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对sp. 1野生幼虫肠道细菌群落的分析:宿主果实、环境以及属、属和属显著稳定关联的影响

Analysis of the Gut Bacterial Community of Wild Larvae of sp. 1: Effect of Host Fruit, Environment, and Prominent Stable Associations of the Genera , , and .

作者信息

Salgueiro Julieta, Nussenbaum A Laura, Milla Fabián H, Asimakis Elias, Goane Lucía, Ruiz M Josefina, Bachmann Guillermo E, Vera María T, Stathopoulou Panagiota, Bourtzis Kostas, Deutscher Ania T, Lanzavecchia Silvia B, Tsiamis George, Segura Diego F

机构信息

Instituto de Genética "Ewald A. Favret" (INTA) - GV IABIMO (CONICET), Hurlingham, Argentina.

Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Buenos Aires, Argentina.

出版信息

Front Microbiol. 2022 Mar 10;13:822990. doi: 10.3389/fmicb.2022.822990. eCollection 2022.

Abstract

The genus (Diptera Tephritidae) includes some of the most important fruit fly pests in the Americas. Here, we studied the gut bacterial community of 3rd instar larvae of sp. 1 through Next Generation Sequencing (lllumina) of the V3-V4 hypervariable region within the 16S rRNA gene. Gut bacterial communities were compared between host species (guava and peach), and geographical origins (Concordia and Horco Molle in Argentina) representing distinct ecological scenarios. In addition, we explored the effect of spatial scale by comparing the samples collected from different trees within each geographic origin and host species. We also addressed the effect of fruit size on bacterial diversity. The gut bacterial community was affected both by host species and geographic origin. At smaller spatial scales, the gut bacterial profile differed among trees of the same species and location at least in one host-location combination. There was no effect of fruit size on the larval gut bacteriome. Operational Taxonomic Units (OTUs) assigned to , and were identified in all samples examined, which suggest potential, non-transient symbioses. Better knowledge on the larval gut bacteriome contributes valuable information to develop sustainable control strategies against targeting key symbionts as the Achilles' heel to control this important fruit fly pest.

摘要

[果蝇属(双翅目实蝇科)包含美洲一些最重要的果蝇害虫。在此,我们通过对16S rRNA基因内V3 - V4高变区进行下一代测序(Illumina),研究了[某种果蝇]1号物种三龄幼虫的肠道细菌群落。我们比较了宿主物种(番石榴和桃子)以及代表不同生态场景的地理来源(阿根廷的康科迪亚和霍尔科莫列)之间的肠道细菌群落。此外,我们通过比较每个地理来源和宿主物种内不同树木采集的样本,探讨了空间尺度的影响。我们还研究了果实大小对细菌多样性的影响。肠道细菌群落受到宿主物种和地理来源的影响。在较小的空间尺度上,至少在一种宿主 - 地点组合中,同一物种和地点的树木之间肠道细菌谱存在差异。果实大小对幼虫肠道细菌群落没有影响。在所有检测样本中均鉴定出了归属于[某些菌属]的可操作分类单元(OTU),这表明存在潜在的、非短暂的共生关系。对幼虫肠道细菌群落的深入了解为制定针对[该果蝇]的可持续控制策略提供了有价值的信息,该策略将关键共生体作为控制这种重要果蝇害虫的薄弱环节。] (译者注:原文中部分菌属名称缺失,用[某些菌属]表示)

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b54e/8960962/debaa37b9d0c/fmicb-13-822990-g001.jpg

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