Schnepf A, Roose T, Schweiger P
Department of Forest and Soil Sciences, Institute of Soil Science, BOKU-University of Natural Resources and Applied Life Sciences, Peter Jordan-Strasse 82, 1190 Vienna, Austria.
J R Soc Interface. 2008 Jul 6;5(24):773-84. doi: 10.1098/rsif.2007.1250.
In order to quantify the contribution of arbuscular mycorrhizal (AM) fungi to plant phosphorus nutrition, the development and extent of the external fungal mycelium and its nutrient uptake capacity are of particular importance. We develop and analyse a model of the growth of AM fungi associated with plant roots, suitable for describing mechanistically the effects of the fungi on solute uptake by plants. The model describes the development and distribution of the fungal mycelium in soil in terms of the creation and death of hyphae, tip-tip and tip-hypha anastomosis, and the nature of the root-fungus interface. It is calibrated and corroborated using published experimental data for hyphal length densities at different distances away from root surfaces. A good agreement between measured and simulated values was found for three fungal species with different morphologies: Scutellospora calospora (Nicol. & Gerd.) Walker & Sanders; Glomus sp.; and Acaulospora laevis Gerdemann & Trappe associated with Trifolium subterraneum L. The model and findings are expected to contribute to the quantification of the role of AM fungi in plant mineral nutrition and the interpretation of different foraging strategies among fungal species.
为了量化丛枝菌根(AM)真菌对植物磷营养的贡献,外部真菌菌丝体的发育和范围及其养分吸收能力尤为重要。我们开发并分析了一个与植物根系相关的AM真菌生长模型,该模型适用于从机制上描述真菌对植物溶质吸收的影响。该模型从菌丝的产生和死亡、菌丝顶端与顶端以及顶端与菌丝的吻合以及根-真菌界面的性质等方面描述了真菌菌丝体在土壤中的发育和分布。利用已发表的关于距根表面不同距离处菌丝长度密度的实验数据对该模型进行了校准和验证。对于与地下三叶草相关的三种形态不同的真菌:美丽盾巨孢囊霉(Scutellospora calospora (Nicol. & Gerd.) Walker & Sanders)、球囊霉属(Glomus sp.)和光壁无梗囊霉(Acaulospora laevis Gerdemann & Trappe),测量值与模拟值之间发现了良好的一致性。该模型和研究结果有望有助于量化AM真菌在植物矿物质营养中的作用,并解释不同真菌物种之间的觅食策略差异。