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  4. "You Are What You Eat": How Fungal Adaptation Can Be Leveraged toward Myco-Material Properties
 
research article

"You Are What You Eat": How Fungal Adaptation Can Be Leveraged toward Myco-Material Properties

Hernando, Alicia Vivas
•
Sun, Wenjing  
•
Abitbol, Tiffany  
November 8, 2023
Global Challenges

Fungi adapt to their surroundings, modifying their behaviors and composition under different conditions like nutrient availability and environmental stress. This perspective examines how a basic understanding of fungal genetics and the different ways that fungi can be influenced by their surroundings can be leveraged toward the production of functional mycelium materials. Simply put, within the constraints of a given genetic script, both the quality and quantity of fungal mycelium are shaped by what they eat and where they grow. These two levers, encompassing their global growth environment, can be turned toward different materials outcomes. The final properties of myco-materials are thus intimately shaped by the conditions of their growth, enabling the design of new biobased and biodegradable material constructions for applications that have traditionally relied on petroleum-based chemicals.This perspective highlights aspects of fungal genetics and environmental adaptation that have potential materials science implications, along the way touching on key studies, both to situate the state of the art within the field and to punctuate the viewpoints of the authors. Finally, this work ends with future perspectives, reinforcing key topics deemed important to consider in emerging myco-materials research.|This perspective aims to critically explore the different levers that can be turned to obtain functional and reliable myco-materials engineered from fungi. These levers include fungal species, encompassing their specific set of genetic information, as well as global environmental cues, encompassing aspects of nutrition, that can be used to coax end material properties toward a desired outcome via fungal adaptation.image

  • Details
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Type
research article
DOI
10.1002/gch2.202300140
Web of Science ID

WOS:001098469800001

Author(s)
Hernando, Alicia Vivas
Sun, Wenjing  
Abitbol, Tiffany  
Date Issued

2023-11-08

Publisher

Wiley-V C H Verlag Gmbh

Published in
Global Challenges
Subjects

Biocomposites

•

Environment

•

Fungi

•

Genetics

•

Mycelium

•

Myco-Materials

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
SML  
FunderGrant Number

T.A. acknowledges the Chair in Sustainable Materials at EPFL, co-funded by BASF, Logitech, Nestl, and SIG. W.S. and T.A. acknowledge funding from the ETH Domain Joint Initiative project "Proteins for a Sustainable Future".

BASF

Logitech

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Available on Infoscience
February 19, 2024
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/204178
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