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Excitation of central neurons by dieldrin and picrotoxinin in susceptible and resistantDrosophila melanogaster(meigen)

机译:狄氏剂和苦毒素对易感和耐药果蝇黑腹果蝇(meigen)中中枢神经元的刺激

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AbstractNeurophysiological studies were used to characterize the resistance mechanism in a new cyclodiene‐resistant strain ofDrosophila melanogaster. Suction electrode recordings were taken from the peripheral nerves of transected larval central nervous system. Treatment of nerve preparations with 1 mM GABA reduced the spontaneous firing of peripheral nerves. This inhibition was effectively reversed within 10 min by exposing preparations from susceptible insects (Oregon‐R wild type) to 10 μM dieldrin. In contrast, 30 min incubations with 10 μM dieldrin had no effect on preparations from resistant individuals. At 10 μM, picrotoxinin was also effective in antagonizing the action of GABA in susceptible nerve preparations. In recordings from resistant insects (n = 3), picrotoxinin displayed either no antagonism of GABA‐dependent inhibition, weak antagonism of GABA, or hyperexcitation indistinguishable from those of susceptible preparations. These results demonstrate that cyclodiene resistance in the Maryland strain of D. melanogaster is present at the level of the nerve, and that the resistance extends to picrotoxinin, albeit at a reduced level. The possible role of an altered GABA receptor in this resistance is d
机译:摘要采用神经生理学研究表征黑腹果蝇抗环二烯新菌株的抗性机制。抽吸电极记录取自横断幼虫中枢神经系统的周围神经。用1mM GABA处理神经制剂可减少周围神经的自发放电。通过将易感昆虫(Oregon-R野生型)的制剂暴露于10μM狄氏剂,在10分钟内有效逆转了这种抑制作用。相比之下,用 10 μM 狄氏剂孵育 30 分钟对耐药个体的制剂没有影响。在10μM时,苦毒素也可有效拮抗易感神经制剂中GABA的作用。在耐药昆虫(n = 3)的记录中,苦毒素没有表现出GABA依赖性抑制的拮抗作用,GABA的弱拮抗作用,或者与易感制剂的兴奋性无法区分。这些结果表明,马里兰州黑腹果蝇菌株中的环二烯耐药性存在于神经水平,并且耐药性延伸到苦毒素,尽管水平降低。改变的GABA受体在这种抗性中的可能作用是d

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