1023%2FB%3AMOLB.0000012285.39859.9d

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Hartmut Meyer (2011) Systemic risks of genetically modified crops : the need for new approaches to risk assessment.  Environmental Sciences Europe 23:7  www.enveurope.com/content/pdf/2190-4715-23-7.pdf 

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Bélin Poletto Mezzomo, Ana Luisa Miranda-Vilela, Ingrid de Souza Freire, Lilian Carla Pereira Barbosa, Flávia Arruda Portilho, Zulmira Guerrero Marques Lacava and Cesar Koppe Grisolia (2013) Hematotoxicity of Bacillus thuringiensis as Spore-crystal Strains Cry1Aa, Cry1Ab, Cry1Ac or Cry2Aa in Swiss Albino Mice   J Hematol Thromb Dis, 1:1  http://esciencecentral.org/journals/JHTD/JHTD-1-104.pdf

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Mishra A, Gaur SN, Singh BP, Arora N. (2012) In silico assessment of the potential allergenicity of transgenes used for the development of GM food crops.  Food Chem Toxicol. 2012 May;50(5):1334-9.  http://www.ncbi.nlm.nih.gov/pubmed/22361217

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Monroy CM, Cortés AC, Sicard DM, de Restrepo HG. (2005) [Cytotoxicity and genotoxicity of human cells exposed in vitro to glyphosate]. Biomedica. Sep;25(3):335-45.  http://www.ncbi.nlm.nih.gov/pubmed/16276681

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Morandin, Lora A., and Mark L. Winston (2005) WILD BEE ABUNDANCE AND SEED PRODUCTION IN CONVENTIONAL, ORGANIC, AND GENETICALLY MODIFIED CANOLA  Ecological Applications 15:871–881. http://dx.doi.org/10.1890/03-5271 

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Darek T R Moreau, Corinne Conway, and  Ian A Fleming (2011) Reproductive performance of alternative male phenotypes of growth hormone transgenic Atlantic salmon (Salmo salar) Evol Appl. November; 4(6): 736–748.  http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3352541/

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 Mortensen DA, Egan JF, Maxwell BD, Ryan MR, Smith RG. (2012) Navigating a critical juncture for sustainable weed management. Bio Science. 62(1):75-84  http://www.iatp.org/documents/navigating-a-critical-juncture-for-sustainable-weed-management

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Motavalli PP, Kremer RJ, Fang M and Means NE (2004) Impact of genetically modified crops and their management on soil microbially mediated plant nutrient transformations. J. Environ. Qual. 33(3),81624.  http://www.ncbi.nlm.nih.gov/pubmed/15224915

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Mulder C, Wouterse M, Raubuch M, Roelofs W & Rutgers M. (2006) Can transgenic maize affect soil microbial communities?  PLoS Comput Biol. 2006 September; 2(9): e128.  http://www.ncbi.nlm.nih.gov/pmc/articles/PMC1584322/?tool=pmcentrez&rendertype=abstract  

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Mulder C, Wouterse M, Rutgers M. & Posthuma L. (2007) Transgenic maize containing the Cry1Ab protein ephemerally enhances soil microbial communities Ambio 36:359-361.  http://www.ncbi.nlm.nih.gov/pubmed/17626475

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Müller, W. (2004) Recherche und Analyse bezuglich humantoxikologischer Risiken von gentechnisch veränderten Soja-und Maispflanzen.  Eco-risk(Buro fur Ökologische Risikoforschung), Vienna,April10  www.keinegentechnik.de/bibliothek/verbraucher/studien/ecoris_analyse_humantoxikologie_040410.pdf

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Munier DJ, Brittan KL, Lanini WT.(2012) Seedbank persistence of genetically modified canola in California. Environ Sci Pollut Res Int.19(6):2281-4.  http://www.ncbi.nlm.nih.gov/pubmed/22258428

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Marit R. Myhre·Kristin A. Fenton·Julia Eggert· Kaare M. Nielsen·Terje Traavik (2006) The 35S CaMV plant virus promoter is active in human enterocyte-like cells  Eur Food Res Technol (2006) 222: 185–193   http://www.mma.gov.br/estruturas/biosseguranca/_arquivos/71_28112008024750.pdf

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Nandula V.K., Reddy, K., Duke, S. (2005) Glyphosate- resistant weeds : Current status and future outlook. Outlooks on Pest Management 16,183187.  http://www.researchgate.net/publication/250014890_Glyphosate-Resistant_Weeds_Current_Status_and_Future_Outlook

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Negga R, Rudd DA, Davis NS, Justice AN, Hatfield HE, Valente AL, Fields AS, Fitsanakis VA. (2011) Exposure to Mn/Zn ethylene-bis-dithiocarbamate and glyphosate pesticides leads to neurodegeneration in Caenorhabditis elegans. Neurotoxicology. Jun;32(3):331-41 http://www.ncbi.nlm.nih.gov/pubmed/21376751

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Negga R, Stuart JA, Machen ML, Salva J, Lizek AJ, Richardson SJ, Osborne AS, Mirallas O, McVey KA, Fitsanakis VA. (2012) Exposure to glyphosate- and/or Mn/Zn-ethylene-bis-dithiocarbamate-containing pesticides leads to degeneration of γ-aminobutyric acid and dopamine neurons in Caenorhabditis elegans.  Neurotox Res. Apr;21(3):281-90.  http://www.ncbi.nlm.nih.gov/pubmed/21922334

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Netherwood T., Martín-Orúe S.M., O'Donnell A.G., Gockling S., Graham J., Mathers J.C., Gilbert H.J. (2004) Assessing the survival of transgenic plant DNA in the human gastro- intestinal tract.  Nature Biotechnology 22, 204-209  http://www.ncbi.nlm.nih.gov/pubmed/14730317

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Neumann G, Kohls S, Landsberg E, Stock-Oliveira Souza K, Yamada T,Romheld V(2006) Relevance of glyphosate transfer to non-target plants via the rhizosphere. Journal of Plant Diseases and Protection 20:963-969.  http://www.ulmer.de/Content/Special-Issue-XX/Relevance-of-glyphosate-transfer-to-non-target-plants-via-the-rhizosphere,QUlEPTEwMjcwOCZNSUQ9NTIwNDAmQVJPT1Q9NTIzNTcmVEVNUF9NQUlOPVNjaWVudGlmaWNzX1BvcnRyYWl0Lmh0bQ.html

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 Newmaster, S.G., Bell, F.W., Vitt, D.H. 1999. The effects of glyphosate and triclopyr on common bryophytes and lichens in northwestern Ontario. Can. Jour. Forest Research 29, 1101–1111.  www.plant.siu.edu/faculty/vitt/pdf/165-1999.PDF

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Niels Holst, Andreas Lang, Gabor Lövei, Mathias Otto (2013)  Increased mortality is predicted of Inachis io larvae caused by Bt-maize pollen in European farmland  Ecological Modelling 250 (2013) 126–133 http://www.sciencedirect.com/science/article/pii/S0304380012005315

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Nielsen KM, Bones AM, Smalla K and vanElsas JD (1998)  Horizontal gene transfer from transgenic plants to terrestrial bacteria a rare event? FEMS Microbiology Reviews 22:79-103.  http://www.ncbi.nlm.nih.gov/pubmed/9729765

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Christer Røss Nielsen · Knut G. Berdal · Anne Marie Bakke-McKellep · Arne Holst-Jensen (2005) Dietary DNA in blood and organs of Atlantic salmon ( S a l m o s a l a r L.)  Eur Food Res Technol 221:1–8  http://link.springer.com/article/10.1007%2Fs00217-005-1160-1

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 Nodari, R., 2007. In Avanço da soja transgênica amplia uso de glifosato. Valor Econômico, April 23  http://www.seagri.ba.gov.br/noticias.asp?qact=view&exibir=clipping&notid=9931

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NOMURA, N.S. and HILTON, H.W. (1977), The adsorption and degradation of glyphosate in five Hawaiian sugarcane soils. Weed Research, 17: 113–121.  http://onlinelibrary.wiley.com/doi/10.1111/j.1365-3180.1977.tb00454.x/abstract

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Nordlee, J.A., Taylor, S.L., Townsend, J.A. and Thomas, L.A. (1996) Identification of a Brazil nut allergen in transgenic soybean. New England Journal of Medicine 334, 688-692.  http://www.ncbi.nlm.nih.gov/pubmed/8594427

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Norsworthy, J.K., Ward, S.M., Shaw, D.R., Llewellyn, R.S., Nichols, R.L., Webster, T.M., Bradley, K.W., Frisvold, G., Powles, S.B., Burgos, N.R., Witt, W.W., Barrett,M. (2012) Reducing the risks of herbicide resistance : Best management practices and recommendations.  Weed Science,specialissue,pp31-62

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Obrist L.B., Dutton A.,Romeis J. & Bigler F. (2006)  Biological activity of Cry1Ab toxin expressed by Bt maize following ingestion by herbivorous arthropods and exposure of the predator Chrysoperla carnea.  Bio Control 51:31-48.  http://link.springer.com/article/10.1007%2Fs10526-005-2936-8

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JOHN J. OBRYCKI, JOHN E. LOSEY, ORLEY R. TAYLOR, and LAURA C. H. JESSE (2001) Transgenic Insecticidal Corn: Beyond Insecticidal Toxicity to Ecological Complexity  BioScience May : Vol. 51, Issue 5, pg(s) 353-361  http://www.bioone.org/doi/abs/10.1641/0006-3568(2001)051%5B0353%3ATICBIT%5D2.0.CO%3B2

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Krista B. Oke, Peter A. H. Westley, Darek T. R. Moreau, and Ian A. Fleming (2013)

Hybridization between genetically modified Atlantic salmon and wild brown trout reveals novel ecological interactions Proc. R. Soc. B.  280 1763 20131047; doi:10.1098/rspb.2013.1047 (published 29 May) 1471-2954  http://rspb.royalsocietypublishing.org/content/280/1763/20131047

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Oliveri et al (2006) Temporary depression of transcription in mouse preimplantation embryos from mice fed on genetically modified soybean.  48th  Symposium of the Society for Histochemistry. Lake Maggiore(Italy), Sept.7- 10.

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Oliveira AG, Telles LF, Hess RA, Mahecha GA, Oliveira CA. (2007) Effects of the herbicide Roundup on the epididymal region of drakes Anas platyrhynchos. Reprod Toxicol. Feb;23(2):182-91. http://www.ncbi.nlm.nih.gov/pubmed/17166697

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Owen MD K and Zelaya IA (2005) Herbicide-resistant crops and weed resistance to herbicides.  Pest Manag. Sci. 61:301-311.  http://www.ncbi.nlm.nih.gov/pubmed/15668920

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Mechelle J. Owen and Stephen B. Powles (2010) Glyphosate-Resistant Rigid Ryegrass (Lolium rigidum) Populations in the Western Australian Grain Belt  Weed Technology 24(1):44-49.  http://www.bioone.org/doi/abs/10.1614/WT-09-054.1?journalCode=wete

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Alejandra Paganelli , Victoria Gnazzo , Helena Acosta , Silvia L. López , and Andrés E. Carrasco (2010) Glyphosate-Based Herbicides Produce Teratogenic Effects on Vertebrates by Impairing Retinoic Acid Signaling  Chem. Res. Toxicol., 23 (10), pp 1586–1595

http://pubs.acs.org/doi/abs/10.1021/tx1001749

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Pawlowski WP, Somers DA (1996) Transgene inheritance in plants genetically engineered by micro projectile bombardment.  MolBiotechnol.6(1):17-30.  http://www.ncbi.nlm.nih.gov/pubmed/8887358

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Payne, N.J.; Feng, J.C. & Reynolds, P.E. (1990). Off-target deposits and buffer zones required around water for aerial glyphosate applications.

Pesticide Science, 30, 183-198.  http://onlinelibrary.wiley.com/doi/10.1002/ps.2780300206/abstract

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Payne, N.J. (1992). Off-target glyphosate from aerial silvicultural applications and bufferzones required around sensitive areas.Pesticide Science, 34, 1-8.  http://onlinelibrary.wiley.com/doi/10.1002/ps.2780340102/abstract 

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Paz-y-Miño, C.,Sánchez, M.E., Arévalo, M., Muñoz,M.J., Witte, T., De-la-Carrera, G.O., Leone, P.E. (2007) Evaluation of DNA damage in an Ecuadorian population exposed to glyphosate. Genetics and Molecular Biology 30,456-460.  www.scielo.br/pdf/gmb/v30n2/a26v30n2.pdf

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Peixoto F. (2005) Comparative effects of the Roundup and glyphosate on mitochondrial oxidative phosphorylation.  Chemosphere. Dec;61(8):1115-22. 

http://www.ncbi.nlm.nih.gov/pubmed/16263381

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Peluso M, Munnia A, Bolognesi C, Parodi S.  (1998) 32P-postlabeling detection of DNA adducts in mice treated with the herbicide Roundup. Environ Mol Mutagen. 31(1):55-9.  http://www.ncbi.nlm.nih.gov/pubmed/9464316

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 Pengue, W. 2000. Cultivos Transgénicos. Hacia dónde vamos? Buenos Aires, Lugar.

Pengue, W. (2003) El glifosato y la dominación del ambiente. Biodiversidad 37,July.

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Pengue, W. (2005) Transgenic crops in Argentina : the ecological and social debt.  Bulletin of Science,Technology and Society 25:314-322.  http://pubget.com/paper/pgtmp_c5d90742e1361777e5412bd51ee1d229/transgenic-crops-in-argentina-the-ecological-and-social-debt

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Pengue, W.A. (2009). Agrofuels and agrifoods: Counting the externalities at the major crossroads of the 21st century. Bulletin of Science, Technology & Society 29, 167–179  http://bst.sagepub.com/content/29/3/167

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 Pengue, W.A. (2010). Suelo Virtual y Comercio Internacional (Virtual Soils and International Markets), Realidad Economica 250. Buenos Aires, Argentina. 

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Penninks AH, Knippels LM. (2001) Determination of protein allergenicity : studies in rats.  Toxicol Lett.120(1- 3):171-180  http://www.sciencedirect.com/science/article/pii/S0378427401002752

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Perez, A. & Kogan, M. (2003): Glyphosate-resistant Lolium multiflorum in Chilean orchards.Weed Research, 43, 12-19.  http://onlinelibrary.wiley.com/doi/10.1046/j.1365-3180.2003.00311.x/abstract

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Pérez, G.L.; Torremorell, A.; Mugni, H.; Rodríguez, P.; Vera, M.S.; Do Nascimento, M.;Allende, L.; Bustingorry, J.; Escaray, R.; Ferraro, M.; Izaguirre, I.; Pizarro, H.;Bonetto, C.; Morris, D. P. & Zagarese, H. (2007). Effects of the herbicide Roundupon freshwater microbial communities: a mesocosm study. Ecological Applications, 17,2310-2322.  http://www.ncbi.nlm.nih.gov/pubmed/18213971

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