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Wolbachia Density and Cytoplasmic Incompatibility in Aedes albopictus: Concerns with Using Artificial Wolbachia Infection as a Vector Suppression Tool

机译:白纹伊蚊的Wolbachia密度和细胞质不相容性:使用人工Wolbachia感染作为载体抑制工具的关注。

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摘要

The mosquito Aedes albopictusi is a competent vector of harmful human pathogens, including viruses causing dengue and chikungunya. Cytoplasmic incompatibility (CI) induced by endosymbiotic Wolbachia can be used to produce functionally sterile males that can be released in the field as a suppression tool against this mosquito. Because the available sexing methods are not efficient enough to avoid unintentional release of a few transinfected females, we assessed the CI pattern in crosses between wPip Wolbachia-transinfected (ARwP) females and wild-type males of Ae. albopictus in this study. Quantitative polymerase chain reaction was used to monitor the titer of the Wolbachia strains that naturally infect Ae. albopictus, that is, wAlbA and wAlbB, in age-controlled males and females. Data were coupled with incompatibility level detected when the above-mentioned males were crossed with ARwP females. Wolbachia infection titer was also monitored in samples of wild caught males. Incompatibility level was positively correlated only with wAlbA density. Crosses between wild-type males having very low wAlbA density (<0.001 wAlbA/actin copy numbers) and ARwP females were partially fertile (CIcorr = 68.06 ± 6.20). Individuals with low wAlbA titer were frequently found among sampled wild males (30%–50% depending on the site and period). ARwP males can be as considered as a very promising tool for suppressing Ae. albopictus. However, crosses between wild males having low wAlbA density and ARwP females may be partially fertile. In the case of local establishment of the transinfected mosquito line, this occurrence may favor the replacement of the wild-type mosquitoes with the ARwP line, thus reducing the long-term efficacy of incompatible insect technique. Various alternative strategies have been discussed to prevent this risk and to exploit Wolbachia as a tool to control Ae. albopictus.
机译:蚊白纹伊蚊是有害人类病原体的有效载体,其中包括引起登革热和基孔肯雅热的病毒。内共生沃尔巴克氏菌引起的细胞质不相容性(CI)可用于生产功能不育的雄性,可作为抑制蚊子的工具在野外释放。由于可用的性交方法不够有效,无法避免意外释放一些转染雌性,因此我们评估了wpip Wolbachia转染(ARwP)雌性和Ae野生型雄性之间杂交的CI模式。本研究中的白化病。定量聚合酶链反应用于监测自然感染Ae的Wolbachia菌株的滴度。年龄受控的男性和女性的白化病,即wAlbA和wAlbB。当上述雄性与ARwP雌性杂交时,数据与检测到的不相容水平相结合。在野生捕获的雄性样品中也监测了Wolbachia感染滴度。不相容性水平仅与wAlbA密度呈正相关。 wAlbA密度非常低(<0.001 w AlbA /肌动蛋白拷贝数)的野生型雄性和AR w P雌性之间的杂交部分可育(CIcorr = 68.06±6.20) 。 w AlbA滴度低的个体经常出现在抽样的野生雄性动物中(根据部位和时期而定,为30%–50%)。 AR w P雄性被认为是抑制 Ae 的非常有前途的工具。 albopictus 。但是,具有低 w AlbA密度的野生雄性和AR w P雌性之间的杂交可能是部分可育的。在局部建立转染蚊子的情况下,这种情况可能有利于用AR w P系替代野生型蚊子,从而降低了不相容昆虫技术的长期效力。已经讨论了各种替代策略来预防这种风险并利用作为控制 Ae 的工具。 albopictus

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