TY - JOUR
T1 - Volatile signalling by sesquiterpenes from ectomycorrhizal fungi reprogrammes root architecture
AU - Ditengou, Frank A.
AU - Müller, Anna
AU - Rosenkranz, Maaria
AU - Felten, Judith
AU - Lasok, Hanna
AU - Miloradovic van Doorn, Maja
AU - Legué, Valérie
AU - Palme, Klaus
AU - Schnitzler, Jörg-Peter
AU - Polle, Andrea
PY - 2015
Y1 - 2015
N2 - The mutualistic association of roots with ectomycorrhizal fungi promotes plant health and is a hallmark of boreal and temperate forests worldwide. In the pre-colonization phase, before direct contact, lateral root (LR) production is massively stimulated, yet little is known about the signals exchanged during this step. Here, we identify sesquiterpenes (SQTs) as biologically active agents emitted by Laccaria bicolor while interacting with Populus or Arabidopsis. We show that inhibition of fungal SQT production by lovastatin strongly reduces LR proliferation and that (-)-thujopsene, a low-abundance SQT, is sufficient to stimulate LR formation in the absence of the fungus. Further, we show that the ectomycorrhizal ascomycote, Cenococcum geophilum, which cannot synthesize SQTs, does not promote LRs. We propose that the LR-promoting SQT signal creates a win-win situation by enhancing the root surface area for plant nutrient uptake and by improving fungal access to plant-derived carbon via root exudates.
AB - The mutualistic association of roots with ectomycorrhizal fungi promotes plant health and is a hallmark of boreal and temperate forests worldwide. In the pre-colonization phase, before direct contact, lateral root (LR) production is massively stimulated, yet little is known about the signals exchanged during this step. Here, we identify sesquiterpenes (SQTs) as biologically active agents emitted by Laccaria bicolor while interacting with Populus or Arabidopsis. We show that inhibition of fungal SQT production by lovastatin strongly reduces LR proliferation and that (-)-thujopsene, a low-abundance SQT, is sufficient to stimulate LR formation in the absence of the fungus. Further, we show that the ectomycorrhizal ascomycote, Cenococcum geophilum, which cannot synthesize SQTs, does not promote LRs. We propose that the LR-promoting SQT signal creates a win-win situation by enhancing the root surface area for plant nutrient uptake and by improving fungal access to plant-derived carbon via root exudates.
UR - https://res.slu.se/id/publ/76146
U2 - 10.1038/ncomms7279
DO - 10.1038/ncomms7279
M3 - Journal article
C2 - 25703994
SN - 2041-1723
VL - 6
JO - Nature Communications
JF - Nature Communications
M1 - 6279
ER -