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Biological Contribution of Ornamental Plants for Improving Slope Stability along Urban and Suburban Areas

Journal

HORTICULTURAE
Volume 7, Issue 9, Pages -

Publisher

MDPI
DOI: 10.3390/horticulturae7090310

Keywords

root development; root morphology; abiotic stress; growth regulators; biostimulants; plant choice

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Plants play a significant role in reducing erosion and improving slope stability through their root morphology, development, biomass, and architecture. Ornamental species can be selected in urban and peri-urban environments to enhance the aesthetic value of green areas along roads and mitigate erosion effects, but they must have good tolerance to abiotic stresses for optimal growth. Root growth parameters are important markers for selecting suitable plants to enhance slope stability.
Plants can reduce erosion during heavy raining periods and improve slope stability through their root morphology, development, biomass, and architecture. Heavy rains can increase erosion, becoming a danger for traffic and people who live around slopes. The control of slope stability is often required in urban and peri-urban environments, and for this reason ornamental species can be appropriately selected for a dual use, namely improving the aesthetical value of green areas along the urban and suburban roads and mitigating the erosion effects. The species used must have good tolerance to abiotic stresses, such as high and low temperature, drought, pollution and nutrient deficiency. Otherwise, their limited growth can reduce their beneficial effects. Ornamental plants that can be used for reducing the erosion of slopes must be in full growth during periods with a higher incidence of rains and must also be compatible with the temperature ranges in different seasons. These species can be also selected for their ability to avoid erosion and enhance the stability of slopes. In this review, the biological contribution of plants for improving slope stability has been reported and discussed with a special focus attention on the Mediterranean environment. Particular emphasis has been placed on root biomass changes and root growth parameters, considering their role as potential markers for selecting suitable plants to be used for enhancing slope stability. A brief description of planting on slopes and root growth has been also considered and discussed.

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