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The interplay between dose and immune system activation determines fungal infection outcome in the African malaria mosquito Anopheles gambiae

机译:剂量和免疫系统激活之间的相互作用决定了非洲疟疾蚊子冈比亚按蚊的真菌感染结果

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摘要

The Toll pathway is a central regulator of antifungal immunity in insects. In mosquitoes, the Toll pathway affects infections with the fungal entomopathogen, Beauveria bassiana, which is considered a potential mosquito biopesticide. We report here the use of B. bassiana strain I93–825 in Anopheles gambiae to analyze the impact of Toll pathway modulation on mosquito survival. Exposure to a narrow dose range of conidia by direct contact decreased mosquito longevity and median survival. In addition, fungal exposure dose correlated positively and linearly with hazard ratio. Increased Toll signaling by knockdown of its inhibitor, cactus, decreased survivorship of uninfected females, increased mosquito survival after low dose B. bassiana exposure, but had little effect following exposure to higher doses. This observed tradeoff could have implications for development of B. bassiana as a prospective vector control tool. On the one hand, selection for small increases in mosquito immune signaling across a narrow dose range could impair efficacy of B. bassiana. On the other hand, costs of immunity and the capacity for higher doses of fungus to overwhelm immune responses could limit evolution of resistance.
机译:Toll途径是昆虫抗真菌免疫的主要调节剂。在蚊子中,Toll途径会影响真菌性昆虫病原球孢白僵菌的感染,该病原被认为是潜在的蚊子生物农药。我们在这里报告了冈比亚按蚊中B. bassiana菌株I93–825的使用,以分析通行费途径调制对蚊子存活的影响。直接接触暴露于分生孢子的狭窄剂量范围会降低蚊子的寿命和中位生存期。此外,真菌暴露剂量与危险比呈线性正相关。通过降低其抑制剂仙人掌的作用来增加Toll信号传导,降低未感染雌性的存活率,在低剂量的球孢杆菌暴露后增加蚊子的存活率,但是在高剂量的暴露条件下几乎没有影响。这种观察到的折衷可能对作为一种前瞻性载体控制工具的球孢白僵菌的发展有影响。一方面,选择在狭窄剂量范围内小幅增加蚊子免疫信号传导可能会损害球孢杆菌的功效。另一方面,免疫成本和较高剂量真菌抑制免疫反应的能力可能会限制耐药性的发展。

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