Microbial Ecology, Department of Ecology, Lund University, SE-223 62 Lund, Sweden
Mycorrhiza. 2011 Feb;21(2):117-29. doi: 10.1007/s00572-010-0316-4. Epub 2010 May 25.
We investigated the elemental composition of spores and hyphae of arbuscular mycorrhizal fungi (AMF) collected from two saline sites at the desert border in Tunisia, and of Glomus intraradices grown in vitro with or without addition of NaCl to the medium, by proton-induced X-ray emission. We compared the elemental composition of the field AMF to those of the soil and the associated plants. The spores and hyphae from the saline soils showed strongly elevated levels of Ca, Cl, Mg, Fe, Si, and K compared to their growth environment. In contrast, the spores of both the field-derived AMF and the in vitro grown G. intraradices contained lower or not elevated Na levels compared to their growth environment. This resulted in higher K:Na and Ca:Na ratios in spores than in soil, but lower than in the associated plants for the field AMF. The K:Na and Ca:Na ratios of G. intraradices grown in monoxenic cultures were also in the same range as those of the field AMF and did not change even when those ratios in the growth medium were lowered several orders of magnitude by adding NaCl. These results indicate that AMF can selectively take up elements such as K and Ca, which act as osmotic equivalents while they avoid uptake of toxic Na. This could make them important in the alleviation of salinity stress in their plant hosts.
我们通过质子诱导 X 射线发射研究了从突尼斯沙漠边界的两个盐渍地点采集的丛枝菌根真菌(AMF)的孢子和菌丝,以及在培养基中添加或不添加 NaCl 生长的 Glomus intraradices 的元素组成。我们将野外 AMF 的元素组成与土壤和相关植物进行了比较。与生长环境相比,来自盐渍土壤的孢子和菌丝表现出 Ca、Cl、Mg、Fe、Si 和 K 的强烈升高水平。相比之下,来自野外 AMF 和体外生长的 G. intraradices 的孢子中 Na 水平较低或没有升高。这导致孢子中的 K:Na 和 Ca:Na 比值高于土壤,但低于野外 AMF 的相关植物。在单养培养中生长的 G. intraradices 的 K:Na 和 Ca:Na 比值也与野外 AMF 的比值相同,即使通过添加 NaCl 将生长介质中的这些比值降低几个数量级,这些比值也不会改变。这些结果表明,AMF 可以选择性地吸收 K 和 Ca 等元素,这些元素在作为渗透调节剂时不会被吸收,而避免吸收有毒的 Na。这可能使它们在缓解植物宿主的盐胁迫方面发挥重要作用。