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土地利用是植物病原体α多样性但不是β多样性的决定因素。

Land use is a determinant of plant pathogen alpha- but not beta-diversity.

机构信息

Agroécologie, AgroSup Dijon, INRA, Université Bourgogne, Université Bourgogne Franche-Comté, Dijon, France.

Bio-Protection Research Centre, Lincoln University, Lincoln, New Zealand.

出版信息

Mol Ecol. 2019 Aug;28(16):3786-3798. doi: 10.1111/mec.15177. Epub 2019 Aug 14.

Abstract

Little is known about the diversity patterns of plant pathogens and how they change with land use at a broad scale. We employed DNA metabarcoding to describe the diversity and composition of putative plant pathogen communities in three substrates (soil, roots, and leaves) across five major land uses at a national scale. Almost all plant pathogen communities (fungi, oomycetes, and bacteria) showed strong responses to land use and substrate type. Land use category could explain up to 24% of the variance in composition between communities. Alpha-diversity (richness) of plant pathogens was consistently lower in natural forests than in agricultural systems. In planted forests, there was also generally low pathogen alpha-diversity in soil and roots, but alpha-diversity in leaves was high compared with most other land uses. In contrast to alpha-diversity, differences in within-land use beta-diversity of plant pathogens (the predictability of plant pathogen communities within land use) were subtle. Our results show that large-scale patterns and distributions of putative plant pathogens can be determined using metabarcoding, allowing some of the first landscape level insights into these critically important communities.

摘要

目前对于植物病原体的多样性模式及其随土地利用的广泛变化情况知之甚少。我们采用 DNA 宏条形码技术,在全国范围内的五个主要土地利用类型中,描述了三个基质(土壤、根系和叶片)中潜在植物病原体群落的多样性和组成。几乎所有的植物病原体群落(真菌、卵菌和细菌)都对土地利用和基质类型表现出强烈的响应。土地利用类别可以解释群落之间组成差异的高达 24%。与农业系统相比,自然森林中植物病原体的 alpha 多样性(丰富度)始终较低。在人工林,土壤和根系中的病原体 alpha 多样性通常也较低,但与大多数其他土地利用相比,叶片中的 alpha 多样性较高。与 alpha 多样性相反,植物病原体在土地利用内的 beta 多样性(植物病原体群落在土地利用内的可预测性)差异较小。我们的研究结果表明,使用宏条形码可以确定潜在植物病原体的大规模模式和分布,从而首次为这些至关重要的群落提供一些景观水平的见解。

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