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Mycorrhizas influence functional traits of two tallgrass prairie species

机译:菌根影响两种高草草原物种的功能性状

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Abstract Over the past decade, functional traits that influence plant performance and thus, population, community, and ecosystem biology have garnered increasing attention. Generally lacking, however, has been consideration of how ubiquitous arbuscular mycorrhizas influence plant allometric and stoichiometric functional traits. We assessed how plant dependence on and responsiveness to mycorrhizas influence plant functional traits of a warm-season, C4 grass, Andropogon gerardii Vitman, and the contrasting, cool-season, C3 grass, Elymus canadensis L. We grew both host species with and without inoculation with mycorrhizal fungi, across a broad gradient of soil phosphorus availabilities. Both host species were facultatively mycotrophic, able to grow without mycorrhizas at high soil phosphorus availability. A. gerardii was most dependent upon mycorrhizas and E. canadensis was weakly dependent, but highly responsive to mycorrhizas. The high dependence of A. gerardii on mycorrhizas resulted in higher tissue P and N concentrations of inoculated than noninoculated plants. When not inoculated, E. canadensis was able to take up both P and N in similar amounts to inoculated plants because of its weak dependence on mycorrhizas for nutrient uptake and its pronounced ability to change root-to-shoot ratios. Unlike other highly dependent species, A. gerardii had a high root-to-shoot ratio and was able to suppress colonization by mycorrhizal fungi at high soil fertilities. E. canadensis , however, was unable to suppress colonization and had a lower root-to shoot ratio than A. gerardii . The mycorrhiza-related functional traits of both host species likely influence their performance in nature: both species attained the maximum responsiveness from mycorrhizas at soil phosphorus availabilities similar to those of tallgrass prairies. Dependence upon mycorrhizas affects performance in the absence of mycorrhizas. Responsiveness to mycorrhizal fungi is also a function of the environment and can be influenced by both mycorrhizal fungus species and soil fertility.
机译:摘要在过去的十年中,影响植物性能的功能性状因此影响了种群,社区和生态系统生物学,引起了越来越多的关注。然而,通常缺乏关于普遍存在的丛枝菌根如何影响植物异速和化学计量功能性状的考虑。我们评估了植物对菌根的依赖性和对菌根的响应如何影响暖季,C4草,Andropogon gerardii Vitman和对比凉季,C3草,Elymus canadensis L的植物功能性状。在广泛的土壤磷利用率梯度上接种菌根真菌。两种寄主物种都是兼性的营养缺陷型,能够在土壤磷利用率高的情况下生长而无菌根生长。 gerardii菌最依赖于菌根,而加拿大E. canadensis则较弱,但对菌根反应强烈。 gerardii对菌根的高度依赖性导致接种的植物P和N的浓度高于未接种的植物。如果不接种,加拿大大肠埃希菌能够吸收与接种植物相似量的磷和氮,因为它对菌根吸收养分的依赖性较弱,并且具有显着的改变根茎比的能力。与其他高度依赖的物种不同,非洲菊(A. gerardii)具有高的根茎比,并且能够在高土壤肥力下抑制菌根真菌的定殖。然而,加拿大大肠埃希菌不能抑制定殖,并且其根与茎的比比gerardii更低。两种寄主物种与菌根相关的功能性状均可能影响其在自然界中的表现:两种菌根均与菌根草类似,在土壤磷利用率方面均获得了菌根的最大响应。在没有菌根的情况下,对菌根的依赖性会影响性能。对菌根真菌的响应性也是环境的一种功能,并且会受到菌根真菌种类和土壤肥力的影响。

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