首页> 外文期刊>Soil Biology & Biochemistry >Translocation of metals by trees and fungi regulates pH, soil organic matter turnover and nitrogen availability in acidic forest soils.
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Translocation of metals by trees and fungi regulates pH, soil organic matter turnover and nitrogen availability in acidic forest soils.

机译:树木和真菌使金属易位,从而调节了酸性森林土壤的pH值,土壤有机质的周转率和氮的利用率。

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In this paper we provide support for the hypothesis that trees and fungi modify their physical environment in acidic forest soils by actively translocating metal cations from the mineral to the organic horizon. We suggest that pH buffering and soil organic matter (SOM) turnover in organic horizons are regulated by Ca and Mg cycling via the tree canopy and litter fall and by fungal translocation of Al from mineral soil. Fungi in addition translocate Fe from mineral to organic horizons to enhance the degradation of aromatic structures in SOM. Together these processes are in control of N bioavailability, including new inputs via N fixation. Cycling of Ca and Mg via tree canopy typically increase the base saturation and pH towards the surface of organic forest soil horizons. This process is most clearly depicted at sites with laterally moving groundwater. An up-transport of Al from mineral to the organic horizon is most important as a pH buffering process in less productive, acid soils having a pH below approximately 4.5. At this pH, the non-acidic properties of organically complexed Al keep pH at a level sufficiently high for maintained microbial activity. Furthermore, the formation of bridging bonds between major organic functional groups (carboxyls and phenols) and di- and trivalent metal cations of Ca, Al and Fe possesses a strong influence on the tertiary structure of SOM and its persistence to degradation and delivery of N.
机译:在本文中,我们为以下假设提供了支持:树木和真菌通过将金属阳离子从矿物质主动转移到有机层中来改变其在酸性森林土壤中的物理环境。我们建议,有机层中的pH缓冲和土壤有机质(SOM)转换受树冠和凋落物的钙和镁循环以及矿物质土壤中铝的真菌迁移的影响。此外,真菌还将铁从矿物质中转移到有机物中,以增强SOM中芳香结构的降解。这些过程共同控制着N的生物利用度,包括通过N固定产生的新输入。钙和镁通过树冠的循环通常会增加有机森林土壤层表面的碱饱和度和pH值。在地下水横向移动的地点最清楚地描绘了这一过程。在pH值低于约4.5的生产力较低的酸性土壤中,pH缓冲过程中最重要的是Al从矿物向有机层的向上迁移。在此pH值下,有机络合的Al的非酸性可将pH值保持在足够高的水平,以保持微生物活性。此外,主要有机官能团(羧基和酚)与Ca,Al和Fe的二价和三价金属阳离子之间的桥键的形成对SOM的三级结构及其对N的降解和传递的持久性具有强烈影响。

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