Published

Algal-Induced Biogeomorphic Feedbacks Lay the Groundwork for Coastal Wetland Development Version 29

Roeland C. van de Vijsel (Royal Netherlands Institute for Sea Research) Royal Netherlands Institute for Sea Research https://doi.org/10.25850/nioz/7b.b.ub

Ecosystem establishment under adverse geophysical conditions is often studied within the "windows of opportunity" framework, identifying disturbance-free periods (e.g., calm wave climate) where species can overcome establishment thresholds. However, the role of biogeophysical interactions in this framework is less well understood. The establishment of saltmarsh vegetation on tidal flats, for example, is limited by abiotic factors such as hydrodynamics, sediment stability and drainage. On tidal flats, raised sediment ridges colonized by algal mats (Vaucheria sp.) appear to accomodate high densities of plant seedlings. Such ridges were previously found to have higher sediment strength than substratum without algae. Here, we investigate whether these measurements can be explained by geophysical factors only, or that biological (Vaucheria-induced) processes influence tidal marsh establishment by forming stabilized bedforms. We performed two experiments under controlled mesocosm conditions, to test the hypotheses that i) Vaucheria grows better on elevated topographic relief, that ii) the binding force of their algal filaments increases sediment strength, and that iii) Vaucheria consequently creates elevated topographic relief that further facilitates algal growth. Our experimental results confirm the existence of this algal-induced biogeomorphic feedback cycle. These findings imply that benthic algae like Vaucheria may contribute significantly to tidal marsh formation by creating elevated and stabilized substratum. This suggests biogeophysical feedbacks can "widen" the windows of opportunity for further ecosystem establishment. Our results could be useful for the design of managed realignment projects aimed at restoring the unique ecosystem services of coastal wetlands, such as habitat biodiversity, carbon sequestration potential and nature-based flood defense.

Data and Resources

Additional Info

Field Value
Subject Earth and Environmental Sciences
DAS Code 7b.b.ub
Source https://doi.org/10.25850/nioz/7b.b.ub
Version 29
Creator(s)
van de Vijsel, Roeland C. (Royal Netherlands Institute for Sea Research)
ORCID
Contact the corresponding author

van Belzen, Jim (Royal Netherlands Institute for Sea Research)
ORCID

Bouma, Tjeerd J. (Royal Netherlands Institute for Sea Research)
ORCID

van der Wal, Daphne (Royal Netherlands Institute for Sea Research)
ORCID

van de Koppel, Johan (Royal Netherlands Institute for Sea Research)
ORCID
Depositor Roeland van de Vijsel (roeland.van.de.vijsel@nioz.nl)
Publication Date 2021-10-11T11:31:13
Deposit Date 2021-03-23
Dataset Persistent Identifier DOI:10.25850/nioz/7b.b.ub
Alternate identifier
Related identifier https://doi.org/10.1029/2021JG006515
Contributor Royal Netherlands Institute for Sea Research (NIOZ)
Distributor Research Data Management(NIOZ Royal Netherlands Institute for Sea Research)
Distribution Date 2021-03-23
Production Date 2021-10-11
Dates
Collected
2021-04-24 until 2021-04-23
The entire dataset used to make all figures and do all calculations in the manuscript "van de vijsel et al. (submitted). algal-induced biogeomorphic feedbacks lay the groundwork for coastal wetland development". final complete, finetuned version (24/04/2021).

Updated
2021-09-29 until 2021-09-28
Added "figures_jgr_revision1_20210929.zip" and "figures_jgr_revision1_readme.txt_20210929.zip".

Updated
2021-10-11 until 2021-10-10
Made dataset publicly available after manuscript was accepted for publication in jgr biogeosciences.

Updated
2021-10-14 until 2021-10-13
Added the doi of the article published in jgr biogeosciences.
Funding References
Netherlands Organisation for Scientific Research (NWO) (869.15.003)
The New Delta

Vlaams-Nederlandse Scheldecommissie (VNSC) (3109 1805)
Vegetation modelling HPP
Geographic Coverage