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کلیدواژهها
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Insecticide resistance, acetamiprid,
imidacloprid, resistance mechanism,
enzyme inhibitors
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چکیده
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Nine Bemisia tabaci (Gennadius) populations were collected from different regions of Iran. In all nine populations, only one biotype (B biotype)
was detected. Susceptibilities of these populations to imidacloprid and
acetamiprid were assayed. The lethal concentration 50 values (LC50) for
different populations showed a significant discrepancy in the susceptibility
of B. tabaci to imidacloprid (3.76 to 772.06 mg l−1
) and acetamiprid (4.96
to 865 mg l−1
). The resistance ratio of the populations ranged from 9.72 to
205.20 for imidacloprid and 6.38 to 174.57 for acetamiprid. The synergistic
effects of piperonylbutoxide (PBO) and S,S,S-tributylphosphorotrithioate
(DEF) were evaluated for the susceptible (RF) and resistant (JR) populations for the determination of the involvement of cytochrome P450-
dependent monooxygenase and carboxylesterase, respectively, in their
resistance mechanisms. The results showed that PBO overcame the resistance of the JR population to both imidacloprid and acetamiprid, with
synergistic ratios of 72.7 and 106.9, respectively. Carboxylesterase, glutathione S-transferase and cytochrome P450-dependent monooxygenase
were studied biochemically, for the purpose of measuring the activity of
the metabolizing enzymes in order to determine which enzymes are directly involved in neonicotinoid resistance. There was an increase in the
activity of cytochrome P450-dependent monooxygenase up to 17-fold in
the resistant JR population (RR = 205.20). The most plausible activity of
cytochrome P450-dependent monooxygenase correlated with the resistances of imidacloprid and acetamiprid, and this suggests that cytochrome
P450-dependent monooxygenase is the only enzyme system responsible
for neonicotinoid resistance in the nine populations of B. tabaci.
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