Modelling the climate change adaptation potential of no-tillage maize systems in southern Africa
Material type:
ArticleLanguage: English Publication details: Netherlands : Springer, 2025.ISSN: - 1381-2386
- 1573-1596 (Online)
| Item type | Current library | Collection | Status | |
|---|---|---|---|---|
| Article | CIMMYT Knowledge Center: John Woolston Library | CIMMYT Staff Publications Collection | Available |
Peer review
Open Access
Southern Africa is a hotspot of climate change where smallholder farmers are particularly threatened because they largely depend on rainfed agriculture for their livelihoods. The objective of the study was to assess the potential of two main principles (no-tillage and crop residue retention) of conservation agriculture (CA) and nitrogen (N) fertilizer management to mitigate the negative effects of future climate (2021–2060) on maize (Zea mays L.) productivity using the Agricultural Production Systems Simulator (APSIM). Two tillage practices were considered in the simulations, i.e. the conventional practice of tillage with removal of crop residues (CP) and NT (no-tillage and crop residue mulching), as well as three rates of N input (0, 30, 90 kg ha−1) on mono-cropped continuous maize. Simulations were run for future climate generated by an ensemble of 17 global circulation models (GCMs) using two extreme emission scenarios based on Representative Concentration Pathways (RCP2.6 and RCP8.5) for southern Africa. Results from the simulations suggest that NT management is not more beneficial in the future (2051–2060) than in the current climate, and there is no evidence to support its ability to mitigate the climate change impacts at the study sites, because the effects are principally exerted through increased temperatures. Simulations further show that increased fertilizer N inputs could drastically increase maize productivity, but with increased vulnerability to climate change. Improved crop management practices such a NT need to be combined with improved crop genotypes tolerant to multiple stresses such as drought and heat to maximize resilience under future climatic conditions.
Text in English
Rusinamhodzi, L. : Not in IRS staff list but CIMMYT Affiliation
Berre, D. : Not in IRS staff list but CIMMYT Affiliation
Centre de Coopération Internationale en Recherche Agronomique pour le Développement (CIRAD) CGIAR Research Program on Climate Change, Agriculture and Food Security (CCAFS) CGIAR Research Program on Maize (MAIZE) Federal Ministry for Economic Cooperation and Development (BMZ) German Agency for International Cooperation (GIZ) United States Agency for International Development (USAID) CGIAR Trust Fund Sustainable Intensification in Maize-Legume Systems in Eastern Province of Zambia (SIMLEZA) Africa Research in Sustainable Intensification for the Next Generation (Africa RISING) Climate adaptation & mitigation Diversification in East and Southern Africa Resilient Agrifood Systems