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在一种重要的农业害虫昆虫中建立诱导细胞质不亲和的沃尔巴克氏体菌株 wMel。

Establishment of the cytoplasmic incompatibility-inducing Wolbachia strain wMel in an important agricultural pest insect.

机构信息

Department of Entomology, China Agricultural University, 2 Yuanmingyuan West Road, Beijing 100193, China.

出版信息

Sci Rep. 2016 Dec 16;6:39200. doi: 10.1038/srep39200.

Abstract

The wMel Wolbachia strain was known for cytoplasmic incompatibility (CI)-induction and blocking the transmission of dengue. However, it is unknown whether it can establish and induce CI in a non-dipteran host insect. Here we artificially transferred wMel from Drosophila melanogaster into the whitefly Bemisia tabaci. Fluorescence in situ hybridisation demonstrated that wMel had successfully transfected the new host. Reciprocal crossing was conducted with wMel-transfected and wild-type isofemale lines, indicating that wMel could induce a strong CI without imposing significant cost on host fecundity. We then determined the maternal transmission efficiency of wMel in the offspring generations, showing a fluctuating trend over a period of 12 generations. We thus detected the titre of wMel during different developmental stages and in different generations by using real-time quantitative PCR, revealing a similar fluctuating mode, but it was not significantly correlated with the dynamics of transmission efficiency. These results suggest that wMel can be established in B.tabaci, a distantly related pest insect of agricultural importance; moreover, it can induce a strong CI phenotype in the recipient host insect, suggesting a potential for its use in biological control of B. tabaci.

摘要

wMel 沃尔巴克氏体菌株以诱导细胞质不亲和(CI)和阻断登革热传播而闻名。然而,目前尚不清楚它是否能在非双翅目宿主昆虫中建立并诱导 CI。在这里,我们将 wMel 从黑腹果蝇人工转移到粉虱烟粉虱中。荧光原位杂交表明 wMel 已成功转染新宿主。用 wMel 转染和野生型同性别系进行回交表明,wMel 可以诱导强烈的 CI,而不会对宿主繁殖力造成显著影响。然后,我们确定了 wMel 在后代中的母系传递效率,在 12 代的过程中呈现出波动趋势。我们通过实时定量 PCR 检测了 wMel 在不同发育阶段和不同世代中的含量,结果显示出相似的波动模式,但与传递效率的动态变化没有显著相关性。这些结果表明,wMel 可以在农业上重要的亲缘关系较远的害虫烟粉虱中建立起来;此外,它可以在受感染的宿主昆虫中诱导强烈的 CI 表型,这表明它有可能用于烟粉虱的生物防治。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/acf0/5159839/9503f3c6e9f1/srep39200-f1.jpg

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