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Low bacterial community diversity in two introduced aphid pests revealed with 16S rRNA amplicon sequencing

机译:16S rRNA扩增子测序揭示了两种引入的蚜虫中细菌群落多样性低

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摘要

Bacterial endosymbionts that produce important phenotypic effects on their hosts are common among plant sap-sucking insects. Aphids have become a model system of insect-symbiont interactions. However, endosymbiont research has focused on a few aphid species, making it necessary to make greater efforts to other aphid species through different regions, in order to have a better understanding of the role of endosymbionts in aphids as a group. Aphid endosymbionts have frequently been studied by PCR-based techniques, using species-specific primers, nevertheless this approach may omit other non-target bacteria cohabiting a particular host species. Advances in high-throughput sequencing technologies are complementing our knowledge of microbial communities by allowing us the study of whole microbiome of different organisms. We used a 16S rRNA amplicon sequencing approach to study the microbiome of aphids in order to describe the bacterial community diversity in introduced populations of the cereal aphids, Sitobion avenae and Rhopalosiphum padi in Chile (South America). An absence of secondary endosymbionts and two common secondary endosymbionts of aphids were found in the aphids R. padi and S. avenae, respectively. Of those endosymbionts, Regiella insecticola was the dominant secondary endosymbiont among the aphid samples. In addition, the presence of a previously unidentified bacterial species closely related to a phytopathogenic Pseudomonad species was detected. We discuss these results in relation to the bacterial endosymbiont diversity found in other regions of the native and introduced range of S. avenae and R. padi. A similar endosymbiont diversity has been reported for both aphid species in their native range. However, variation in the secondary endosymbiont infection could be observed among the introduced and native populations of the aphid S. avenae, indicating that aphid-endosymbiont associations can vary across the geographic range of an aphid species. In addition, we discuss the potential role of aphids as vectors and/or alternative hosts of phytopathogenic bacteria.
机译:细菌内共生菌在其宿主上产生重要的表型效应,在植物吸液昆虫中很常见。蚜虫已经成为昆虫-共鸣相互作用的模型系统。然而,共生共生菌的研究集中在一些蚜虫种类上,因此有必要通过不同区域对其他蚜虫种类做出更大的努力,以便更好地了解共生共生菌在整个蚜虫中的作用。蚜虫内共生体经常使用基于物种的引物通过基于PCR的技术进行研究,尽管如此,该方法可能会忽略其他与特定宿主物种同居的非目标细菌。高通量测序技术的进步通过允许我们研究不同生物的整个微生物组,补充了我们对微生物群落的了解。我们使用了16S rRNA扩增子测序方法来研究蚜虫的微生物组,以描述智利(南美洲)的谷物蚜虫,Sitobion avenae和Rhopalosiphum padi引入种群中的细菌群落多样性。在蚜虫R. padi和S. avenae中分别发现了没有继发性内共生菌和两个常见的继发性内共生菌。在那些内共生菌中,Regiella insecticola是蚜虫样品中主要的次生内共生菌。另外,检测到存在与致病性假单胞菌物种密切相关的先前未鉴定的细菌物种。我们讨论这些结果有关细菌内共生体多样性的其他地方发现的天然和引入范围的S. avenae和R. padi。据报道两种蚜虫在其天然范围内具有相似的共生共生多样性。然而,可以在引入的蚜虫和天然蚜虫的天然种群之间观察到继发性共生共生体内感染的变化,这表明蚜虫-内共生体的结合在整个蚜虫物种的地理范围内可以变化。另外,我们讨论了蚜虫作为植物病原细菌的载体和/或替代宿主的潜在作用。

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