Plant and Fungal Physics I

FOCUS · T36 · ID: 2154392






Presentations

  • Helical Fungi Under Physical Constraints

    ORAL · Invited

    Presenters

    • Catherine Villard

      CNRS Director of Research / University of Paris

    Authors

    • Catherine Villard

      CNRS Director of Research / University of Paris

    • Igor K Kulic

      CNRS

    • Elodie Couttenier

      Université PSL

    View abstract →

  • Digital reconstruction and analysis of the growing and branching mycelial network of the model filamentous fungus Podospora anserina

    ORAL

    Publication: -Dikec, J., et al.: Hyphal network whole field imaging allows for accurate estimation of anastomosis rates and branching dynamics of the filamentous fungus Podospora anserina. Sci Rep 10, 3131 (2020).
    -Ledoux, C., Chapeland-Leclerc, F., Ruprich-Robert, G. et al. Prediction and experimental evidence of the optimisation of the angular branching process in the thallus growth of Podospora anserina. Sci Rep 12, 12351 (2022).
    -Ledoux C et al. Prediction and experimental evidence of different growth phases of the Podospora anserina hyphal network. Sci Rep. 2023 May 25;13(1):8501.
    -Digital reconstruction and analysis of the growing and branching mycelial network of the model filamentous fungus Podospora anserina. Planned paper

    Presenters

    • Thibault Chassereau

      Laboratoire Interdisciplinaire des Energies de Demain

    Authors

    • Thibault Chassereau

      Laboratoire Interdisciplinaire des Energies de Demain

    • Éric Herbert

      Université Paris Cité

    • Florence Chapeland-Leclerc

      université Paris Cité, Université Paris Cité - LIED

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  • Prediction and experimental evidence of different growth phases of the Podospora anserina hyphal network

    ORAL

    Publication: Dikec, J., A. Olivier, C. Bobée, Y. D'Angelo, R. Catellier, P. David, F. Filaine, et al. « Hyphal Network Whole Field Imaging Allows for Accurate Estimation of Anastomosis Rates and Branching Dynamics of the Filamentous Fungus Podospora Anserina ». Scientific Reports 10, nᵒ 1 (21 février 2020): 1‑16. https://doi.org/10.1038/s41598-020-57808-y.
    Dupas, Marie-Cécile, Sophie Parison, Vincent Noel, Petros Chatzimpiros, et Éric Herbert. « Variable Renewable Energy Penetration Impact on Productivity: A Case Study of Poultry Farming ». PLOS ONE 18, nᵒ 10 (2 octobre 2023): e0286242. https://doi.org/10.1371/journal.pone.0286242.
    Ledoux, Clara, Florence Chapeland-Leclerc, Gwenaël Ruprich-Robert, Cécilia Bobée, Christophe Lalanne, Éric Herbert, et Pascal David. « Prediction and Experimental Evidence of Different Growth Phases of the Podospora Anserina Hyphal Network ». Scientific Reports 13, nᵒ 1 (25 mai 2023): 8501. https://doi.org/10.1038/s41598-023-35327-w.

    Presenters

    • Éric Herbert

      Université Paris Cité

    Authors

    • Éric Herbert

      Université Paris Cité

    • Florence Chapeland-Leclerc

      université Paris Cité, Université Paris Cité - LIED

    • Pascal David

      Université Paris Cité

    • Clara Ledoux

      Université Paris Cité

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  • Task-level Dynamics of Rice Root Gravitropism Revealed by Frequency Response Analysis

    ORAL

    Presenters

    • Madison Hales

      Georgia Institute of Technology

    Authors

    • Madison Hales

      Georgia Institute of Technology

    • Yu Yang

      Johns Hopkins University

    • Aradhya Rajanala

      Georgia Institute of Technology

    • Christopher J Pierce

      Georgia Institute of Technology

    • Mingyuan Zhu

      Duke University

    • Philip N Benfey

      Duke university, Duke University

    • Noah J Cowan

      Johns Hopkins University

    • Daniel I Goldman

      Georgia Tech

    • Daniel I Goldman

      Georgia Tech

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  • Robust posture control by plants in dynamic gravity field

    ORAL

    Publication: Oliveri, Moulton, Harrington & Goriely (2023). Active shape control by plants in dynamic environments. arXiv https://doi.org/10.48550/arXiv.2309.08950

    Presenters

    • Hadrien Oliveri

      Max Planck Institute of Molecular Cell Biology and Genetics

    Authors

    • Hadrien Oliveri

      Max Planck Institute of Molecular Cell Biology and Genetics

    • Derek E Moulton

      University of Oxford

    • Heather A Harrington

      Max Planck Institute of Molecular Cell Biology and Genetics

    • Alain Goriely

      University of Oxford

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  • Discovery of a new active matter process that controls plant-atmosphere coupling

    ORAL

    Presenters

    • Sabyasachi Sen

      Cornell University

    Authors

    • Sabyasachi Sen

      Cornell University

    • Piyush Jain

      Cornell University

    • Fulton E Rockwell

      Harvard University

    • Robert J Twohey III

      University of Illinois Urbana-Champaign

    • Matthew J Runyon

      University of Illinois Urbana-Champaign

    • Anthony J Studer

      University of Illinois Urbana-Champaign

    • Noel Michele Holbrook

      Harvard University

    • Abraham D Stroock

      Cornell University

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  • Sum Frequency Generation Vibrational Spectroscopy and Imaging of Crystalline Cellulose Microfibrils in Plant Cell Walls

    ORAL

    Publication: 1. Juseok Choi, Jongcheol Lee, Mohamadamin Makarem, Shixin Huang, and Seong H. Kim, 'Numerical Simulation of Vibrational Sum Frequency Generation Intensity for Non-Centrosymmetric Domains Interspersed in an Amorphous Matrix: A Case Study for Cellulose in Plant Cell Wall', The Journal of Physical Chemistry B 2022 126 (35), 6629-6641
    2. Juseok Choi, Albert L. Kwansa, Yaroslava G. Yingling, and Seong H. Kim, 'DFT-Based Calculation of Molecular Hyperpolarizability and SFG Intensity of Symmetric and Asymmetric Stretch Modes of Alkyl Groups', The Journal of Physical Chemistry B 2023 127 (39), 8456-8467
    3. Juseok Choi, Mohamadamin Makarem, Chonghan Lee, Jongcheol Lee, Sarah Kiemle, Daniel J. Cosgrove, and Seong H. Kim, 'Tissue-Specific Directionality of Cellulose Synthase Complex Movement in Plant Cell Wall', 2023 (Under Review)
    4. Makarem, M. et al. 'Distinguishing Mesoscale Polar Order (Unidirectional vs Bidirectional) of Cellulose Microfibrils in Plant Cell Walls Using Sum Frequency Generation Spectroscopy', The Journal of Physical Chemistry B 2020, 124, 8071-8081
    5. Makarem, M. et al. 'Probing cellulose structures with vibrational spectroscopy' 2019, Cellulose 26, 35-79

    Presenters

    • Juseok Choi

      Pennsylvania State University

    Authors

    • Juseok Choi

      Pennsylvania State University

    • Mohamadamin Makarem

      Pennsylvania State University

    • Chonghan Lee

      Pennsylvania State University

    • Jongcheol Lee

      Pennsylvania State University

    • Sarah Kiemle

      Pennsylvania State University

    • Albert Kwansa

      North Carolina State University

    • Yaroslava Yingling

      North Carolina State University

    • Daniel J Cosgrove

      Pennsylvania State University

    • Seong H Kim

      Pennsylvania State University

    View abstract →