Instituto de Ciencias de la Tierra y Evolución, Facultad de Ciencias, Universidad Austral de Chile, Casilla 567, Valdivia, Chile.
Plant Cell Environ. 2012 Jan;35(1):126-35. doi: 10.1111/j.1365-3040.2011.02422.x. Epub 2011 Oct 12.
Acid phosphatase (ACP) enzymes are involved in the mobilization of soil phosphorus (P) and polyphosphate accumulated in the fungal tissues of ectomycorrhizal roots, thereby influencing the amounts of P that are stored in the fungus and transferred to the host plant. This study evaluated the effects of ectomycorrhizal morphotype and soil fertility on ACP activity in the extraradical mycelium (ACP(myc)), the mantle (ACP(mantle)) and the Hartig net region (ACP(Hartig)) of ectomycorrhizal Nothofagus obliqua seedlings. ACP activity was quantified in vivo using enzyme-labelled fluorescence-97 (ELF-97) substrate, confocal laser microscopy and digital image processing routines. There was a significant effect of ectomycorrhizal morphotype on ACP(myc), ACP(mantle) and ACP(Hartig), while soil fertility had a significant effect on ACP(myc) and ACP(Hartig). The relative contribution of the mantle and the Hartig net region to the ACP activity on the ectomycorrhizal root was significantly affected by ectomycorrhizal morphotype and soil fertility. A positive correlation between ACP(Hartig) and the shoot P concentration was found, providing evidence that ACP activity at the fungus:root interface is involved in P transfer from the fungus to the host. It is concluded that the spatial distribution of ACP in ectomycorrhizas varies as a function of soil fertility and colonizing fungus.
酸性磷酸酶 (ACP) 酶参与土壤磷 (P) 的动员和外生菌根根组织中积累的多磷酸盐,从而影响储存在真菌中的 P 量和向宿主植物的转移。本研究评估了外生菌根形态和土壤肥力对 Nothofagus obliqua 幼苗外生菌根菌体外生菌丝(ACP(myc))、套膜(ACP(mantle))和 Hartig 网区(ACP(Hartig))中 ACP 活性的影响。使用酶标记荧光-97(ELF-97)底物、共聚焦激光显微镜和数字图像处理程序在体内定量 ACP 活性。外生菌根形态对 ACP(myc)、ACP(mantle)和 ACP(Hartig)有显著影响,而土壤肥力对 ACP(myc)和 ACP(Hartig)有显著影响。套膜和 Hartig 网区对菌根根上 ACP 活性的相对贡献受外生菌根形态和土壤肥力的显著影响。发现 ACP(Hartig)与地上部 P 浓度呈正相关,这表明在真菌:根界面的 ACP 活性参与了 P 从真菌向宿主的转移。结论是,外生菌根中 ACP 的空间分布随土壤肥力和定殖真菌而变化。