Modeling the interactions among phythopathogens and phyllosphere microorganisms for the biological disease control of Olea europaea L.
From MaRDI portal
Publication:669158
DOI10.1016/J.MBS.2018.12.002zbMath1409.92155OpenAlexW2902904119WikidataQ90351741 ScholiaQ90351741MaRDI QIDQ669158
Paula Baptista, Iulia Martina Bulai, Ezio Venturino, Teresa Gomes
Publication date: 20 March 2019
Published in: Mathematical Biosciences (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.mbs.2018.12.002
Bifurcation theory for ordinary differential equations (34C23) Ecology (92D40) Plant biology (92C80)
Cites Work
- Mathematical modeling of citrus groves infected by Huanglongbing
- Efficient computation of partition of unity interpolants through a block-based searching technique
- Robust approximation algorithms for the detection of attraction basins in dynamical systems
- A field scale model for the spread of fungal diseases in crops: the example of a powdery mildew epidemic over a large vineyard
- Reliable approximation of separatrix manifolds in competition models with safety niches
- Modeling the Endophytic Fungus Epicoccum nigrum Action to Fight the “Olive Knot” Disease Caused by Pseudomonas savastanoi pv. savastanoi (Psv) Bacteria in Olea europaea L. Trees
- Graphical Representation of Separatrices of Attraction Basins in Two and Three-Dimensional Dynamical Systems
This page was built for publication: Modeling the interactions among phythopathogens and phyllosphere microorganisms for the biological disease control of Olea europaea L.