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Continuum Modeling of Discrete Plant Communities: Why Does It Work and Why Is It Advantageous?
Indexado
WoS WOS:000498404700116
Scopus SCOPUS_ID:85084562589
DOI 10.3390/MATH7100987
Año 2019
Tipo artículo de investigación

Citas Totales

Autores Afiliación Chile

Instituciones Chile

% Participación
Internacional

Autores
Afiliación Extranjera

Instituciones
Extranjeras


Abstract



Understanding ecosystem response to drier climates calls for modeling the dynamics of dryland plant populations, which are crucial determinants of ecosystem function, as they constitute the basal level of whole food webs. Two modeling approaches are widely used in population dynamics, individual (agent)-based models and continuum partial-differential-equation (PDE) models. The latter are advantageous in lending themselves to powerful methodologies of mathematical analysis, but the question of whether they are suitable to describe small discrete plant populations, as is often found in dryland ecosystems, has remained largely unaddressed. In this paper, we first draw attention to two aspects of plants that distinguish them from most other organisms-high phenotypic plasticity and dispersal of stress-tolerant seeds-and argue in favor of PDE modeling, where the state variables that describe population sizes are not discrete number densities, but rather continuous biomass densities. We then discuss a few examples that demonstrate the utility of PDE models in providing deep insights into landscape-scale behaviors, such as the onset of pattern forming instabilities, multiplicity of stable ecosystem states, regular and irregular, and the possible roles of front instabilities in reversing desertification. We briefly mention a few additional examples, and conclude by outlining the nature of the information we should and should not expect to gain from PDE model studies.

Revista



Revista ISSN
Mathematics 2227-7390

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Disciplinas de Investigación



WOS
Mathematics
Scopus
Sin Disciplinas
SciELO
Sin Disciplinas

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Publicaciones WoS (Ediciones: ISSHP, ISTP, AHCI, SSCI, SCI), Scopus, SciELO Chile.

Colaboración Institucional



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Autores - Afiliación



Ord. Autor Género Institución - País
1 Meron, Ehud Hombre BEN GURION UNIV NEGEV - Israel
Ben-Gurion University of the Negev - Israel
2 Bennett, Jamie J. R. Mujer BEN GURION UNIV NEGEV - Israel
Ben-Gurion University of the Negev - Israel
3 Fernandez-Oto, C. Hombre Universidad de Los Andes, Chile - Chile
4 Tzuk, Omer Hombre BEN GURION UNIV NEGEV - Israel
Ben-Gurion University of the Negev - Israel
5 Zelnik, Yuval R. Hombre CNRS - Francia
Paul Sabatier Univ - Francia
Université Toulouse III - Paul Sabatier - Francia
Station d’Ecologie Théorique et Expérimentale - Francia
6 Grafi, Gideon Hombre BEN GURION UNIV NEGEV - Israel
Ben-Gurion University of the Negev - Israel

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Financiamiento



Fuente
European Union's Horizon 2020 research and innovation programme
Israel Science Foundation
Horizon 2020 Framework Programme

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Agradecimientos



Agradecimiento
This study was funded by the Israel Science Foundation under grant number 1053/17, and by the European Union's Horizon 2020 research and innovation programme under grant agreement No 641762.
Funding: This study was funded by the Israel Science Foundation under grant number 1053/17, and by the European Union’s Horizon 2020 research and innovation programme under grant agreement No 641762.

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