Briccoli Bati Caterina, Santilli Elena, Lombardo Luca
Consiglio per la Ricerca e la Sperimentazione in Agricoltura, Research Centre for Oliviculture and Olive Oil Industry, Rende, Italy,
Mycorrhiza. 2015 Feb;25(2):97-108. doi: 10.1007/s00572-014-0589-0. Epub 2014 Jul 10.
The reported work was designed to increase knowledge about the role of arbuscular mycorrhizal fungi (AMF) on the phytoavailability and allocation of some of the principal macroelements and microelements in young potted olive plants growing in a soil presenting high levels of manganese (Mn), taken from an experimental olive field. A greenhouse trial was performed using self-rooted cuttings of Ascolana tenera, Nocellara del Belice and Carolea cultivars inoculated or not with two mycorrhizal inocula (commercial vs native). Molecular characterization of the indigenous AMF indicated that the species found in the experimental soil were different from those present in the commercial inoculum. The important incidence of AMF on P uptake was confirmed with generally double the concentration in mycorrhizal olive plants as compared to non-mycorrhizal controls, irrespective of genotype and inocula. Furthermore, apart from promoting plant growth (from 1.7- to 5-fold), the symbiosis reduced Mn concentrations from 43 to 83%. The observed differences depended on the cultivar and the inoculum, with native AMF being more effective probably as a result of their adaptation to the experimental soil. No clear direct relationship was found between AMF inoculation and other elements analysed.
本研究旨在增加对丛枝菌根真菌(AMF)在盆栽幼龄油橄榄植株中某些主要大量元素和微量元素的植物有效性及分配方面作用的了解,这些植株生长在取自试验橄榄园、锰(Mn)含量高的土壤中。采用阿斯克拉纳・泰内拉、诺切拉・德尔・贝利切和卡罗莱亚品种的自根插条进行温室试验,分别接种或不接种两种菌根接种物(商业接种物与本地接种物)。对本地AMF的分子特征分析表明,试验土壤中发现的菌种与商业接种物中的不同。无论基因型和接种物如何,菌根油橄榄植株中磷的吸收浓度通常是非菌根对照植株的两倍,这证实了AMF对磷吸收的重要影响。此外,除了促进植物生长(增长1.7至5倍)外,共生关系还使锰浓度降低了43%至83%。观察到的差异取决于品种和接种物,本地AMF可能由于其对试验土壤的适应性而更有效。在AMF接种与分析的其他元素之间未发现明确的直接关系。