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《安娜·卡列尼娜》促进了世界性农业害虫瓜实蝇(双翅目,实蝇科)微生物多样性的发展。

Anna Karenina as a promoter of microbial diversity in the cosmopolitan agricultural pest Zeugodacus cucurbitae (Diptera, Tephritidae).

机构信息

Royal Museum for Central Africa, Biology Department, Tervuren, Belgium.

University of Antwerp, Department of Biology, Antwerp, Belgium.

出版信息

PLoS One. 2024 Apr 3;19(4):e0300875. doi: 10.1371/journal.pone.0300875. eCollection 2024.

Abstract

Gut microbial communities are critical in determining the evolutive success of fruit fly phytophagous pests (Diptera, Tephritidae), facilitating their adaptation to suboptimal environmental conditions and to plant allelochemical defences. An important source of variation for the microbial diversity of fruit flies is represented by the crop on which larvae are feeding. However, a "crop effect" is not always the main driver of microbial patterns, and it is often observed in combination with other and less obvious processes. In this work, we aim at verifying if environmental stress and, by extension, changing environmental conditions, can promote microbial diversity in Zeugodacus cucurbitae (Coquillett), a cosmopolitan pest of cucurbit crops. With this objective, 16S rRNA metabarcoding was used to test differences in the microbial profiles of wild fly populations in a large experimental setup in Eastern Central Tanzania. The analysis of 2,973 unique ASV, which were assigned to 22 bacterial phyla, 221 families and 590 putative genera, show that microbial α diversity (as estimated by Abundance Coverage Estimator, Faith's Phylogenetic Diversity, Shannon-Weiner and the Inverse Simpson indexes) as well as β microbial diversity (as estimated by Compositional Data analysis of ASVs and of aggregated genera) significantly change as the species gets closer to its altitudinal limits, in farms where pesticides and agrochemicals are used. Most importantly, the multivariate dispersion of microbial patterns is significantly higher in these stressful environmental conditions thus indicating that Anna Karenina effects contribute to the microbial diversity of Z. cucurbitae. The crop effect was comparably weaker and detected as non-consistent changes across the experimental sites. We speculate that the impressive adaptive potential of polyphagous fruit flies is, at least in part, related to the Anna Karenina principle, which promotes stochastic changes in the microbial diversity of fly populations exposed to suboptimal environmental conditions.

摘要

肠道微生物群落对于确定水果蝇植食性害虫(双翅目,实蝇科)的进化成功至关重要,有助于它们适应环境条件和植物化感防御的不利影响。幼虫取食的作物是影响水果蝇微生物多样性的重要因素之一。然而,“作物效应”并不总是微生物模式的主要驱动因素,它通常与其他不太明显的过程相结合。在这项工作中,我们旨在验证环境胁迫(以及扩展到不断变化的环境条件)是否可以促进南瓜实蝇(Zeugodacus cucurbitae)(一种世界性的葫芦科作物害虫)的微生物多样性。为了达到这个目的,我们在坦桑尼亚中东部的一个大型实验装置中使用 16S rRNA 宏条形码技术来测试野生果蝇种群的微生物分布差异。对 22 个细菌门、221 个科和 590 个可能的属的 2973 个独特的 ASV 进行分析表明,微生物α多样性(如丰度覆盖估计值、Faith 的系统发育多样性、Shannon-Weiner 和倒数 Simpson 指数所估计)以及β微生物多样性(通过 ASV 和聚合属的组合数据分析进行估计)都随着物种接近其海拔极限而显著变化,特别是在使用农药和农用化学品的农场。更重要的是,在这些压力环境条件下,微生物模式的多元离散度显著更高,这表明安娜·卡列尼娜效应有助于南瓜实蝇的微生物多样性。作物效应相对较弱,并且在实验地点之间检测到不一致的变化。我们推测,杂食性水果蝇令人印象深刻的适应能力至少部分与安娜·卡列尼娜原理有关,该原理促进了暴露在不利环境条件下的果蝇种群的微生物多样性的随机变化。

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