Do allelopathic compounds in invasive <i>Solidago canadensis</i> s.l. restrain the native European flora?
Ограничивают ли аллелопатические соединения инвазивного Solidago canadensis s.l. коренную европейскую флору?
2008-07-15
SCID: 54.1/2yem8pk8
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LC-MS chemical analysisSolidago canadensisactivated carbonallelopathysoil inoculum
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Abstract (AI)
Summary One mechanism explaining the success of invasive weeds may be the production and release of allelopathic compounds by the invader that, due to a lack of co‐evolutionary history, have harmful effects on plant neighbours in the introduced range. We partially tested this hypothesis by growing seven competing native European plant species either with the introduced Solidago canadensis s.l., one of the most successful invasive plants in Europe or on soil pre‐cultivated with S. canadensis . We added activated carbon to the soil to neutralize organic chemical compounds with putative allelopathic effects. Furthermore, we added unsterilized soil inocula from the introduced (Switzerland) or native (USA) range to the soil to test potential confounding effects of soil microbes on invasion success. Untreated sterilized soil served as control. Five out of the seven native species were more competitive against the invasive species in soils with activated carbon than without, supporting the allelopathy hypothesis. However, competitive outcomes were also influenced by the two sources of soil inoculum and by interactive effects of soil inoculum and Solidago origin suggesting that soil microbes alter allelopathic effects. Achillea millefolium , the species least affected by the presence of S. canadensis and with no response to the activated carbon treatment is the only species used in this experiment reported to grow within Solidago stands in Europe, whereas the other European species tested tend to grow at the periphery of invasive Solidago stands. Chemical analysis by LC‐MS of Solidago root extracts revealed four main secondary chemical compounds with potential allelopathic effects. Root exudates of Solidago showed a significant inhibitory effect on growth of the model plant species Arabidopsis thaliana . The magnitude of inhibition increased with increasing concentration of the extract. Synthesis . Levels of the four compounds were lower in Solidago populations from the invasive range than in populations of the same ploidy level from the native range. This suggests lower investment of invasive plants into these secondary compounds, possibly because of a higher susceptibility of plant competitors in the invasive range to these substances.
Key Findings
1
Achillea millefolium showed no response to activated carbon or to Solidago presence and is the only tested species reported to grow within Solidago stands in Europe.
2
Activated carbon in soil increased competitiveness of five of seven native European species against invasive Solidago canadensis, supporting allelopathy.
3
Competitive outcomes depended on soil microbial inocula source (introduced Switzerland vs native USA) and interacted with Solidago origin, indicating microbes modify allelopathic effects.
4
Concentrations of the four compounds were lower in invasive-range Solidago populations than in native-range populations of the same ploidy, suggesting reduced investment in these chemicals in the invasive range.
5
LC-MS of Solidago root extracts identified four main secondary compounds with potential allelopathic effects, and root exudates inhibited Arabidopsis thaliana growth in a concentration-dependent manner.
Research Object
Invasive Solidago canadensis s.l. (plants, their roots and root exudates, and soils cultivated by them)
Research Subject
Allelopathic compounds produced and released by S. canadensis and their inhibitory effects on competing native European plant species, including modulation by soil microbial inocula and differences between native and invasive populations
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2008-07-15
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