Individual-based modelling of the efficacy of fumigation tactics to control lesser grain borer (Rhyzopertha dominica) in stored grain
Authored by Michael Renton, Mingren Shi, James Ridsdill-Smith, Patrick J Collins
Date Published: 2012
DOI: 10.1016/j.jspr.2012.06.003
Sponsors:
Cooperative Research Centres (CRC)
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No platforms listed
Model Documentation:
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Abstract
Increasing resistance to phosphine (PH3) in insect pests, including
lesser grain borer (Rhyzopertha dominica) has become a critical issue, and development of effective and sustainable strategies to manage
resistance is crucial. In practice, the same grain store may be
fumigated multiple times, but usually for the same exposure period and
concentration. Simulating a single fumigation allows us to look more
closely at the effects of this standard treatment.
We used an individual-based, two-locus model to investigate three key
questions about the use of phosphine fumigant in relation to the
development of PH3 resistance. First, which is more effective for insect
control; long exposure time with a low concentration or short exposure
period with a high concentration? Our results showed that extending
exposure duration is a much more efficient control tactic than
increasing the phosphine concentration. Second, how long should the
fumigation period be extended to deal with higher frequencies of
resistant insects in the grain? Our results indicated that if the
original frequency of resistant insects is increased n times, then the
fumigation needs to be extended, at most, n days to achieve the same
level of insect control. The third question is how does the presence of
varying numbers of insects inside grain storages impact the
effectiveness of phosphine fumigation? We found that, for a given
fumigation, as the initial population number was increased, the final
survival of resistant insects increased proportionally. To control
initial populations of insects that were n times larger, it was
necessary to increase the fumigation time by about n days. Our results
indicate that, in a 2-gene mediated resistance where dilution of
resistance gene frequencies through immigration of susceptibles has
greater effect, extending fumigation times to reduce survival of
homozygous resistant insects will have a significant impact on delaying
the development of resistance. (C) 2012 Elsevier Ltd. All rights
reserved.
Tags
Evolution
Management
Simulation-model
Population-dynamics
Temperature
Inhibition
Tribolium-castaneum
Curculionidae
Sitophilus-oryzae coleoptera
Phosphine resistance