• Aucun résultat trouvé

An individual-based modeling approach to assess trap cropping management of Helicoverpa zea in tomato field in Martinique. Isabelle Grechi

N/A
N/A
Protected

Academic year: 2021

Partager "An individual-based modeling approach to assess trap cropping management of Helicoverpa zea in tomato field in Martinique. Isabelle Grechi"

Copied!
1
0
0

Texte intégral

(1)

An individual-based modeling approach to assess trap cropping management of Helicoverpa zea in tomato field in Martinique.

Isabelle Grechi1, Philippe Tixier3,Béatrice Rhino2, Eric Malezieux1 and Alain Ratnadass1 1

CIRAD, UPR HortSys, F-34398 Montpellier, France

2

CIRAD, UPR HortSys, F-97285 Le Lamentin, Martinique, France

3

CIRAD, UPR Systèmes bananes et ananas, F-97285 Le Lamentin, Martinique, France Email: isabelle.grechi@cirad.fr

Abstract. Farmers in the tropics are faced with crop protection issues such as adverse impacts of pesticides on human health and on the environment, particularly in intensive agrosystems in French overseas islands, or food insecurity and low income due to pest-induced crop losses, particularly in low-input traditional systems in Sub-Saharan Africa. A Cirad-funded « Omega3 » project tackles these problems by studying the effects of the planned introduction of plant species diversity (PSD) in tropical agrosystems, as a potential alternative to conventional practices based on pesticide use. One of the several study cases the project focused on is the management of the tomato fruit worm Helicoverpa zea in tomato field in the French West Indies (Martinique), relying on stimulant pest diversion PSD-based process. Sweet corn is proposed .as a trap crop to control the populations and damages of H. zea at the tomato field scale. To understand system functioning and improve H. zea management, a spatially-explicit individual-based model is under development. The model includes three interacting modules that describe (i) phenology of tomato and corn plants and dynamic of their attractive stages for H. zea (ii) H. zea development, both using thermal units, and (iii) movement and oviposition behavior of H. zea. The model runs at the field scale over one tomato cropping cycle and is approximated at a daily time-step. More widely, we aim to use this model as a generic tool to improve our understanding of system functioning by assessing general infestation patterns in response to the plant characteristics (e.g., relative attractiveness of the commercial vs. trap crops), the spatio-temporal deployment of commercial and trap crops (i.e., spatio-spatio-temporal planting design of the crops), and the insect behavioural traits (e.g., movement, oviposition,…). The modeling approach is presented and discussed.

Preference form of the contribution: poster Topic:

3. Conception and assessment of innovating sustainable horticultural systems, including organic horticulture

Sub-topic:

Références

Documents relatifs

One of the several study cases the project focused on is the use of sweet corn as a trap crop to control the populations and damages of Helicoverpa zea in tomato field in the

Our simulations show that planting in patches with a large distance between patches should limit the time necessary for the pest to colonise a new field although the severity of

• These mechanisms are related to: (i) multifunctional and traditional ecosystem management, (ii) proactive management of transformed ecosystems, (iii) use of novel

For instance, high-resolution observations or high-resolution models can be used to tune a statistical model for unresolved scales; a model of the atmospheric boundary layer can be

A first specific objective of this study is to identify and describe the main annual cropping systems practiced in the study area. The most representative ones will

Brévault et al.. Survival of susceptible insects on pyramids : each toxin of a two-toxin pyramid should kill at least 95% of susceptible individuals for redundant killing to

The IBM constitutes a research tool to better understand how the system changes; it can be used to define pattern responses of pest infestations to trap cropping systems by studying

In the second level, we have proposed to use the notion of agent to represent both the actors on which the norms apply, and the collective actors associated to each institution