The R Package PROSPER: An Environment for Modeling Weed Population Dynamics and the Evolution of Herbicide Resistance

Weed management is a challenge for farmers worldwide, and the problem is exacerbated by the spread of weed herbicide resistance. Simulation models that combine population dynamics and genetics are valuable tools for predicting the impact of competing management options on weed density, allele freque...

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Main Authors: Christoph von Redwitz, Friederike de Mol
Format: Article
Language:English
Published: MDPI AG 2020-07-01
Series:Agronomy
Subjects:
Online Access:https://www.mdpi.com/2073-4395/10/7/958
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spelling doaj-059857e7f06641689cba87218553bb212021-04-02T17:17:47ZengMDPI AGAgronomy2073-43952020-07-011095895810.3390/agronomy10070958The R Package PROSPER: An Environment for Modeling Weed Population Dynamics and the Evolution of Herbicide ResistanceChristoph von Redwitz0Friederike de Mol1Faculty of Agricultural and Environmental Sciences, Crop Health, University of Rostock, Satower Strasse 48, D-18051 Rostock, GermanyFaculty of Agricultural and Environmental Sciences, Crop Health, University of Rostock, Satower Strasse 48, D-18051 Rostock, GermanyWeed management is a challenge for farmers worldwide, and the problem is exacerbated by the spread of weed herbicide resistance. Simulation models that combine population dynamics and genetics are valuable tools for predicting the impact of competing management options on weed density, allele frequency, and phenotypic resistance levels. The new R package PROSPER provides functions for the forward simulation of weed population dynamics on a field scale, the selection of individuals according to their sensitivity to herbicides, and the recombination of alleles during reproduction. Objects are provided to enter and save model parameters in a clear structure, and to save output data for further processing in R. The basic functions are extensible with R code. PROSPER combines individual-based population dynamics with monogenic or polygenic diploid inheritance and flexible selection pressure. Stochasticity can be included at all model steps. Two examples of the population dynamics of two annual weed species with herbicide resistance are presented. All parameters and the models are available in PROSPER. In addition to simulation, PROSPER is intended for sharing and publishing population dynamic parameters and models, which is easily done thanks to R.https://www.mdpi.com/2073-4395/10/7/958individual basedmetabolicpolygenicsimulationweed management
collection DOAJ
language English
format Article
sources DOAJ
author Christoph von Redwitz
Friederike de Mol
spellingShingle Christoph von Redwitz
Friederike de Mol
The R Package PROSPER: An Environment for Modeling Weed Population Dynamics and the Evolution of Herbicide Resistance
Agronomy
individual based
metabolic
polygenic
simulation
weed management
author_facet Christoph von Redwitz
Friederike de Mol
author_sort Christoph von Redwitz
title The R Package PROSPER: An Environment for Modeling Weed Population Dynamics and the Evolution of Herbicide Resistance
title_short The R Package PROSPER: An Environment for Modeling Weed Population Dynamics and the Evolution of Herbicide Resistance
title_full The R Package PROSPER: An Environment for Modeling Weed Population Dynamics and the Evolution of Herbicide Resistance
title_fullStr The R Package PROSPER: An Environment for Modeling Weed Population Dynamics and the Evolution of Herbicide Resistance
title_full_unstemmed The R Package PROSPER: An Environment for Modeling Weed Population Dynamics and the Evolution of Herbicide Resistance
title_sort r package prosper: an environment for modeling weed population dynamics and the evolution of herbicide resistance
publisher MDPI AG
series Agronomy
issn 2073-4395
publishDate 2020-07-01
description Weed management is a challenge for farmers worldwide, and the problem is exacerbated by the spread of weed herbicide resistance. Simulation models that combine population dynamics and genetics are valuable tools for predicting the impact of competing management options on weed density, allele frequency, and phenotypic resistance levels. The new R package PROSPER provides functions for the forward simulation of weed population dynamics on a field scale, the selection of individuals according to their sensitivity to herbicides, and the recombination of alleles during reproduction. Objects are provided to enter and save model parameters in a clear structure, and to save output data for further processing in R. The basic functions are extensible with R code. PROSPER combines individual-based population dynamics with monogenic or polygenic diploid inheritance and flexible selection pressure. Stochasticity can be included at all model steps. Two examples of the population dynamics of two annual weed species with herbicide resistance are presented. All parameters and the models are available in PROSPER. In addition to simulation, PROSPER is intended for sharing and publishing population dynamic parameters and models, which is easily done thanks to R.
topic individual based
metabolic
polygenic
simulation
weed management
url https://www.mdpi.com/2073-4395/10/7/958
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