Siderophore production by the lichen fungus Xanthoria parietina supports its algal symbiont

I Isidor Happacher G Gregor Pichler B Beate Abt G Gulnara Tagirdzhanova S Simon Oberegger M Martin Kraihammer K Klaus Faserl B Bettina Sarg (Institute of Medical Biochemistry, Protein Core Facility, Biocenter, Medical University of Innsbruck) C Clemens Decristoforo R Roman Türk G Günther Winkelmann N Nicholas J. Talbot M Matthias Brock I Ilse Kranner K Kurt Haselwandter H Hubertus Haas

Abstract

Abstract Lichens are symbiotic associations between a fungal mycobiont and a photosynthetic photobiont. They thrive in nutrient-poor environments; yet the mechanisms underlying their adaptation to iron limitation remained largely unknown. Here, we characterize the iron acquisition system of Xanthoria parietina , a globally distributed lichen-forming fungus associated with the microalgal photobiont Trebouxia decolorans . We demonstrate that the mycobiont produces the siderophore ferrichrome and possesses the full genetic repertoire not only for siderophore biosynthesis, but also reductive iron assimilation, iron detoxification, and regulation. The ferrichrome-synthesizing non-ribosomal peptides synthetase exhibits a lichen-specific compact architecture but retains functionality when heterologously expressed in a non-lichenized ascomycete. Transcriptomic analysis and ferrichrome quantification reveal substrate-dependent regulation of the siderophore system. Importantly, ferrichrome promotes photobiont growth independent of extracellular iron reduction, indicating direct utilization. These findings provide the functional evidence of siderophore-mediated iron acquisition in a lichen symbiosis and highlight ferrichrome as a key mediator of mutualistic nutrient exchange.

Article Details

Volume / Issue Vol. 1, Issue 1
Published July 02, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (16)

I

Isidor Happacher

G

Gregor Pichler

B

Beate Abt

G

Gulnara Tagirdzhanova

S

Simon Oberegger

M

Martin Kraihammer

K

Klaus Faserl

B

Bettina Sarg

Institute of Medical Biochemistry, Protein Core Facility, Biocenter, Medical University of Innsbruck

C

Clemens Decristoforo

R

Roman Türk

G

Günther Winkelmann

N

Nicholas J. Talbot

M

Matthias Brock

I

Ilse Kranner

K

Kurt Haselwandter

H

Hubertus Haas