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经体外取食后,韧皮部寡养单胞菌亚种序列型由叶蝉类刺吸式昆虫传播的效率。

Transmission Efficiency of Xylella fastidiosa subsp. pauca Sequence Types by Sharpshooter Vectors after In Vitro Acquisition.

机构信息

First and eighth authors: Departamento de Entomologia e Acarologia, Escola Superior de Agricultura "Luiz de Queiroz" (Esalq), Universidade de São Paulo (USP), Piracicaba, São Paulo (SP), 13418-900, Brazil; second author: Departamento de Fitotecnia e Fitossanitarismo, Universidade Federal do Paraná, Curitiba, Paraná, 80035-050, Brazil; third author: Instituto Federal do Pará, Castanhal, Pará, 68740-970, Brazil; fourth and fifth authors: Departamento de Ciências Exatas, Esalq, USP; sixth author: Department of Environmental Science, Policy, and Management, University of California, Berkeley 94720-3114, USA; and seventh author: Centro de Citricultura "Sylvio Moreira", Instituto Agronômico, Cordeirópolis, SP, 13490-970, Brazil.

出版信息

Phytopathology. 2019 Feb;109(2):286-293. doi: 10.1094/PHYTO-07-18-0254-FI. Epub 2019 Jan 2.

Abstract

Xylella fastidiosa subsp. pauca is genetically diverse and has many vector species. However, there is limited information on vector specificity and efficiency for different sequence types (STs) within the pathogen subspecies. Both STs of X. fastidiosa and vectors differ in their associations with plants; therefore, assessment of vector competence should include the standardized vector acquisition ability of bacteria from artificial diets. This work aimed to adapt and validate an in vitro acquisition system for strains of X. fastidiosa that cause citrus variegated chlorosis, and to compare the transmission efficiency of STs of subsp. pauca by different species of sharpshooter vector. First, acquisition and transmission of ST13 by Bucephalogonia xanthophis and Macugonalia leucomelas was tested using an artificial diet with bacteria grown on minimum defined medium (X. fastidiosa medium) with or without 1% galacturonic acid (GA). Subsequently, four sharpshooter species (B. xanthophis, M. leucomelas, M. cavifrons, and Sibovia sagata) were compared as vectors of ST13 acquired from artificial diets, and four STs of subsp. pauca (11, 13, 65, and 70) were tested for acquisition and transmission by M. leucomelas. The artificial system allowed efficient acquisition and transmission of ST13 to plants, with no differences between the media tested. ST13 was transmitted more efficiently by B. xanthophis and M. leucomelas when compared with M. cavifrons and S. sagata. Different STs influenced acquisition and transmission rates by M. leucomelas. The differences in vector competence, despite the standardized acquisition system, suggest that ST-vector foregut or vector-plant interactions may influence bacterial acquisition, retention and inoculation by the insect.

摘要

寡养单胞菌韧皮部亚种是遗传多样的,有许多媒介物种。然而,关于病原体亚种内不同序列型(ST)的媒介特异性和效率的信息有限。X. fastidiosa 的 ST 和媒介在与植物的关联上有所不同;因此,对媒介效能的评估应包括从人工饮食中获取细菌的标准化媒介获取能力。本工作旨在适应和验证一种用于引起柑橘斑驳黄化的韧皮部寡养单胞菌菌株的体外获取系统,并比较不同种类的尖音库蚊媒介对亚种 pauca 的 ST 的传播效率。首先,使用含有最低定义培养基(X. fastidiosa 培养基)的人工饮食,测试了 Bucephalogonia xanthophis 和 Macugonalia leucomelas 对 ST13 的获取和传播,其中有无 1%半乳糖醛酸(GA)。随后,比较了四种尖音库蚊(B. xanthophis、M. leucomelas、M. cavifrons 和 Sibovia sagata)作为从人工饮食中获取的 ST13 的媒介,以及四种亚种 pauca 的 ST(11、13、65 和 70)在 M. leucomelas 中进行的获取和传播测试。人工系统允许 ST13 有效地从植物中获取和传播,两种培养基之间没有差异。与 M. cavifrons 和 S. sagata 相比,B. xanthophis 和 M. leucomelas 更有效地传播 ST13。不同的 ST 影响 M. leucomelas 的获取和传播率。尽管有标准化的获取系统,但媒介效能的差异表明 ST-媒介前肠或媒介-植物相互作用可能影响昆虫对细菌的获取、保留和接种。

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