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首页> 外文期刊>Insect Molecular Biology >Microbe-induced cytoplasmic incompatibility as a mechanism for introducing transgenes into arthropod populations.
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Microbe-induced cytoplasmic incompatibility as a mechanism for introducing transgenes into arthropod populations.

机译:微生物诱导的细胞质不相容性作为将转基因引入节肢动物种群的机制。

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摘要

Many arthropods are infected with maternally transmitted, intracellular bacteria of the genus Wolbachia. These infections often produce 'cytoplasmic incompatibility' - reduced egg-hatch frequencies when uninfected females mate with infected males orwhen males and females carrying different Wolbachia strains mate. Because infected females often enjoy a fitness advantage - they are effectively immune to any effects from males carrying the same Wolbachia strain - Wolbachia and associated cytoplasmicelements can spread rapidly through natural populations. Wolbachia might therefore drive transgenes associated with disease control or pest abatement into populations. Here, simple mathematical analyses are presented of 3 alternative strategies for cytoplasmic incompatibility drive. The analyses reveal which parameters must be estimated in order to predict population dynamics, and they demonstrate stringent requirements for initially driving and/or maintaining transgenes in target populations.
机译:许多节肢动物被沃尔巴氏菌属的母源传播的细胞内细菌感染。这些感染通常会产生“细胞质不相容性”-当未感染的雌性与受感染的雄性交配时,或者携带不同Wolbachia株的雄性和雌性交配时,卵孵化率降低。由于受感染的雌性通常享有健身优势-它们可以有效抵抗雄性携带相同Wolbachia菌株的任何影响-Wolbachia和相关的胞质成分可以在自然种群中快速传播。因此,Wolbachia可能会将与疾病控制或害虫消除相关的转基因驱动到种群中。在这里,简单的数学分析提出了三种替代策略的细胞质不相容性驱动。分析揭示了必须估计哪些参数才能预测种群动态,并且它们证明了对最初驱动和/或维持目标种群转基因的严格要求。

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