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Quantity and distribution of arbuscular mycorrhizal fungal storage organs within dead roots
Anja Müller1, Benard Ngwene2, Edgar Peiter3
1Leibniz-Institute of Vegetable and Ornamental Crops, Theodor-Echtermeyer-Weg 1, 14979, Grossbeeren, Germany. mueller@igzev.de.
Abstract:
The formation of storage organs, such as spores and vesicles, is a central part of the life cycle of an arbuscular mycorrhizal fungus (AMF), but the conditions under which this occurs in AMF are not well understood. Here, quantity and distribution of storage organs formed by the arbuscular mycorrhizal fungus (AMF) Funneliformis mosseae within dead (excised) roots were characterised. 'Trap roots' (TR), separated from the growth substrate by a 30-μm mesh, supported hyphal growth and formation of storage organs of the AMF. Hyphae developed both inside and on the outside of the TR and also within air gaps of surrounding nylon mesh compartments, but formation of vesicles and spores was confined to the interior and to the surface of the TR. Up to 20 % of the TR length harboured newly formed storage organs, resulting in a number of about 60 per mg TR dry weight. The portion of TR length containing storage organs was greater in coarse (diameter >300 μm) than in thin (<150 μm) TR, irrespective of whether the TR were sourced from an AMF host or non-host plant. We conclude that the AMF's extraradical mycelium produces its storage organs within dead roots in preference to air space in the substrate. Dead roots may indirectly supply nutrients to AMF (once they have been mineralised) or represent a protected space for the fungal structures to develop. The experimental technique described here allows for the preparation of AMF spores and vesicles of F. mosseae free of any mineral substrate.
Insights
Arbuscular mycorrhizal fungi (AMF) form storage organs like spores and vesicles within dead roots. This study shows AMF prefer dead roots over substrate air spaces for storage organ development.
Area of Science:
- Mycology
- Plant-Microbe Interactions
- Fungal Biology
Background:
- Arbuscular mycorrhizal fungi (AMF) are crucial symbionts in plant nutrient acquisition.
- The formation of storage organs (spores, vesicles) is vital for AMF life cycles.
- Conditions influencing AMF storage organ formation are poorly understood.
Purpose of the Study:
- To investigate the quantity and distribution of storage organs formed by Funneliformis mosseae within dead roots.
- To determine if AMF prefer dead roots or surrounding substrate for storage organ development.
- To characterize the role of dead roots in AMF propagation.
Main Methods:
- Utilized 'trap roots' (TR) isolated by a 30-μm mesh to culture AMF.
- Analyzed hyphal growth and storage organ formation inside and on the surface of TR.
- Quantified storage organs in relation to TR length and diameter, and dry weight.
Main Results:
- Storage organs formed within dead roots, with hyphae also present externally and in air gaps.
- Vesicle and spore formation was restricted to the interior and surface of dead roots.
- Up to 20% of TR length contained storage organs (approx. 60 per mg dry weight).
- Coarse dead roots (>300 μm) supported more storage organs than thin roots (<150 μm).
Conclusions:
- Arbuscular mycorrhizal fungi preferentially form storage organs within dead roots.
- Dead roots provide a protected environment and potential nutrient source for AMF development.
- This method enables the isolation of AMF spores and vesicles free from substrate.
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