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共生菌根相互作用的持续协同进化。

Ongoing coevolution in mycorrhizal interactions.

机构信息

Department of Biology, University of Mississippi, PO Box 1848, University, MS 38677, USA.

出版信息

New Phytol. 2010 Jul;187(2):286-300. doi: 10.1111/j.1469-8137.2010.03305.x. Epub 2010 May 28.

Abstract

Coevolution can be a potent force in maintaining and generating biological diversity. Although coevolution is likely to have played a key role in the early development of mycorrhizal interactions, it is unclear how important coevolutionary processes are for ongoing trait evolution in those interactions. Empirical studies have shown that candidate coevolving traits, such as mycorrhizal colonization intensity, exhibit substantial heritable genetic variation within plant and fungal species and are influenced by plant genotype x fungal genotype interactions, suggesting the potential for ongoing coevolutionary selection. Selective source analysis (SSA) could be employed to build on these results, testing explicitly for ongoing coevolutionary selection and analyzing the influence of community context on local coevolutionary selection. Recent empirical studies suggest the potential for coevolution to drive adaptive differentiation among populations of plants and fungi, but further studies, especially using SSA in the context of field reciprocal transplant experiments, are needed to determine the importance of coevolutionary selection compared with nonreciprocal selection on species traits.

摘要

共进化可以成为维持和产生生物多样性的强大力量。虽然共进化可能在菌根相互作用的早期发展中发挥了关键作用,但共进化过程对于这些相互作用中持续的特征进化的重要性尚不清楚。实证研究表明,候选共进化特征,如菌根定植强度,在植物和真菌物种内表现出显著的可遗传遗传变异,并受到植物基因型 x 真菌基因型相互作用的影响,这表明存在持续的共进化选择的潜力。选择性源分析(SSA)可以利用这些结果,明确测试持续的共进化选择,并分析群落背景对局部共进化选择的影响。最近的实证研究表明,共进化有可能驱动植物和真菌种群之间的适应性分化,但需要进一步的研究,特别是在现场相互移植实验的背景下使用 SSA,以确定与物种特征的非互惠选择相比,共进化选择的重要性。

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