Abstract
Invasive alien plant species negatively impact native plant communities by out-competing species or changing abiotic and biotic conditions in their introduced range. River systems are especially vulnerable to biological invasions, because waterways can function as invasion corridors. Understanding interactions of invasive and native species and their combined effects on river dynamics is essential for developing cost-effective management strategies. However, numerical models for simulating long-term effects of these processes are lacking. This paper investigates how an invasive alien plant species affects native riparian vegetation and hydro-morphodynamics. A morphodynamic model has been coupled to a dynamic vegetation model that predicts establishment, growth and mortality of riparian trees. We introduced an invasive alien species with life-history traits based on Japanese Knotweed (Fallopia japonica), and investigated effects of low- and high propagule pressure on invasion speed, native vegetation and hydro-morphodynamic processes. Results show that high propagule pressure leads to a decline in native species cover due to competition and the creation of unfavorable native colonization sites. With low propagule pressure the invader facilitates native seedling survival by creating favorable hydro-morphodynamic conditions at colonization sites. With high invader abundance, water levels are raised and sediment transport is reduced during the growing season. In winter, when the above-ground invader biomass is gone, results are reversed and the floodplain is more prone to erosion. Invasion effects thus depend on seasonal above- and below ground dynamic vegetation properties and persistence of the invader, on the characteristics of native species it replaces, and the combined interactions with hydro-morphodynamics.
| Original language | English |
|---|---|
| Pages (from-to) | 6945-6969 |
| Number of pages | 25 |
| Journal | Water Resources Research |
| Volume | 53 |
| Issue number | 8 |
| DOIs | |
| Publication status | Published - 1 Aug 2017 |
Funding
We kindly thank Peter Horchler (Bundesanstalt fu€r Gew€asserkunde) for contributing to the setup of the F. japonica modeling, Peter Herman (Deltares) for reviewing the model code, Tom Buijse (Deltares) for reviewing and discussions to improve the manuscript and Barbara Gru€ner for F. japonica data and observations from the Schwechat River. We thank Carlo Camporeale and 4 anonymous reviewers for reviewing previous versions of the manuscript. This work was funded by REFORM (FP7 Grant Agreement 282656). The authors contributed in the following proportions to conception and design, model running, analysis and conclusions, and manuscript preparation: MvO (70%, 100%, 70%, 70%), MGK (10%, 0%, 15%, 10%), GG (5%, 0%, 5%, 5%), GE (10%, 0%, 2.5%, 2.5%), RL (5%, 0%, 2.5%, 2.5%), and HM (0%, 0%, 5%, 10%). Interested readers can request our data by contacting the corresponding author: mijke. [email protected].
Keywords
- biological invasions
- Fallopia japonica
- hydromorphology
- modeling
- riparian vegetation
- river morphodynamics
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