Inter-generational consistency of the ectomycorrhizal fungal community in a mixed pine–cedar post-fire stand

Author:

Livne-Luzon Stav1ORCID,Avidar Mor2,Herol Lior2,Rog Ido1,Klein Tamir1ORCID,Shemesh Hagai2

Affiliation:

1. Department of Plant & Environmental Sciences, Weizmann Institute of Science , Rehovot 76100 , Israel

2. Department of Environmental Sciences, Tel-Hai College , 12208 , Israel

Abstract

Abstract The mutualistic interaction between trees and ectomycorrhizal fungi (EMF) can have a major effect on forest dynamics and specifically on seedling establishment. Here, we compared the EMF community composition associated with the roots of young saplings and mature trees of two co-habiting Pinaceae: Pinus halepensis and Cedrus deodara growing together in a post-fire forest plot, using fungal ITS metabarcoding. We found that the differences in the EMF community between the two sapling groups were mostly attributed to changes in the relative abundance of specific fungal species, with little species turnover. Specifically, Tomentella showed high abundance on pine roots, while Tuber, Russula and Sebacina were more common on the roots of cedars. The physical proximity to a specific host species was correlated with the EMF community composition of young saplings. Specifically, regardless of the sapling’s own identity, the roots of saplings growing next to mature cedars had higher abundance of Tuber species, while Tomentella coerulea (Höhn. & Litsch), Russula densifolia (Secr. ex Gillet) and Tuber nitidum (Vittadini) dominated saplings next to mature pines. Cedar saplings’ shoot structure was correlated with a specific EMF species. Overall, these results suggest that when germinating next to mature trees, the EMF community of saplings could be determined by extrinsic factors such as the small-scale distribution of mature trees in the forest.

Publisher

Oxford University Press (OUP)

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