Literature DB >> 21225357

Modelling nutrient uptake by individual hyphae of arbuscular mycorrhizal fungi: temporal and spatial scales for an experimental design.

Andrea Schnepf1, Davey Jones, Tiina Roose.   

Abstract

Arbuscular mycorrhizas, associations between plant roots and soil fungi, are ubiquitous among land plants. Arbuscular mycorrhizas can be beneficial for plants by overcoming limitations in nutrient supply. Hyphae, which are long and thin fungal filaments extending from the root surface into the soil, increase the volume of soil accessible for plant nutrient uptake. However, no models so far specifically consider individual hyphae. We developed a mathematical model for nutrient uptake by individual fungal hyphae in order to assess suitable temporal and spatial scales for a new experimental design where fungal uptake parameters are measured on the single hyphal scale. The model was developed based on the conservation of nutrients in an artificial cylindrical soil pore (capillary tube) with adsorbing wall, and analysed based on parameter estimation and non-dimensionalisation. An approximate analytical solution was derived using matched asymptotic expansion. Results show that nutrient influx into a hypha from a small capillary tube is characterized by three phases: Firstly, uptake rapidly decreases as the hypha takes up nutrients, secondly, the depletion zone reaches the capillary wall and thus uptake is sustained by desorption of nutrients from the capillary wall, and finally, uptake goes to zero after nutrients held on the capillary wall have been completely depleted. Simulating different parameter regimes resulted in recommending the use of capillaries filled with hydrogel instead of water in order to design an experiment operating over measurable time scales.
© The Author(s) 2011. This article is published with open access at Springerlink.com

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Year:  2011        PMID: 21225357     DOI: 10.1007/s11538-010-9617-1

Source DB:  PubMed          Journal:  Bull Math Biol        ISSN: 0092-8240            Impact factor:   1.758


  6 in total

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Authors:  Yanyan Han; Wenrui Zhang; Tingying Xu; Ming Tang
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4.  Image-based modelling of nutrient movement in and around the rhizosphere.

Authors:  Keith R Daly; Samuel D Keyes; Shakil Masum; Tiina Roose
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5.  Arbuscular mycorrhizal fungi increase salt tolerance of apple seedlings.

Authors:  Shou-Jun Yang; Zhong-Lan Zhang; Yuan-Xia Xue; Zhi-Fen Zhang; Shu-Yi Shi
Journal:  Bot Stud       Date:  2014-10-09       Impact factor: 2.787

6.  Multimodal correlative imaging and modelling of phosphorus uptake from soil by hyphae of mycorrhizal fungi.

Authors:  Sam Keyes; Arjen van Veelen; Dan McKay Fletcher; Callum Scotson; Nico Koebernick; Chiara Petroselli; Katherine Williams; Siul Ruiz; Laura Cooper; Robbie Mayon; Simon Duncan; Marc Dumont; Iver Jakobsen; Giles Oldroyd; Andrzej Tkacz; Philip Poole; Fred Mosselmans; Camelia Borca; Thomas Huthwelker; David L Jones; Tiina Roose
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  6 in total

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