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Climate warming can reduce biocontrol efficacy and promote plant invasion due to both genetic and transient metabolomic changes

Authors :
Sun, Yan
Züst, Tobias
Silvestro, Daniele
Erb, Matthias
Bossdorf, Oliver
Mateo, Pierre
Robert, Christelle
Müller-Schärer, Heinz
University of Zurich
Sun, Yan
Source :
Sun, Yan; Züst, Tobias; Silvestro, Daniele; Erb, Matthias; Bossdorf, Oliver; Mateo, Pierre; Robert, Christelle; Müller-Schärer, Heinz (2022). Climate warming can reduce biocontrol efficacy and promote plant invasion due to both genetic and transient metabolomic changes. Ecology Letters, 25(6), pp. 1387-1400. Wiley-Blackwell Publishing 10.1111/ele.14000
Publication Year :
2022
Publisher :
Wiley, 2022.

Abstract

Climate change may affect plant-herbivore interactions and their associated ecosystem functions. In an experimental evolution approach, we subjected replicated populations of the invasive Ambrosia artemisiifolia to a combination of simulated warming and herbivory by a potential biocontrol beetle. We tracked genomic and metabolomic changes across generations in field populations and assessed plant offspring phenotypes in a common environment. Using an integrated Bayesian model, we show that increased offspring biomass in response to warming arose through changes in the genetic composition of populations. In contrast, increased resistance to herbivory arose through a shift in plant metabolomic profiles without genetic changes, most likely by transgenerational induction of defences. Importantly, while increased resistance was costly at ambient temperatures, warming removed this constraint and favoured both vigorous and better defended plants under biocontrol. Climate warming may thus decrease biocontrol efficiency and promote Ambrosia invasion, with potentially serious economic and health consequences.

Details

ISSN :
14610248 and 1461023X
Volume :
25
Database :
OpenAIRE
Journal :
Ecology Letters
Accession number :
edsair.doi.dedup.....73ba8b35907f2d202cd540348b5f8be9
Full Text :
https://doi.org/10.1111/ele.14000