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个体的重要性:菌根植物和真菌在生态系统中的种内多样性

The importance of individuals: intraspecific diversity of mycorrhizal plants and fungi in ecosystems.

作者信息

Johnson David, Martin Francis, Cairney John W G, Anderson Ian C

机构信息

Institute of Biological and Environmental Sciences, Cruickshank Building, University of Aberdeen, Aberdeen AB24 3UU, UK.

INRA, UMR 1136 INRA/University Henri Poincaré, Interactions Arbres/Micro-organismes, Centre de Nancy, 54280 Champenoux, France.

出版信息

New Phytol. 2012 May;194(3):614-628. doi: 10.1111/j.1469-8137.2012.04087.x. Epub 2012 Mar 6.

Abstract

A key component of biodiversity is the number and abundance of individuals (i.e. genotypes), and yet such intraspecific diversity is rarely considered when investigating the effects of biodiversity of mycorrhizal plants and fungi on ecosystem processes. Within a species, individuals vary considerably in important reproductive and functional attributes, including carbon fixation, mycelial growth and nutrient utilization, but this is driven by both genetic and environmental (including climatic) factors. The interactions between individual plants and mycorrhizal fungi can have important consequences for the maintenance of biodiversity and regulation of resource transfers in ecosystems. There is also emerging evidence that assemblages of genotypes may affect ecosystem processes to a similar extent as assemblages of species. The application of whole-genome sequencing and population genomics to mycorrhizal plants and fungi will be crucial to determine the extent to which individual variation in key functional attributes is genetically based. We argue the need to unravel the importance of the diversity (especially assemblages of different evenness and richness) of individuals of both mycorrhizal plants and fungi, and the need to take a 'community genetics' approach to better understand the functional significance of the biodiversity of mycorrhizal symbioses.

摘要

生物多样性的一个关键组成部分是个体(即基因型)的数量和丰度,然而,在研究菌根植物和真菌的生物多样性对生态系统过程的影响时,这种种内多样性很少被考虑。在一个物种内,个体在重要的繁殖和功能属性方面差异很大,包括碳固定、菌丝体生长和养分利用,但这是由遗传和环境(包括气候)因素共同驱动的。个体植物与菌根真菌之间的相互作用对于生态系统中生物多样性的维持和资源转移的调节可能具有重要影响。也有新的证据表明,基因型组合对生态系统过程的影响可能与物种组合相似。将全基因组测序和群体基因组学应用于菌根植物和真菌,对于确定关键功能属性的个体变异在多大程度上基于遗传至关重要。我们认为有必要阐明菌根植物和真菌个体多样性(特别是不同均匀度和丰富度的组合)的重要性,并且有必要采用“群落遗传学”方法来更好地理解菌根共生生物多样性的功能意义。

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