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与葡萄黄化植原体昆虫传播介体相关的微生物群落的宏转录组学评估

Metatranscriptomic Assessment of the Microbial Community Associated With the Flavescence dorée Phytoplasma Insect Vector .

作者信息

Abbà Simona, Rossi Marika, Vallino Marta, Galetto Luciana, Marzachì Cristina, Turina Massimo

机构信息

Consiglio Nazionale delle Ricerche-Istituto per la Protezione Sostenibile delle Piante (CNR-IPSP), Turin, Italy.

出版信息

Front Microbiol. 2022 Apr 19;13:866523. doi: 10.3389/fmicb.2022.866523. eCollection 2022.

Abstract

Phytoplasmas are insect-borne pathogenic bacteria that cause major economic losses to several crops worldwide. The dynamic microbial community associated with insect vectors influences several aspects of their biology, including their vector competence for pathogens. Unraveling the diversity of the microbiome of phytoplasma insect vectors is gaining increasing importance in the quest to develop novel microbe-based pest control strategies that can minimize the use of insecticides for better environmental quality. The leafhopper is the primary vector of the Flavescence dorée phytoplasma, a quarantine pest which is dramatically affecting the main grape-growing European countries. In this study, the RNA-Seq data, which were previously used for insect virus discovery, were further explored to assess the composition of the whole microbial community associated with insects caught in the wild in both its native (the United States) and invasive (Europe) areas. The first assembly of the insect transcriptome was used to filter the host sequencing reads. The remaining ones were assembled into contigs and analyzed by blastx to provide the taxonomic identification of the microorganisms associated with , including the non-bacterial components. By comparing the transcriptomic libraries, we could differentiate the stable and consistent associations from the more ephemeral and flexible ones. Two species appeared to be universal to the core microbiome of the obligate bacterial symbiont Sulcia muelleri and an -allied fungus distantly related to yeast-like symbionts described from other hemipterans. Bacteria of the genus have been identified as another dominant member of the microbiome, but only in the European specimens. Although we are yet to witness how the interplay among the microorganisms influences the vector competence of , this unbiased characterization of its microbiome is paramount for identifying the naturally occurring targets for new biocontrol strategies to counteract Flavescence dorée spread in Europe.

摘要

植原体是由昆虫传播的致病细菌,给全球多种作物造成重大经济损失。与昆虫传播媒介相关的动态微生物群落影响着它们生物学的多个方面,包括它们传播病原体的能力。在寻求开发新型微生物害虫控制策略以减少杀虫剂使用从而改善环境质量的过程中,揭示植原体昆虫传播媒介微生物组的多样性变得越来越重要。叶蝉是葡萄黄化植原体的主要传播媒介,这种检疫性害虫正在严重影响欧洲主要葡萄种植国家。在本研究中,我们进一步探索了之前用于发现昆虫病毒的RNA测序数据,以评估在其原生地(美国)和入侵地(欧洲)捕获的野生昆虫相关的整个微生物群落的组成。利用昆虫转录组的首次组装来过滤宿主测序读数。其余读数组装成重叠群,并通过blastx分析以提供与该昆虫相关的微生物的分类鉴定,包括非细菌成分。通过比较转录组文库,我们可以区分稳定和一致的关联与更短暂和灵活的关联。有两个物种似乎是专性细菌共生体穆勒氏菌和一种与其他半翅目昆虫中描述的酵母样共生体远缘相关的α-变形菌纲真菌的核心微生物组所共有的。泛菌属细菌已被鉴定为微生物组的另一个主要成员,但仅在欧洲标本中发现。尽管我们尚未见证微生物之间的相互作用如何影响该叶蝉的传播能力,但对其微生物组的这种无偏见的表征对于确定新生物防治策略的天然目标以对抗葡萄黄化病在欧洲的传播至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11aa/9063733/2e7118cb51da/fmicb-13-866523-g0001.jpg

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