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物种身份在驱动野生入侵叶蝉细菌群落组装中占据主导地位,而环境的影响相对较小。

Species Identity Dominates over Environment in Driving Bacterial Community Assembly in Wild Invasive Leaf Miners.

机构信息

Institute of Applied Entomology, School of Horticulture and Plant Protection, Yangzhou Universitygrid.268415.c, Yangzhou, Jiangsu, China.

The Key Laboratory of Plant Immunity, Jiangsu Provincial Key Lab for Organic Solid Waste Utilization, Jiangsu Collaborative Innovation Center for Solid Organic Wastes, Educational Ministry Engineering Center of Resource-saving fertilizers, Nanjing Agricultural University, Nanjing, China.

出版信息

Microbiol Spectr. 2022 Apr 27;10(2):e0026622. doi: 10.1128/spectrum.00266-22. Epub 2022 Mar 28.

Abstract

The microbiota of invasive animal species may be pivotal to their adaptation and spread, yet the processes driving the assembly and potential sources of host-microbiota remain poorly understood. Here, we characterized microbiota of four leaf miner fly species totaling 310 individuals across 43 geographical populations in China and assessed whether the microbiota of the wild leaf miner was acquired from the soil microbiota or the host plant microbiota, using high-throughput 16S rRNA sequencing. Bacterial communities differed significantly among four leaf miner species but did not mirror host phylogeny. Microbiota diversity in the native was significantly higher than in three invasive leaf miners (i.e., L. trifolii, L. huidobrensis, and L. sativae), yet the microbial community of the invasive species exhibited a more connected and complex network structure. Structural equation models revealed that host species identity was more important than environmental factors (e.g., geography, climate, or plants) in shaping microbiota composition. Using neutral and null model analyses, we found that deterministic processes like variable selection played a primary role in driving microbial community assembly, with some influence by stochastic processes like drift. The relative degree of these processes governing microbiota was likely correlated with host species but independent of either geographical or climatic factors. Finally, source tracking analysis showed that leaf miners might acquire microbes from their host plant rather than the soil. Our results provide a robust assessment of the ecological processes governing bacterial community assembly and potential sources of microbes in invasive leaf miners. The invasion of foreign species, including leaf miners, is a major threat to world biota. Host-associated microbiota may facilitate host adaption and expansion in a variety of ways. Thus, understanding the processes that drive leaf miner microbiota assembly is imperative for better management of invasive species. However, how microbial communities assemble during the leaf miner invasions and how predictable the processes remain unexplored. This work quantitatively deciphers the relative importance of deterministic process and stochastic process in governing the assembly of four leaf miner microbiotas and identifies potential sources of leaf miner-colonizing microbes from the soil-plant-leaf miner continuum. Our study provides new insights into the mechanisms underlying the drive of leaf miner microbiota assembly.

摘要

入侵动物物种的微生物组可能对其适应和传播至关重要,但驱动微生物组组装的过程和潜在的宿主微生物组来源仍知之甚少。在这里,我们对中国 43 个地理种群的 4 种共 310 只叶潜蝇的微生物组进行了特征描述,并通过高通量 16S rRNA 测序评估了野生叶潜蝇的微生物组是来自土壤微生物组还是宿主植物微生物组。四种叶潜蝇的细菌群落差异显著,但与宿主系统发育关系不对应。本地 微生物组的多样性明显高于三种入侵叶潜蝇(即 L. trifolii、L. huidobrensis 和 L. sativae),而入侵物种的微生物群落表现出更具连接性和更复杂的网络结构。结构方程模型表明,宿主物种身份比环境因素(如地理、气候或植物)更重要,影响微生物组组成。通过中性和零模型分析,我们发现像变量选择这样的确定性过程在驱动微生物群落组装中起着主要作用,而像漂移这样的随机过程也有一定的影响。这些过程控制微生物组的相对程度可能与宿主物种相关,但与地理或气候因素无关。最后,来源追踪分析表明,叶潜蝇可能从其宿主植物而不是土壤中获得微生物。我们的研究结果为细菌群落组装的生态过程以及入侵叶潜蝇中微生物的潜在来源提供了有力的评估。外来物种(包括叶潜蝇)的入侵是对世界生物多样性的主要威胁。宿主相关的微生物组可能通过多种方式促进宿主的适应和扩张。因此,了解驱动叶潜蝇微生物组组装的过程对于更好地管理入侵物种至关重要。然而,叶潜蝇入侵过程中微生物群落是如何组装的,以及这些过程的可预测性如何,仍然未知。这项工作定量解析了在控制四种叶潜蝇微生物组组装中确定性过程和随机过程的相对重要性,并从土壤-植物-叶潜蝇连续体中确定了叶潜蝇定殖微生物的潜在来源。我们的研究为叶潜蝇微生物组组装的驱动机制提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/05f7/9045101/29a6521baed2/spectrum.00266-22-f001.jpg

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