Emergence of synchronized growth oscillations in filamentous fungi.

Prakash, Praneet; Jiang, Xue; Richards, Luke; Schofield, Zoe; Schäfer, Patrick; Polin, Marco; Soyer, Orkun S; Asally, Munehiro · J R Soc Interface · 2024

basic_science · Level V

Where this comes from

Abstract

Many species of soil fungi grow in the form of branched networks that enable long-range communication and mass flow of nutrient. These networks play important roles in the soil ecosystem as a major decomposer of organic materials. While there have been investigations on the branching of the fungal networks, their long-term growth dynamics in space and time is still not very well understood. In this study, we monitor the spatio-temporal growth dynamics of the plant-promoting filamentous fungus <i>Serendipita indica</i> for several days in a controlled environment within a microfluidic chamber. We find that <i>S. indica</i> cells display synchronized growth oscillations with the onset of sporulation and at a period of 3 h. Quantifying this experimental synchronization of oscillatory dynamics, we show that the synchronization can be recapitulated by the nearest neighbour Kuramoto model with a millimetre-scale cell-cell coupling. The microfluidic set-up presented in this work may aid the future characterization of the molecular mechanisms of the cell-cell communication, which could lead to biophysical approaches for controlling fungi growth and reproductive sporulation in soil and plant health management.

Medical subject headings