Journal of Animal and Plant Sciences
J. Anim. Plant Sci. [ISSN 2071 - 7024]
Volume 19(1): 2864 - 2879. Published August, 2013.
Effect of Bt cotton expressing Cry1Ac and Cry2Ab2 protein on soil nematode community assemblages in Mwea, Kenya.
Hannah Karuri., 1,* Ruth Amata., 2 Nelson Amugune 3 and Charles Waturu. 4
1 Embu University College, University of Nairobi, P.O Box 6-60100, Embu, Kenya.
2 National Agricultural Research Laboratories, Kenya Agricultural Research Institute, P.O Box 14733-00800, Nairobi, Kenya.
3 School of Biological Sciences, University of Nairobi, P.O. Box 30197-00100, Nairobi, Kenya.
4 Horticultural Research Centre, Kenya Agricultural Research Institute, P.O. Box 220, Thika.
*Corresponding author email address: hwkaruri@gmail.com
Keywords: Risk assessment, Renyi diversity, Bt cotton
1 SUMMARY
Objective: The nematode community structure in soil
cultivated with Bt cotton (containing Cry1Ac and Cry2Ab2 protein),
isoline (non Bt cotton) and HART 89M (non Bt cotton) was evaluated in a
field trial at Ndomba in the Central Province of Kenya.
Methods and results: The experiment was laid out in a completely
randomized block design. Soil was collected for two seasons at 0, 30,
60, 90, 120, 150 and 180 days after planting (DAP). Presence of Bt
protein in roots and soil was determined using ELISA and insect
bioassays. Nematodes were extracted from soil using
centrifugal-floatation method and identified to genus level using a
compound microscope. ELISA analysis of soil samples indicated that Bt
protein was present at 150 and 180 days after planting. Bacteriovorous
nematodes were present in significantly (P<0.05) higher numbers in
the Bt cotton (46.9%) than in isoline (42.1%) plots.
Conclusion and application of findings: Cry1Ac and Cry2Ab2 protein in
Bt cotton (06Z604D) does not have a direct effect on nematode
diversity. The results provide important biosafety data that will be
useful in pre- and post release monitoring of potential negative
impacts of Bt cotton cultivation in Kenya.
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