van Schöll Laura, Smits Mark M, Hoffland Ellis
Department of Soil Quality, Wageningen University, PO Box 8005, 6700 EC Wageningen, the Netherlands.
New Phytol. 2006;171(4):805-13. doi: 10.1111/j.1469-8137.2006.01790.x.
Ectomycorrhizal fungi are hypothesized to enhance mineral weathering in forest soils. Several studies have shown an increased uptake of mineral-derived nutrients by trees when in symbiosis with ectomycorrhizal fungi. However, it is difficult to determine from these studies if the improved nutrient uptake is the result of increased weathering or better exploitation of the substrate by the ectomycorrhizal fungi. In a pot experiment, Pinus sylvestris (Scots pine) seedlings were grown with or without ectomycorrhizal fungi, and with or without the mineral muscovite as the only potassium (K) source or the mineral hornblende as the only magnesium (Mg) source. After 27 wk, all pools of non-mineral-bound K or Mg were determined. The ectomycorrhizal fungus Paxillus involutus increased weathering of muscovite but not hornblende. The other ectomycorrhizal fungi tested, Piloderma croceum and Suillus bovinus, did not increase weathering of either muscovite or hornblende compared with the nonmycorrhizal trees. The P. involutus-mediated mobilization of K from muscovite resulted in increased K content of root plus adhering hyphae, but not of shoots. In conclusion, ectomycorrhizal fungi may increase weathering of minerals in response to nutrient deficiencies, but this response is species specific.
外生菌根真菌被认为可增强森林土壤中的矿物风化作用。多项研究表明,树木与外生菌根真菌共生时,对矿物衍生养分的吸收会增加。然而,从这些研究中很难确定养分吸收的改善是矿物风化增加的结果,还是外生菌根真菌对底物更好利用的结果。在一项盆栽实验中,欧洲赤松(苏格兰松)幼苗在有或没有外生菌根真菌的情况下生长,并且有或没有矿物白云母作为唯一钾(K)源或矿物角闪石作为唯一镁(Mg)源。27周后,测定了所有非矿物结合的K或Mg库。外生菌根真菌卷缘桩菇增加了白云母的风化,但没有增加角闪石的风化。与非菌根树木相比,所测试的其他外生菌根真菌,即玫红皮伞和牛肝菌,均未增加白云母或角闪石的风化。卷缘桩菇介导的从白云母中调动K的作用导致根加附着菌丝中的K含量增加,但地上部分没有增加。总之,外生菌根真菌可能会因养分缺乏而增加矿物的风化,但这种反应具有物种特异性。