Arbuscular Mycorrhizal Fungi Elicit a Novel Intracellular Apparatus inMedicago truncatulaRoot Epidermal Cells before Infection[W]
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Open Access
- 11 November 2005
- journal article
- Published by Oxford University Press (OUP) in Plant Cell
- Vol. 17 (12) , 3489-3499
- https://doi.org/10.1105/tpc.105.035410
Abstract
The penetration of arbuscular mycorrhizal (AM) fungi through the outermost root tissues of the host plant is a critical step in root colonization, ultimately leading to the establishment of this ecologically important endosymbiotic association. To evaluate the role played by the host plant during AM infection, we have studied in vivo cellular dynamics within Medicago truncatula root epidermal cells using green fluorescent protein labeling of both the plant cytoskeleton and the endoplasmic reticulum. Targeting roots with Gigaspora hyphae has revealed that, before infection, the epidermal cell assembles a transient intracellular structure with a novel cytoskeletal organization. Real-time monitoring suggests that this structure, designated the prepenetration apparatus (PPA), plays a central role in the elaboration of the apoplastic interface compartment through which the fungus grows when it penetrates the cell lumen. The importance of the PPA is underlined by the fact that M. truncatula dmi (for doesn't make infections) mutants fail to assemble this structure. Furthermore, PPA formation in the epidermis can be correlated with DMI-dependent transcriptional activation of the Medicago early nodulin gene ENOD11. These findings demonstrate how the host plant prepares and organizes AM infection of the root, and both the plant–fungal signaling mechanisms involved and the mechanistic parallels with Rhizobium infection in legume root hairs are discussed.Keywords
This publication has 42 references indexed in Scilit:
- MtENOD11 Gene Activation During Rhizobial Infection and Mycorrhizal Arbuscule Development Requires a Common AT-Rich-Containing Regulatory SequenceMolecular Plant-Microbe Interactions®, 2005
- GFP-FABD2 fusion construct allows in vivo visualization of the dynamic actin cytoskeleton in all cells of Arabidopsis seedlingsEuropean Journal of Cell Biology, 2005
- A Putative Ca 2+ and Calmodulin-Dependent Protein Kinase Required for Bacterial and Fungal SymbiosesScience, 2004
- Medicago truncatula DMI1 Required for Bacterial and Fungal Symbioses in LegumesScience, 2004
- Targeted inoculation of Medicago truncatula in vitro root cultures reveals MtENOD11 expression during early stages of infection by arbuscular mycorrhizal fungiNew Phytologist, 2002
- Agrobacterium rhizogenes-Transformed Roots of Medicago truncatula for the Study of Nitrogen-Fixing and Endomycorrhizal Symbiotic AssociationsMolecular Plant-Microbe Interactions®, 2001
- Medicago truncatula ENOD11: A Novel RPRP-Encoding Early Nodulin Gene Expressed During Mycorrhization in Arbuscule-Containing CellsMolecular Plant-Microbe Interactions®, 2001
- Intracellular accommodation of microbes by plants: a common developmental program for symbiosis and disease?Current Opinion in Plant Biology, 2000
- A GFP–MAP4 Reporter Gene for Visualizing Cortical Microtubule Rearrangements in Living Epidermal CellsPlant Cell, 1998
- Red carpet genetic programmes for root endosymbiosesTrends in Plant Science, 1997