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考虑外生菌根的本地化适应:呼吁在实验中追踪植物、真菌和土壤的地理起源。

Accounting for local adaptation in ectomycorrhizas: a call to track geographical origin of plants, fungi, and soils in experiments.

机构信息

Department of Biological Sciences, Wright State University, 3640 Colonel Glenn Hwy, Dayton, OH, 45435, USA.

Department of Biology, Syracuse University, 107 College Place, Syracuse, NY, 13244, USA.

出版信息

Mycorrhiza. 2018 Feb;28(2):187-195. doi: 10.1007/s00572-017-0811-y. Epub 2017 Nov 27.

Abstract

Local adaptation, the differential success of genotypes in their native versus foreign environments, can influence ecological and evolutionary processes, yet its importance is difficult to estimate because it has not been widely studied, particularly in the context of interspecific interactions. Interactions between ectomycorrhizal (EM) fungi and their host plants could serve as model system for investigations of local adaptation because they are widespread and affect plant responses to both biotic and abiotic selection pressures. Furthermore, because EM fungi cycle nutrients and mediate energy flow into food webs, their local adaptation may be critical in sustaining ecological function. Despite their ecological importance and an extensive literature on their relationships with plants, the vast majority of experiments on EM symbioses fail to report critical information needed to assess local adaptation: the geographic origin of the plant, fungal inocula, and soil substrate used in the experiment. These omissions limit the utility of such studies and restrict our understanding of EM ecology and evolution. Here, we illustrate the potential importance of local adaptation in EM relationships and call for consistent reporting of the geographic origin of plant, soil, and fungi as an important step towards a better understanding of the ecology and evolution of EM symbioses.

摘要

本地适应,即基因型在其本地和外来环境中的不同成功表现,可以影响生态和进化过程,但由于其尚未得到广泛研究,特别是在种间相互作用的背景下,其重要性难以估计。外生菌根(EM)真菌与其宿主植物之间的相互作用可以作为研究本地适应的模型系统,因为它们分布广泛,影响植物对生物和非生物选择压力的反应。此外,由于 EM 真菌循环养分并将能量流介导到食物网中,因此它们的本地适应可能对维持生态功能至关重要。尽管它们具有生态重要性,并且与植物的关系也有大量文献记载,但 EM 共生关系的绝大多数实验都未能报告评估本地适应所需的关键信息:实验中所用植物、真菌接种体和土壤基质的地理起源。这些遗漏限制了此类研究的实用性,并限制了我们对 EM 生态学和进化的理解。在这里,我们说明了本地适应在外生菌根关系中的潜在重要性,并呼吁一致报告植物、土壤和真菌的地理起源,这是更好地理解 EM 共生关系的生态学和进化的重要一步。

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