Limited seed retention during winter inhibits vegetation establishment in spring, affecting lateral marsh expansion capacity

Abstract Coastal systems worldwide deliver vital ecosystem services, such as biodiversity, carbon sequestration, and coastal protection. Effectivity of these ecosystem services increases when vegetation is present. Understanding the mechanisms behind vegetation establishment in bio‐geomorphic system...

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Main Authors: Marin vanRegteren, Irene Colosimo, Pepijn deVries, Marinka Elisabeth Barbara vanPuijenbroek, Victor Sebastiaan Freij, Martin Josephus Baptist, Kelly Elschot
Format: Article
Language:English
Published: Wiley 2019-12-01
Series:Ecology and Evolution
Subjects:
Online Access:https://doi.org/10.1002/ece3.5781
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spelling doaj-69c063c9a2f2476da56e354de48a1bcf2021-03-02T10:28:28ZengWileyEcology and Evolution2045-77582019-12-01923132941330810.1002/ece3.5781Limited seed retention during winter inhibits vegetation establishment in spring, affecting lateral marsh expansion capacityMarin vanRegteren0Irene Colosimo1Pepijn deVries2Marinka Elisabeth Barbara vanPuijenbroek3Victor Sebastiaan Freij4Martin Josephus Baptist5Kelly Elschot6Wageningen Marine Research Wageningen University and Research Den Helder The NetherlandsFaculty of Civil Engineering and Geosciences Delft University of Technology Delft The NetherlandsWageningen Marine Research Wageningen University and Research Den Helder The NetherlandsWageningen Marine Research Wageningen University and Research Den Helder The NetherlandsWageningen Marine Research Wageningen University and Research Den Helder The NetherlandsWageningen Marine Research Wageningen University and Research Den Helder The NetherlandsWageningen Marine Research Wageningen University and Research Den Helder The NetherlandsAbstract Coastal systems worldwide deliver vital ecosystem services, such as biodiversity, carbon sequestration, and coastal protection. Effectivity of these ecosystem services increases when vegetation is present. Understanding the mechanisms behind vegetation establishment in bio‐geomorphic systems is necessary to understand their ability to recover after erosive events and potential adaptations to climate change. In this study, we examined how seed availability affects vegetation establishment in the salt marsh–intertidal flat transition zone: the area with capacity for lateral marsh expansion. This requires vegetation establishment; therefore, seed availability is essential. In a 6‐month field experiment, we simulated a before and after winter seed dispersal at two locations, the salt‐marsh vegetation edge and the intertidal flat, and studied seed retention, the seed bank, and the seed viability of three pioneer marsh species: Salicornia procumbens, Aster tripolium, and Spartina anglica. During winter storm conditions, all supplied seeds eroded away with the sediment surface layer. After winter, supplied seeds from all three species were retained, mostly at the surface while 9% was bioturbated downwards. In the natural seed bank, A. tripolium and S. anglica were practically absent while S. procumbens occurred more frequently. The viability of S. procumbens seeds was highest at the surface, between 80% and 90%. The viability quickly decreased with depth, although viable S. procumbens seeds occurred up to 15 cm depth. Only when seeds were supplied after winter, many S. procumbens and some S. anglica individuals did establish successfully in the transition zone. Viable seed availability formed a vegetation establishment threshold, even with a local seed source. Our results suggest that, although boundary conditions such as elevation, inundation, and weather conditions were appropriate for vegetation establishment in spring, the soil surface in winter can be so dynamic that it limits lateral marsh expansion. These insights can be used for designing effective nature‐based coastal protection.https://doi.org/10.1002/ece3.5781Aster tripoliumlateral expansionSalicornia spp.salt marshsediment dynamicsseed bank
collection DOAJ
language English
format Article
sources DOAJ
author Marin vanRegteren
Irene Colosimo
Pepijn deVries
Marinka Elisabeth Barbara vanPuijenbroek
Victor Sebastiaan Freij
Martin Josephus Baptist
Kelly Elschot
spellingShingle Marin vanRegteren
Irene Colosimo
Pepijn deVries
Marinka Elisabeth Barbara vanPuijenbroek
Victor Sebastiaan Freij
Martin Josephus Baptist
Kelly Elschot
Limited seed retention during winter inhibits vegetation establishment in spring, affecting lateral marsh expansion capacity
Ecology and Evolution
Aster tripolium
lateral expansion
Salicornia spp.
salt marsh
sediment dynamics
seed bank
author_facet Marin vanRegteren
Irene Colosimo
Pepijn deVries
Marinka Elisabeth Barbara vanPuijenbroek
Victor Sebastiaan Freij
Martin Josephus Baptist
Kelly Elschot
author_sort Marin vanRegteren
title Limited seed retention during winter inhibits vegetation establishment in spring, affecting lateral marsh expansion capacity
title_short Limited seed retention during winter inhibits vegetation establishment in spring, affecting lateral marsh expansion capacity
title_full Limited seed retention during winter inhibits vegetation establishment in spring, affecting lateral marsh expansion capacity
title_fullStr Limited seed retention during winter inhibits vegetation establishment in spring, affecting lateral marsh expansion capacity
title_full_unstemmed Limited seed retention during winter inhibits vegetation establishment in spring, affecting lateral marsh expansion capacity
title_sort limited seed retention during winter inhibits vegetation establishment in spring, affecting lateral marsh expansion capacity
publisher Wiley
series Ecology and Evolution
issn 2045-7758
publishDate 2019-12-01
description Abstract Coastal systems worldwide deliver vital ecosystem services, such as biodiversity, carbon sequestration, and coastal protection. Effectivity of these ecosystem services increases when vegetation is present. Understanding the mechanisms behind vegetation establishment in bio‐geomorphic systems is necessary to understand their ability to recover after erosive events and potential adaptations to climate change. In this study, we examined how seed availability affects vegetation establishment in the salt marsh–intertidal flat transition zone: the area with capacity for lateral marsh expansion. This requires vegetation establishment; therefore, seed availability is essential. In a 6‐month field experiment, we simulated a before and after winter seed dispersal at two locations, the salt‐marsh vegetation edge and the intertidal flat, and studied seed retention, the seed bank, and the seed viability of three pioneer marsh species: Salicornia procumbens, Aster tripolium, and Spartina anglica. During winter storm conditions, all supplied seeds eroded away with the sediment surface layer. After winter, supplied seeds from all three species were retained, mostly at the surface while 9% was bioturbated downwards. In the natural seed bank, A. tripolium and S. anglica were practically absent while S. procumbens occurred more frequently. The viability of S. procumbens seeds was highest at the surface, between 80% and 90%. The viability quickly decreased with depth, although viable S. procumbens seeds occurred up to 15 cm depth. Only when seeds were supplied after winter, many S. procumbens and some S. anglica individuals did establish successfully in the transition zone. Viable seed availability formed a vegetation establishment threshold, even with a local seed source. Our results suggest that, although boundary conditions such as elevation, inundation, and weather conditions were appropriate for vegetation establishment in spring, the soil surface in winter can be so dynamic that it limits lateral marsh expansion. These insights can be used for designing effective nature‐based coastal protection.
topic Aster tripolium
lateral expansion
Salicornia spp.
salt marsh
sediment dynamics
seed bank
url https://doi.org/10.1002/ece3.5781
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