6533b81ffe1ef96bd12773ea

RESEARCH PRODUCT

Invasion triple trouble : environmental fluctuations, fluctuation-adapted invaders and fluctuation-mal-adapted communities all govern invasion success

Kati SaarinenTarmo KetolaLeena Lindström

subject

0106 biological sciencesSerratiaEvolutionEcology (disciplines)Climate changeEnvironmentBiology010603 evolutionary biology01 natural sciences03 medical and health sciencesQH359-425vieraslajitAlien species030304 developmental biology0303 health sciencesResistance (ecology)EcologyfluctuationtulokaslajitBiota15. Life on landilmastonmuutoksetinvasionAdaptation Physiologicalclimate changeevoluutioekologia13. Climate actionAdaptationIntroduced SpeciesResearch Article

description

AbstractIt has been suggested that climate change will lead to increased environmental fluctuations, which will undoubtedly have evolutionary consequences for all biota. For instance, fluctuations can directly increase the risk of invasions of alien species into new areas, as these species have repeatedly been proposed to benefit from disturbances. At the same time increased environmental fluctuations may also select for better invaders. However, selection by fluctuations may also influence the resistance of communities to invasions, which has rarely been tested. We tested eco-evolutionary dynamics of invasion with bacterial clones, evolved either in constant or fluctuating temperatures, and conducted experimental invasions in both conditions. We found clear evidence that ecological fluctuations, as well as adaptation to fluctuations by both the invader and community, all affected invasions, but played different roles at different stages of invasion. Ecological fluctuations clearly promoted invasions, especially into fluctuation mal-adapted communities. The evolutionary background of the invader clearly played a smaller role, and only at the later stages of invasion in the fluctuating environments. Our results indicate that climate change associated disturbances can directly increase the risk of invasions by altering ecological conditions during invasions, as well as via the evolution of both the invader and communities. Our experiment provides novel information on the complex consequences of climate change on invasions in general, and also charts risk factors associated with the spread of environmentally growing opportunistic pathogens.Data AccessibilityUpon acceptance the data will be made publicly available.Statement of authorshipAuthors planned the questions and experiment together. KS conducted the laboratory work and wrote the first draft of the manuscript. TK conducted statistical analyses. All authors wrote the final version of the manuscript.

http://urn.fi/URN:NBN:fi:jyu-201902061445