Research Unit on Agrobiodiversity (UR13AGR05), Department of Horticultural Sciences, Higher Agronomic Institute, IRESA-University of Sousse, 4042, Chott-Mariem, Sousse, Tunisia.
Laboratory for Applied In Vitro Plant Biotechnology, Department of Plants and Crops, Faculty of Bioscience Engineering, Ghent University, Ghent, Belgium.
Mycorrhiza. 2019 Nov;29(6):607-614. doi: 10.1007/s00572-019-00919-w. Epub 2019 Oct 23.
The Mycelium Donor Plant system (MDP) was adapted to study the time course of the colonization of Pyrus communis by Rhizophagus irregularis under in vitro conditions. Isolated germinated spores did not colonize pear roots. Inoculum composed of R. irregularis spores/mycelium associated with chicory root fragments was used to inoculate Medicago truncatula which became thereafter the MDP of pear plantlets. Typical intraradical structures (hyphae, arbuscules, spores/vesicles) and appressoria were observed in the pear roots. During acclimatization, the pear plants formed a densely branched root system. R. irregularis colonization not only altered the root architecture but also changed the nutrient composition of the acclimatized pear plantlets.
菌根供体植物系统(MDP)被改编用于研究 Rhizophagus irregularis 在体外条件下对西洋梨根系定殖的时间过程。分离的萌发孢子不会定殖梨根。由 R. irregularis 孢子/菌丝体与菊苣根片段组成的接种体用于接种金雀花,之后金雀花成为梨苗的 MDP。在梨根中观察到典型的根内结构(菌丝、丛枝、孢子/泡囊)和附着胞。在适应阶段,梨植株形成了一个密集分枝的根系。R. irregularis 的定殖不仅改变了根系结构,还改变了适应的梨苗的养分组成。