Author
Listed:
- Naren Keita
(Université Laval, Département de Phytologie, Faculté des Sciences de l’Agriculture et de l’Alimentation
McGill University, Quebec Centre for Biodiversity Science, Department of Biology)
- Bérenger Bourgeois
(Université Laval, Département de Phytologie, Faculté des Sciences de l’Agriculture et de l’Alimentation
McGill University, Quebec Centre for Biodiversity Science, Department of Biology)
- André Evette
(Univ. Grenoble Alpes, INRAE, UR LESSEM)
- Maxime Tisserant
(Université Laval, Département de Phytologie, Faculté des Sciences de l’Agriculture et de l’Alimentation
McGill University, Quebec Centre for Biodiversity Science, Department of Biology)
- Eduardo González
(Colorado State University, Department of Biology)
- Vincent Breton
(Univ. Grenoble Alpes, INRAE, UR LESSEM)
- Charles Goulet
(Université Laval, Département de Phytologie, Faculté des Sciences de l’Agriculture et de l’Alimentation)
- Monique Poulin
(Université Laval, Département de Phytologie, Faculté des Sciences de l’Agriculture et de l’Alimentation
McGill University, Quebec Centre for Biodiversity Science, Department of Biology)
Abstract
Willows are used as cuttings or in fascines for riverbank soil bioengineering, to control erosion with their high resprouting ability and rapid growth. However, water availability is highly variable along riverbanks both in time and space and constitutes a major stress limiting willow establishment. A species-specific understanding of willow cutting response to water stress is critical to design successful riverbank soil bioengineering projects given exclusive use of local species is often recommended. In a three-month greenhouse experiment, we investigated the effects of three soil moisture treatments (drought—soil saturation—intermittent flooding) on survival, biomass production and root growth of cuttings of three willow species used for soil bioengineering along NE American streams (Salix discolor—S. eriocephala—S. interior). Cutting survival was high for all species and treatments (>89%). Biomass production and root volume only differed between species. S. eriocephala produced the highest biomass and root volume, and S. discolor invested more in belowground than aboveground biomass. Root length responded to soil moisture differently between species. Under intermittent flooding, S. eriocephala produced shorter roots, while S. interior produced longer roots. For riverbank soil bioengineering, S. eriocephala should be favored at medium elevation and S. interior at lower elevation.
Suggested Citation
Naren Keita & Bérenger Bourgeois & André Evette & Maxime Tisserant & Eduardo González & Vincent Breton & Charles Goulet & Monique Poulin, 2021.
"Growth Response of Cuttings to Drought and Intermittent Flooding for Three Salix Species and Implications for Riverbank Soil Bioengineering,"
Environmental Management, Springer, vol. 67(6), pages 1137-1144, June.
Handle:
RePEc:spr:envman:v:67:y:2021:i:6:d:10.1007_s00267-021-01444-3
DOI: 10.1007/s00267-021-01444-3
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