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面对干扰时,植物宿主和地理位置驱动内生菌群落组成。

Plant Host and Geographic Location Drive Endophyte Community Composition in the Face of Perturbation.

作者信息

Christian Natalie, Sullivan Courtney, Visser Noelle D, Clay Keith

机构信息

Evolution, Ecology and Behavior Program, Department of Biology, Indiana University, 1001 E. 3rd St., Bloomington, IN, 47405, USA.

Medical Sciences Program, Indiana University School of Medicine, 1001 E. 3rd St., Bloomington, IN, 47405, USA.

出版信息

Microb Ecol. 2016 Oct;72(3):621-32. doi: 10.1007/s00248-016-0804-y. Epub 2016 Jun 24.

Abstract

All plants form symbioses with endophytic fungi, which affect host plant health and function. Most endophytic fungi are horizontally transmitted, and consequently, local environment and geographic location greatly influence endophyte community composition. Growing evidence also suggests that identity of the plant host (e.g., species, genotype) can be important in shaping endophyte communities. However, little is known about how disturbances to plants affect their fungal symbiont communities. The goal of this study was to test if disturbances, from both natural and anthropogenic sources, can alter endophyte communities independent of geographic location or plant host identity. Using the plant species white snakeroot (Ageratina altissima; Asteraceae), we conducted two experiments that tested the effect of perturbation on endophyte communities. First, we examined endophyte response to leaf mining insect activity, a natural perturbation, in three replicate populations. Second, for one population, we applied fungicide to plant leaves to test endophyte community response to an anthropogenic perturbation. Using culture-based methods and Sanger sequencing of fungal isolates, we then examined abundance, diversity, and community structure of endophytic fungi in leaves subjected to perturbations by leaf mining and fungicide application. Our results show that plant host individual and geographic location are the major determinants of endophyte community composition even in the face of perturbations. Unexpectedly, we found that leaf mining did not impact endophyte communities in white snakeroot, but fungicide treatment resulted in small but significant changes in endophyte community structure. Together, our results suggest that endophyte communities are highly resistant to biotic and anthropogenic disturbances.

摘要

所有植物都与内生真菌形成共生关系,内生真菌会影响宿主植物的健康和功能。大多数内生真菌通过水平传播,因此,当地环境和地理位置对内生真菌群落组成有很大影响。越来越多的证据还表明,植物宿主的身份(如物种、基因型)在塑造内生真菌群落方面可能很重要。然而,关于植物受到的干扰如何影响其真菌共生体群落,人们知之甚少。本研究的目的是测试来自自然和人为来源的干扰是否能独立于地理位置或植物宿主身份而改变内生真菌群落。我们以白蛇根草(Ageratina altissima;菊科)为植物物种,进行了两项实验来测试扰动对内生真菌群落的影响。首先,我们在三个重复种群中研究了内生真菌对潜叶昆虫活动(一种自然扰动)的反应。其次,对于一个种群,我们在植物叶片上施用杀菌剂,以测试内生真菌群落对人为扰动的反应。然后,我们使用基于培养的方法和对真菌分离株的桑格测序,研究了受到潜叶和施用杀菌剂扰动的叶片中内生真菌的丰度、多样性和群落结构。我们的结果表明,即使面对扰动,植物宿主个体和地理位置仍是内生真菌群落组成的主要决定因素。出乎意料的是,我们发现潜叶并没有影响白蛇根草的内生真菌群落,但杀菌剂处理导致内生真菌群落结构发生了虽小但显著的变化。总之,我们的结果表明内生真菌群落对生物和人为干扰具有高度抗性。

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