首页> 外文期刊>The Journal of Ecology >Relative contributions of plant traits and soil microbial properties to mountain grassland ecosystem services. (Special Feature: Plant functional effects on ecosystem services.)
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Relative contributions of plant traits and soil microbial properties to mountain grassland ecosystem services. (Special Feature: Plant functional effects on ecosystem services.)

机译:植物性状和土壤微生物特性对高山草地生态系统服务的相对贡献。 (特色:植物功能对生态系统服务的影响。)

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Plant functional diversity and soil microbial community composition are tightly coupled. Changes in these interactions may influence ecosystem functioning. Links between plant functional diversity, soil microbial communities and ecosystem functioning have been demonstrated in experiments using plant monocultures and mixtures, using broad plant and microbial functional groups, but have not been examined in diverse natural plant communities. We quantified the relative effects of plant and microbial functional properties on key ecosystem functions. We measured plant functional diversity, soil microbial community composition and parameters associated with nitrogen (N) cycling and key nutrient cycling processes at three grassland sites in different parts of Europe. Because plant structure and function strongly influence soil microbial communities, we determined relationships between ecosystem properties, plant traits and soil community characteristics following a sequential approach in which plant traits were fitted first, followed by the additional effects of soil micro-organisms. We identified a continuum from standing green biomass and standing litter, linked mostly with plant traits, to potential N mineralization and potential leaching of soil inorganic N, linked mostly with microbial properties. Plant and microbial functional parameters were equally important in explaining % organic matter content in soil. A parallel continuum ran from plant height, linked with above-ground biomass, to plant quality effects captured by the leaf economics spectrum, which were linked with the recycling of carbon (C) and N. More exploitative species (higher specific leaf area, leaf N concentrations and lower leaf dry matter content) and taller swards, along with soil microbial communities dominated by bacteria, with rapid microbial activities, were linked with greater fodder production, but poor C and N retention. Conversely, dominance by conservative species (with opposite traits) and soil microbial communities dominated by fungi, and bacteria with slow activities, were usually linked with low production, but greater soil C storage and N retention. Synthesis - Grassland production, C sequestration and soil N retention are jointly related to plant and microbial functional traits. Managing grasslands for selected, or multiple, ecosystem services will thus require a consideration of the joint effects of plant and soil communities. Further understanding of the mechanisms that link plant and microbial functional traits is essential to achieve this.
机译:植物功能多样性和土壤微生物群落组成紧密相关。这些相互作用的变化可能会影响生态系统的功能。植物功能多样性,土壤微生物群落和生态系统功能之间的联系已在使用植物单一培养物和混合物的实验中,使用广泛的植物和微生物官能团的实验中得到证明,但尚未在各种天然植物群落中进行过检验。我们量化了植物和微生物功能特性对关键生态系统功能的相对影响。我们测量了欧洲不同地区三个草地站点的植物功能多样性,土壤微生物群落组成以及与氮(N)循环和关键养分循环过程相关的参数。由于植物的结构和功能强烈影响土壤微生物群落,因此我们采用先拟合植物特征然后再加上土壤微生物的附加效应的顺序方法,确定了生态系统特性,植物性状和土壤群落特征之间的关系。我们确定了一个连续的过程,从站立的绿色生物量和站立的凋落物(主要与植物性状相关)到潜在的氮矿化和土壤无机氮的潜在浸出(主要与微生物特性相关)。植物和微生物功能参数对于解释土壤中有机物含量的百分比同样重要。一个平行的连续体从植物的高度(与地上的生物量相关)到通过叶片经济谱所捕获的植物质量效应,这与碳(C)和氮的循环相关。更多的利用物种(较高的比叶面积,叶片氮含量和较低的叶片干物质含量)和较高的草皮,以及以细菌为主的土壤微生物群落,具有快速的微生物活性,与较高的饲料产量有关,但碳和氮的保留较差。相反,保守性物种(具有相反性状)和土壤微生物群落以真菌为主导,以及活动缓慢的细菌通常与产量低,但土壤碳储存量和氮保留量较高有关。合成-草地生产,固碳和固氮与植物和微生物的功能性状密切相关。因此,为选择的或多种生态系统服务而管理草地将需要考虑植物和土壤群落的共同影响。进一步了解将植物和微生物功能性状联系起来的机制对于实现这一点至关重要。

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