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黄杨嫩枝细菌群落的特征及杀菌剂处理的潜在影响

Characterization of Boxwood Shoot Bacterial Communities and Potential Impact from Fungicide Treatments.

作者信息

Li Xiaoping, Tseng Hsien Tzer, Hemmings Ginger, Omolehin Olanike, Taylor Chad, Taylor Amanda, Kong Ping, Daughtrey Margery, Gouker Fred, Hong Chuanxue

机构信息

Hampton Roads Agriculture Research and Extension Center, Virginia Tech, Virginia Beach, Virginia, USA.

North Carolina Department of Agriculture and Consumer Services, Plant Industry Division, Raleigh, North Carolina, USA.

出版信息

Microbiol Spectr. 2023 Feb 28;11(2):e0416322. doi: 10.1128/spectrum.04163-22.

Abstract

Phyllosphere bacterial communities play important roles in plant fitness and growth. The objective of this study was to characterize the epiphytic and endophytic bacterial communities of boxwood shoots and determine how they may respond to commonly used fungicides. In early summer and early fall, shoot samples were collected immediately before and 1, 7, and 14 days after three fungicides containing chlorothalonil and/or propiconazole were applied to the canopy. Total genomic DNA from shoot surface washings and surface-sterilized shoot tissues was used as the template for 16S rRNA metabarcoding, and the amplicons were sequenced on a Nanopore MinION sequencer to characterize the epiphytic and endophytic communities. The bacterial communities were phylogenetically more diverse on the boxwood shoot surface than in the internal tissue, although the two communities shared 12.7% of the total 1,649 identified genera. The most abundant epiphytes were and , while and were the dominant endophytes. Fungicide treatments had strong impacts on epiphytic bacterial community structure and composition. Analysis of compositions of microbiomes with bias correction (ANCOM-BC) and analysis of variance (ANOVA)-like differential expression (ALDEx2) together identified 312 and 1,362 epiphytes changed in abundance due to fungicide treatments in early summer and early fall, respectively, and over 50% of these epiphytes were negatively impacted by fungicide. The two chlorothalonil-based contact fungicides demonstrated more marked effects than the propiconazole-based systemic fungicide. These results are foundational for exploring and utilizing the full potential of the microbiome and fungicide applications and developing a systems approach to boxwood health and production. Agrochemicals are important tools for safeguarding plants from invasive pathogens, insects, mites, and weeds. How they may affect the plant microbiome, a critical component of crop health and production, was poorly understood. Here, we used boxwood, an iconic low-maintenance landscape plant, to characterize shoot epiphytic and endophytic bacterial communities and their responses to contact and systemic fungicides. This study expanded our understanding of the above-ground microbiome in ornamental plants and is foundational for utilizing the full benefits of the microbiome in concert with different fungicide chemistries to improve boxwood health. This study also sets an example for a more thorough evaluation of these and other agrochemicals for their effects on boxwood microbiomes during production and offers an expanded systems approach that could be used with other crops for enhanced integrated pest management.

摘要

叶际细菌群落对植物的健康和生长起着重要作用。本研究的目的是描述黄杨嫩枝的附生和内生细菌群落特征,并确定它们对常用杀菌剂的反应。在初夏和初秋,在树冠上施用三种含有百菌清和/或丙环唑的杀菌剂之前以及施用后1天、7天和14天,立即采集嫩枝样本。将嫩枝表面冲洗液和表面消毒的嫩枝组织中的总基因组DNA用作16S rRNA宏条形码分析的模板,并在纳米孔MinION测序仪上对扩增子进行测序,以表征附生和内生群落。尽管在总共1649个已鉴定的属中,两个群落共有12.7%,但黄杨嫩枝表面的细菌群落在系统发育上比内部组织更为多样。最丰富的附生菌是[具体菌属1]和[具体菌属2],而[具体菌属3]和[具体菌属4]是主要的内生菌。杀菌剂处理对附生细菌群落结构和组成有强烈影响。使用带偏差校正的微生物群落组成分析(ANCOM-BC)和类似方差分析(ANOVA)的差异表达分析(ALDEx2)共同确定,在初夏和初秋,分别有312种和1362种附生菌因杀菌剂处理而丰度发生变化,其中超过50%的附生菌受到杀菌剂的负面影响。两种基于百菌清的接触性杀菌剂的效果比基于丙环唑的内吸性杀菌剂更为显著。这些结果为探索和利用微生物群落及杀菌剂应用的全部潜力,以及开发黄杨健康和生产的系统方法奠定了基础。农用化学品是保护植物免受入侵病原体、昆虫、螨虫和杂草侵害的重要工具。它们如何影响植物微生物群落(作物健康和生产的关键组成部分),人们了解甚少。在这里,我们以黄杨这种标志性的低维护园林植物为研究对象,来描述嫩枝附生和内生细菌群落及其对接触性和内吸性杀菌剂的反应。这项研究扩展了我们对观赏植物地上微生物群落的理解,并且是将微生物群落的全部益处与不同杀菌剂化学物质协同利用以改善黄杨健康状况的基础。这项研究还为更全面地评估这些以及其他农用化学品在生产过程中对黄杨微生物群落的影响树立了榜样,并提供了一种可与其他作物一起使用的扩展系统方法,以加强综合虫害管理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4bb6/10100737/a332fadb1957/spectrum.04163-22-f001.jpg

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