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The effective dominance of resistance genes in relation to the evolution of resistance

机译:抗性基因在抗性进化中的有效显性

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AbstractField selection for a rare insecticide resistance (R) gene can be substantially delayed ifRis rendered effectively recessive if all or most heterozygotes ( R + ) are killed by the field dosages and if a representative sample (+ +,R +, RR) of the population is permitted to escape exposure. The relationship between heterozygote mortality and escape in influencing selection rates has been considered at various frequencies ofR. The cases when mating precedes selection, and when selection precedes mating, have been calculated using computer simulations. It is concluded that whenRgenes are rare it is advantageous(a)to apply the highest possible doses of insecticide in such a form that all exposed insects pick up an amount sufficient to kill all or most heterozygotes, (b) to apply the insecticide to adults after they have mated, rather than to younger adults or to larvae, and(c)to ensure that the proportion of insects given the opportunity to escape contact is as high as practical considerations allow. Once resistance is obvious (when samples are brought into the laboratory for tests), theRgene frequency will have risen to a level which makes the suggested strategy no longer valuable. Alternative strategies are briefly discussed.
机译:摘要如果Ris具有有效的隐性[如果所有或大多数杂合子(R +)被田间剂量杀死],并且允许群体的代表性样本(+ +,R +,RR)逃避暴露,则稀有杀虫剂抗性(R)基因的田间选择可能会大大延迟。杂合子死亡率与逃逸在影响选择率方面的关系已在R的不同频率下被考虑。交配先于选择,以及选择先于交配的情况,已使用计算机模拟计算。得出的结论是,当Rgenes很少时,有利的是(a)以这样一种形式施用尽可能高剂量的杀虫剂,使所有暴露的昆虫都能获得足以杀死所有或大多数杂合子的量,(b)在成虫交配后将其施用杀虫剂,而不是对幼虫或幼虫施用杀虫剂, (c)确保有机会逃脱接触的昆虫比例在实际考虑允许的范围内尽可能高。一旦耐药性明显(当样品被带到实验室进行测试时),Rgene频率将上升到使建议的策略不再有价值的水平。简要讨论了替代策略。

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