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在小尺度上,土壤养分含量影响土壤微生物的丰度,但不影响植物生物量。

Soil nutrient content influences the abundance of soil microbes but not plant biomass at the small-scale.

作者信息

Koorem Kadri, Gazol Antonio, Öpik Maarja, Moora Mari, Saks Ülle, Uibopuu Annika, Sõber Virve, Zobel Martin

机构信息

Department of Botany, Institute of Ecology and Earth Sciences, University of Tartu, Tartu, Estonia.

Department of Zoology, Institute of Ecology and Earth Sciences, University of Tartu, Tartu, Estonia.

出版信息

PLoS One. 2014 Mar 17;9(3):e91998. doi: 10.1371/journal.pone.0091998. eCollection 2014.

Abstract

Small-scale heterogeneity of abiotic and biotic factors is expected to play a crucial role in species coexistence. It is known that plants are able to concentrate their root biomass into areas with high nutrient content and also acquire nutrients via symbiotic microorganisms such as arbuscular mycorrhizal (AM) fungi. At the same time, little is known about the small-scale distribution of soil nutrients, microbes and plant biomass occurring in the same area. We examined small-scale temporal and spatial variation as well as covariation of soil nutrients, microbial biomass (using soil fatty acid biomarker content) and above- and belowground biomass of herbaceous plants in a natural herb-rich boreonemoral spruce forest. The abundance of AM fungi and bacteria decreased during the plant growing season while soil nutrient content rather increased. The abundance of all microbes studied also varied in space and was affected by soil nutrient content. In particular, the abundance of AM fungi was negatively related to soil phosphorus and positively influenced by soil nitrogen content. Neither shoot nor root biomass of herbaceous plants showed any significant relationship with variation in soil nutrient content or the abundance of soil microbes. Our study suggests that plants can compensate for low soil phosphorus concentration via interactions with soil microbes, most probably due to a more efficient symbiosis with AM fungi. This compensation results in relatively constant plant biomass despite variation in soil phosphorous content and in the abundance of AM fungi. Hence, it is crucial to consider both soil nutrient content and the abundance of soil microbes when exploring the mechanisms driving vegetation patterns.

摘要

非生物和生物因子的小尺度异质性预计在物种共存中发挥关键作用。已知植物能够将其根系生物量集中在养分含量高的区域,并且还能通过共生微生物(如丛枝菌根真菌)获取养分。与此同时,对于同一区域内土壤养分、微生物和植物生物量的小尺度分布却知之甚少。我们研究了天然富含草本植物的北方针叶混交林中土壤养分、微生物生物量(使用土壤脂肪酸生物标志物含量)以及草本植物地上和地下生物量的小尺度时空变化以及协变关系。在植物生长季节,丛枝菌根真菌和细菌的丰度下降,而土壤养分含量反而增加。所研究的所有微生物的丰度在空间上也存在差异,并受土壤养分含量的影响。特别是,丛枝菌根真菌的丰度与土壤磷呈负相关,与土壤氮含量呈正相关。草本植物的地上和地下生物量与土壤养分含量的变化或土壤微生物的丰度均未显示出任何显著关系。我们的研究表明,植物可以通过与土壤微生物的相互作用来补偿土壤低磷浓度,这很可能是由于与丛枝菌根真菌形成了更有效的共生关系。尽管土壤磷含量和丛枝菌根真菌的丰度存在变化,但这种补偿作用使得植物生物量相对稳定。因此,在探索驱动植被格局的机制时,考虑土壤养分含量和土壤微生物的丰度至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff18/3956881/7f221ff50743/pone.0091998.g001.jpg

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