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Comparative foliar metabolomics of a tropical and a temperate forest community.

Authors :
Sedio BE
Parker JD
McMahon SM
Wright SJ
Source :
Ecology [Ecology] 2018 Dec; Vol. 99 (12), pp. 2647-2653. Date of Electronic Publication: 2018 Nov 12.
Publication Year :
2018

Abstract

Plant enemies that attack chemically similar host species are thought to mediate competitive exclusion of chemically similar plants and select for chemical divergence among closely related species. This hypothesis predicts that plant defenses should diverge rapidly, minimizing phylogenetic signal. To evaluate this prediction, we quantified metabolomic similarity for 203 tree species that represent >89% of all individuals in large forest plots in Maryland and Panama. We constructed molecular networks based on mass spectrometry of all 203 species, quantified metabolomic similarity for all pairwise combinations of species, and used phylogenetically independent contrasts to evaluate how pairwise metabolomic similarity varies phylogenetically. Leaf metabolomes exhibited clear phylogenetic signal for the temperate plot, which is inconsistent with the prediction. In contrast, leaf metabolomes lacked phylogenetic signal for the tropical plot, with particularly low metabolomic similarity among congeners. In addition, community-wide variation in metabolomes was much greater for the tropical community, with single tropical genera supporting greater metabolomic variation than the entire temperate community. Our results are consistent with the hypothesis that stronger plant-enemy interactions lead to more rapid divergence and greater metabolomic variation in tropical than temperate plants. Additional community-level foliar metabolomes will be required from tropical and temperate forests to evaluate this hypothesis.<br /> (© 2018 by the Ecological Society of America.)

Details

Language :
English
ISSN :
0012-9658
Volume :
99
Issue :
12
Database :
MEDLINE
Journal :
Ecology
Publication Type :
Academic Journal
Accession number :
30418676
Full Text :
https://doi.org/10.1002/ecy.2533