Julie Constantin

ORCID: 0000-0001-9647-5374
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About
Contact & Profiles
Research Areas
  • Climate change impacts on agriculture
  • Soil Carbon and Nitrogen Dynamics
  • Crop Yield and Soil Fertility
  • Agriculture and Rural Development Research
  • Plant Water Relations and Carbon Dynamics
  • Soybean genetics and cultivation
  • Plant nutrient uptake and metabolism
  • Rice Cultivation and Yield Improvement
  • Greenhouse Technology and Climate Control
  • Hydrology and Watershed Management Studies
  • Irrigation Practices and Water Management
  • Soil and Water Nutrient Dynamics
  • Agricultural Economics and Policy
  • French Urban and Social Studies
  • Bioenergy crop production and management
  • Sustainable Agricultural Systems Analysis
  • Plant responses to elevated CO2
  • Soil Geostatistics and Mapping
  • Agriculture Sustainability and Environmental Impact
  • Soil and Unsaturated Flow
  • Research in Cotton Cultivation
  • Legume Nitrogen Fixing Symbiosis
  • Plant Ecology and Soil Science
  • Childhood Cancer Survivors' Quality of Life
  • Agricultural Innovations and Practices

AGroecologies, Innovations & Ruralities
2016-2025

Université de Toulouse
2018-2024

Institut National de Recherche pour l'Agriculture, l'Alimentation et l'Environnement
2016-2024

Écologie Fonctionnelle et Écotoxicologie des Agroécosystèmes
2023

Hospital for Sick Children
2007-2023

Territoires
2014-2023

Institut National Polytechnique de Toulouse
2015-2020

Mathématiques et Informatique Appliquées
2016-2019

Département Mathématiques et Informatique Appliquées
2016-2019

Laboratoire de Mathématiques d'Orsay
2019

We show the error in water-limited yields simulated by crop models which is associated with spatially aggregated soil and climate input data. Crop simulations at large scales (regional, national, continental) frequently use data of low resolution. Therefore, are often generated via averaging sampling area majority. This may bias scales, varying largely across models. Thus, we evaluated for 14 Yields winter wheat silage maize were under production conditions. calculated this from spatial...

10.1371/journal.pone.0151782 article EN cc-by PLoS ONE 2016-04-07

The European Union is highly dependent on soybean imports from overseas to meet its protein demands. Individual Member States have been quick declare self-sufficiency targets for plant-based proteins, but detailed strategies are still lacking. Rising global temperatures painted an image of a bright future production in Europe, emerging climatic risks such as drought so far not included any those outlooks. Here, we present simulations and the most prominent risk factors across Europe using...

10.1111/gcb.16562 article EN cc-by-nc Global Change Biology 2022-12-16

Abstract Many studies have assessed the potential of agricultural practices to sequester carbon (C). A comprehensive evaluation impacts requires not only considering C storage but also direct and indirect emissions greenhouse gases (GHG) their side effects (e.g., on water cycle or production). We used a high‐resolution modeling approach with Simulateur mulTIdisciplinaire pour les Cultures Standard soil‐crop model quantify soil organic (SOC) potential, GHG balance, biomass production...

10.1111/gcb.15512 article EN Global Change Biology 2021-01-15

An accurate estimation of crop yield under climate change scenarios is essential to quantify our ability feed a growing population and develop agronomic adaptations meet future food demand. A coordinated evaluation simulations from process-based eco-physiological models for impact assessment still missing soybean, the most widely grown grain legume main source protein in chain. In this first soybean multi-model study, we used ten prominent capable simulating varying temperature atmospheric...

10.1016/j.eja.2022.126482 article EN cc-by European Journal of Agronomy 2022-02-24

Cover crops provide ecosystem services such as storing atmospheric carbon in soils after incorporation of their residues. also influence soil water balance, which can be an issue temperate climates with dry summers for example southern France and Europe. As a consequence, it is necessary to understand cover crops' long-term on greenhouse gases (GHG) balances assess potential mitigate climate change arable cropping systems. We used the previously calibrated validated soil-crop model STICS...

10.1111/gcb.14091 article EN Global Change Biology 2018-02-14

CR Climate Research Contact the journal Facebook Twitter RSS Mailing List Subscribe to our mailing list via Mailchimp HomeLatest VolumeAbout JournalEditorsSpecials 65:53-69 (2015) - DOI: https://doi.org/10.3354/cr01326 Contribution Special: 'Modelling climate change impacts for food security' Variability of effects spatial data aggregation on regional yield simulation by crop models H. Hoffmann1,*, G. Zhao1; L. J. van Bussel1,2, A. Enders1, X. Specka3, C. Sosa4, Yeluripati5, 16, F. Tao6,...

10.3354/cr01326 article EN Climate Research 2015-07-09
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