Agriculture Reference
In-Depth Information
Poerschmann, J., A. Gathmann, J. Augustin, U. Langer, and T. Gorecki. 2005. Molecular composition
of leaves and stems of genetically modified
Bt
and near-isogenic non-
Bt
maize—characteriza-
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Journal of Environmental Quality
34:1508-1518.
Pont, B., and W. Nentwig. 2005. Quantification of
Bt
-protein digestion and excretion by the primary
decomposer
Porcellio scaber
, fed with two
Bt
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Biocontrol Science and Technology
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Poornima, K., P. Selvanayagam, and R. Shenbagarathai. 2010. Identification of native
Bacillus thuring-
iensis
strain from South India having specific cytocidal activity against cancer cells.
Journal of
Applied Microbiology
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Prasifka, P. L., R. L. Hellmich, J. R. Prasifka, and L. C. Lewis. 2007. Effects of Cry1Ab-expressing corn
anthers on the movement of monarch butterfly larvae.
Environmental Entomology
36:228-233.
Priestley, A. L., and M. Brownbridge. 2009. Field trials to evaluate effects of
Bt
-transgenic silage
corn expressing the Cry1Ab insecticidal toxin on non-target soil arthropods in northern New
England, USA.
Transgenic Research
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Prihoda, K. R., and J. R. Coats. 2008. Aquatic fate and effects of
Bacillus thuringiensis
Cry3Bb1 protein:
toward risk assessment.
Environmental Toxicology and Chemistry
27:793-798.
Quist, D., and I. H. Chapela. 2001. Transgenic DNA introgressed into traditional maize landraces in
Oaxaca, Mexico
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414:541-543.
Reichman, J. R., L. S. Watrud, E. H. Lee, C. A. Burdick, M. A. Bollman, M. J. Storm, G. A. King,
and C. Mallory-Smith. 2006. Establishment of transgenic herbicide-resistant creeping bentgrass
(
Agrostis stolonifera
L.) in nonagronomic habitats.
Molecular Ecology
15:4243-4255.
Rillig, M. C. 2004. Arbuscular mycorrhizae and terrestrial ecosystem processes.
Ecology Letters
7:740-754.
Romeis, J., M. Meissle, and F. Bigler. 2006. Transgenic crops expressing
Bacillus thuringiensis
toxins
and biological control.
Nature Biotechnology
24:63-71.
Rosi-Marshall, E. J., J. L. Tank, T. V. Royer, M. R. Whiles, M. Evans-White, C. Chambers, N. A.
Griffiths, J. Pokelsek, and M. L. Stephen. 2007. Toxins in transgenic crop byproducts may affect
headwater stream ecosystems.
Proceedings of the National Academy of Sciences of the United States
of America
104:16204-16208.
Rui, Y. K., G. X. Yi, J. Zhao, B. M. Wang, Z. H. Li, Z. X. Zhai, Z. P. He, and Q. X. Li. 2005. Changes of
Bt
toxin in the rhizosphere of transgenic
Bt
cotton and its influence on soil functional bacteria.
World Journal of Microbiology and Biotechnology
21:1279-1284.
Sanchis, V. 2011. From microbial sprays to insect-resistant transgenic plants: history of the biospesti-
cide
Bacillus thuringiensis
. A review.
Agronomy for Sustainable Development
31:217-231.
Saxena, D., S. Flores, and G. Stotzky. 1999. Insecticidal toxin in root exudates from
Bt
corn.
Nature
402:480.
Saxena, D., S. Flores, and G. Stotzky. 2002a.
Bt
toxin is released in root exudates from 12 transgenic
corn hybrids representing three transformation events.
Soil Biology and Biochemistry
34:133-137.
Saxena, D., S. Flores, and G. Stotzky. 2002b. Vertical movement in soil of insecticidal Cry1Ab protein
from
Bacillus thuringiensis
.
Soil Biology and Biochemistry
34:111-120.
Saxena, D., S. Pushalkar, and G. Stotzky. 2010. Fate and effects in soil of Cry proteins from
Bacillus
thuringiensis
in sprays and transgenic plants: influence of the physicochemical and biologi-
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Park, IL.
Saxena, D., C. N. Stewart, I. Altosaar, Q. Y. Shu, and G. Stotzky. 2004. Larvicidal Cry proteins from
Bacillus thuringiensis
are released in root exudates of transgenic
B. thuringiensis
corn, potato,
and rice but not of
B. thuringiensis
canola, cotton, and tobacco.
Plant Physiology and Biochemistry
42:383-387.
Saxena, D., and G. Stotzky. 2000. Insecticidal toxin from
Bacillus thuringiensis
is released from roots of
transgenic
Bt
corn in vitro and in situ.
FEMS Microbiology Ecology
33:35-39.
Saxena, D., and G. Stotzky. 2001a.
Bacillus thuringiensis
(
Bt
) toxin released from root exudates and
biomass of
Bt
corn has no apparent effect on earthworms, nematodes, protozoa, bacteria, and
fungi in soil.
Soil Biology and Biochemistry
33:1225-1230.
Saxena, D., and G. Stotzky. 2001b.
Bt
corn has a higher lignin content than non-
Bt
corn.
American
Journal of Botany
88:1704-1706.
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