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Estuarine, coastal and shelf science, 2021-10, Vol.261, p.107530, Article 107530
2021

Details

Autor(en) / Beteiligte
Titel
Importance of elongation and organogenesis on the rhizome length of Zostera marina in an individual-based simulation model
Ist Teil von
  • Estuarine, coastal and shelf science, 2021-10, Vol.261, p.107530, Article 107530
Ort / Verlag
Elsevier Ltd
Erscheinungsjahr
2021
Link zum Volltext
Quelle
Alma/SFX Local Collection
Beschreibungen/Notizen
  • The aim of this study was to assess the relative importance of phytomer organogenesis, mortality, and elongation rates on the rhizome length of Eelgrass (Zostera marina). Rhizome length has both a discrete and a continuous component, which are the number of internodes and their lengths, respectively. We hypothesize that rhizome length would be more correlated with elongation rates than either phytomer organogenesis or mortality. An individual-based model was used to simulate the growth of Z. marina individuals in the Punta Banda estuary in Baja California, a low-latitude Eelgrass population. Individuals of the model were composed of a rhizome and lateral branches, both of which were composed of phytomers. The individuals changed by presenting horizontal growth, clonal reproduction, aging, and age-related mortality. Some growth rates were modeled with respect to environmental conditions. The model was validated by comparing the rhizome length of simulated and observed plants. A sensitivity analysis suggested that simulated rhizome length is most correlated to elongation rates, which are mainly affected by water temperature and irradiance. [Display omitted] •We model eelgrass rhizomes as composed of phytomers, each with an internode length.•Phytomer length was related to water temperature, light, and desiccation.•Organogenesis was not related to environmental conditions.•The length of simulated rhizomes is most affected by phytomer elongation rates.
Sprache
Englisch
Identifikatoren
ISSN: 0272-7714
eISSN: 1096-0015
DOI: 10.1016/j.ecss.2021.107530
Titel-ID: cdi_crossref_primary_10_1016_j_ecss_2021_107530

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