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Rock-eating mycorrhizas: their role in plant nutrition and biogeochemical cycles

机译:食岩石的菌根:在植物营养和生物地球化学循环中的作用

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A decade ago, tunnels inside mineral grains were found that were likely formed by hyphae of ectomycorrhizal (EcM) fungi. This observation implied that EcM fungi can dissolve mineral grains. The observation raised several questions on the ecology of these “rock-eating” fungi. This review addresses the roles of these rock-eating EcM associations in plant nutrition, biogeochemical cycles and pedogenesis. Research approaches ranged from molecular to ecosystem level scales. Nutrient deficiencies change EcM seedling exudation patterns of organic anions and thus their potential to mobilise base cations from minerals. This response was fungal species-specific. Some EcM fungi accelerated mineral weathering. While mineral weathering could also increase the concentrations of phytotoxic aluminium in the soil solution, some EcM fungi increase Al tolerance through an enhanced exudation of oxalate. Through their contribution to Al transport, EcM hyphae could be agents in pedogenesis, especially podzolisation. A modelling study indicated that mineral tunnelling is less important than surface weathering by EcM fungi. With both processes taken together, the contribution of EcM fungi to weathering may be significant. In the field vertical niche differentiation of EcM fungi was shown for EcM root tips and extraradical mycelium. In the field EcM fungi and tunnel densities were correlated. Our results support a role of rock-eating EcM fungi in plant nutrition and biogeochemical cycles. EcM fungal species-specific differences indicate the need for further research with regard to this variation in functional traits.
机译:十年前,发现矿物质内部的隧道可能是由外生菌根(EcM)真菌的菌丝形成的。该观察结果暗示EcM真菌可以溶解矿物质。观察结果对这些“食岩性”真菌的生态学提出了几个问题。这项审查解决了这些吃岩石的EcM协会在植物营养,生物地球化学循环和成岩作用中的作用。研究方法从分子水平到生态系统水平不等。营养不足会改变EcM幼苗有机阴离子的渗出模式,从而改变其从矿物质中调动碱性阳离子的潜力。该反应是真菌物种特异性的。一些EcM真菌加速了矿物风化。虽然矿物风化还可以增加土壤溶液中植物毒性铝的浓度,但某些EcM真菌会通过增加草酸盐的渗出来提高铝的耐受性。通过其对Al转运的贡献,EcM菌丝可以成为成虫作用,尤其是Podzolization的媒介。一项建模研究表明,矿物质隧穿的重要性不及EcM真菌对地表风化的影响。将这两个过程结合在一起,EcM真菌对风化的贡献可能很大。在田间,EcM真菌的垂​​直生境分化显示出EcM根尖和根外菌丝体。在现场,EcM真菌与隧道密度相关。我们的研究结果支持食岩石EcM真菌在植物营养和生物地球化学循环中的作用。 EcM真菌物种特异性差异表明,需要就这种功能性状的变化进行进一步研究。

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