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Modifying insect population age structure to control vector-borne disease.

机译:修改昆虫种群的年龄结构,以控制媒介传播的疾病。

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Age is a critical determinant of the ability of most arthropod vectors to transmit a range of human pathogens. This is due to the fact that most pathogens require a period of extrinsic incubation in the arthropod host before pathogen transmission can occur. This developmental period for the pathogen often comprises a significant proportion of the expected lifespan of the vector. As such, only a small proportion of the population that is oldest contributes to pathogen transmission. Given this, strategies that target vector age would be expected to obtain the most significant reductions in the capacity of a vector population to transmit disease. The recent identification of biological agents that shorten vector lifespan, such as Wolbachia, entomopathogenic fungi and densoviruses, offer new tools for the control of vector-borne diseases. Evaluation of the efficacy of these strategies under field conditions will be possible due to recent advances in insect age-grading techniques. Implementation of all of these strategies will require extensive field evaluation and consideration of the selective pressures that reductions in vector longevity may induce on both vector and pathogen.
机译:年龄是大多数节肢动物载体传播一系列人类病原体能力的关键决定因素。这是由于以下事实:大多数病原体需要在节肢动物宿主中进行一定时间的外部培养,然后才能传播病原体。病原体的这个发育期通常占载体预期寿命的很大一部分。因此,只有一小部分最老的人口有助于病原体传播。鉴于此,可以预期以媒介年龄为目标的策略会最大程度地减少媒介种群传播疾病的能力。最近鉴定出的缩短媒介物寿命的生物制剂,如沃尔巴氏菌,昆虫病原真菌和densoviruses,为控制媒介传播疾病提供了新的工具。由于昆虫年龄分级技术的最新进展,可能在野外条件下评估这些策略的效力。所有这些策略的实施都需要进行广泛的现场评估,并考虑载体寿命降低可能对载体和病原体产生的选择性压力。

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