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农业系统中菌根功能多样性的进化生态学

Evolutionary ecology of mycorrhizal functional diversity in agricultural systems.

作者信息

Verbruggen Erik, Toby Kiers E

机构信息

Department of Ecological Science, Faculty of Earth of Life Sciences, VU University Amsterdam, The Netherlands.

Department of Ecological Science, Faculty of Earth of Life Sciences, VU University Amsterdam, The Netherlands ; Department of Plant, Soil and Insect Science, University of Massachusetts at Amherst Amherst, MA, USA.

出版信息

Evol Appl. 2010 Sep;3(5-6):547-60. doi: 10.1111/j.1752-4571.2010.00145.x. Epub 2010 Jul 19.

Abstract

The root systems of most agronomic crops are colonized by diverse assemblages of arbuscular mycorrhizal fungi (AMF), varying in the functional benefits (e.g. nutrient transfer, pathogen protection, water uptake) provided to hosts. Little is known about the evolutionary processes that shape the composition of these fungal assemblages, nor is it known whether more diverse assemblages are beneficial to crop productivity. In this review we aim to identify the evolutionary selection pressures that shape AMF diversity in agricultural systems and explore whether promotion of AMF diversity can convincingly be linked to increases in agricultural productivity and/or sustainability. We then ask whether farmers can (and should) actively modify evolutionary selection pressures to increase AMF functioning. We focus on three agriculturally imposed selection regimes: tillage, fertilization, and continuous monoculture. We find that the uniform nature of these practices strongly selects for dominance of few AMF species. These species exhibit predictable, generally non-beneficial traits, namely heavy investment in reproduction at the expense of nutrient scavenging and transfer processes that are beneficial for hosts. A number of focus-points are given based on empirical and theoretical evidence that could be utilized to slow down negative selection pressures on AMF functioning, therein increasing crop benefit.

摘要

大多数农艺作物的根系都被丛枝菌根真菌(AMF)的不同组合所定殖,这些组合为宿主提供的功能益处(如养分转移、病原体保护、水分吸收)各不相同。对于塑造这些真菌组合组成的进化过程知之甚少,也不清楚更多样化的组合是否对作物生产力有益。在这篇综述中,我们旨在确定塑造农业系统中AMF多样性的进化选择压力,并探讨促进AMF多样性是否能令人信服地与农业生产力和/或可持续性的提高联系起来。然后,我们要问农民是否能够(以及是否应该)积极改变进化选择压力以增强AMF的功能。我们关注三种农业施加的选择机制:耕作、施肥和连作单作。我们发现,这些做法的一致性强烈地选择了少数AMF物种占主导地位。这些物种表现出可预测的、通常无益处的特征,即以牺牲对宿主有益的养分清除和转移过程为代价,大量投入繁殖。基于实证和理论证据给出了一些重点,可用于减缓对AMF功能的负面选择压力,从而增加作物收益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28b8/3352509/ab71c5393b01/eva0003-0547-f1.jpg

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