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接种培养的苏云金芽孢杆菌后,一种叶蝉害虫的杀虫剂敏感性增加。

Insecticide susceptibility in a planthopper pest increases following inoculation with cultured Arsenophonus.

机构信息

State Key Laboratory of Agricultural Microbiology, Huazhong Agricultural University, Wuhan 430070, China.

Hubei Hongshan Laboratory, Wuhan 430070, China.

出版信息

ISME J. 2024 Jan 8;18(1). doi: 10.1093/ismejo/wrae194.

Abstract

Facultative vertically transmitted symbionts are a common feature of insects that determine many aspects of their hosts' phenotype. Our capacity to understand and exploit these symbioses is commonly compromised by the microbes unculturability and consequent lack of genetic tools, an impediment of particular significance for symbioses of pest and vector species. Previous work had established that insecticide susceptibility of the economically important pest of rice, the brown planthopper Nilaparvata lugens, was higher in field-collected lineages that carry Ca. Arsenophonus nilaparvatae. We established Ca. A. nilaparvatae into cell-free culture and used this to establish the complete closed genome of the symbiont. We transformed the strain to express GFP and reintroduced it to N. lugens to track infection in vivo. The symbiont established vertical transmission, generating a discrete infection focus towards the posterior pole of each N. lugens oocyte. This infection focus was retained in early embryogenesis before transition to a diffuse somatic infection in late N. lugens embryos and nymphs. We additionally generated somatic infection in novel host species, but these did not establish vertical transmission. Transinfected planthopper lines acquired the insecticide sensitivity trait, with associated downregulation of the P450 xenobiotic detoxification system of the host. Our results causally establish the role of the symbiont in increasing host insecticide sensitivity with implications for insecticide use and stewardship. Furthermore, the culturability and transformation of this intracellular symbiont, combined with its ease of reintroduction to planthopper hosts, enables novel approaches both for research into symbiosis and into control of insect pest species.

摘要

兼性垂直传播共生体是昆虫的一个常见特征,决定了它们宿主表型的许多方面。我们理解和利用这些共生关系的能力通常受到微生物不可培养性和缺乏遗传工具的限制,这对于害虫和媒介物种的共生关系尤其重要。以前的工作已经确定,在田间采集的携带 Ca. Arsenophonus nilaparvatae 的稻褐飞虱种群中,杀虫剂敏感性更高。我们将 Ca. A. nilaparvatae 建立在无细胞培养中,并利用它建立了共生体的完整封闭基因组。我们对该菌株进行了 GFP 表达的转化,并将其重新引入 N. lugens 中以在体内跟踪感染。共生体建立了垂直传播,在每个 N. lugens 卵母细胞的后极产生一个离散的感染焦点。这种感染焦点在早期胚胎发生中保留,然后在晚期 N. lugens 胚胎和若虫中过渡到弥散的体细胞感染。我们还在新的宿主物种中产生了体细胞感染,但这些物种没有建立垂直传播。转染的飞虱系获得了杀虫剂敏感性特征,同时宿主的 P450 外来生物解毒系统下调。我们的结果因果关系地确定了共生体在增加宿主对杀虫剂敏感性方面的作用,这对杀虫剂的使用和管理具有重要意义。此外,这种细胞内共生体的可培养性和转化,以及其易于重新引入飞虱宿主,为研究共生关系和控制昆虫害虫物种提供了新的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8aa6/11491930/bc26979743ea/wrae194f1.jpg

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