Potential contribution of agronomic practices and conservation agriculture towards narrowing smallholders' yield gaps in Southern Africa: lessons from the field

被引:6
作者
Nyagumbo, Isaiah [1 ]
Nyamayevu, Donald [2 ]
Chipindu, Lovemore [1 ]
Siyeni, Donald [3 ]
Dias, Domingos [4 ]
Silva, Joao Vasco [1 ]
机构
[1] Int Maize & Wheat Improvement Ctr CIMMYT, Box MP 163, Mt Pleasant, Harare, Zimbabwe
[2] Hebei Agr Univ, Coll Agron, 289 Lingyusi St, Baoding, Peoples R China
[3] Makoka Res Stn, Dept Agr Res Serv, Thondwe, Malawi
[4] Inst Invest Agr Mocambique IIAM, Ctr Zonal Ctr, Estacao Agr Sussundenga, Manica, Mozambique
关键词
Maize; plant population; sustainable intensification; crop rotation; crop management; SUB-SAHARAN AFRICA; SUSTAINABLE INTENSIFICATION; ECOLOGICAL INTENSIFICATION; CHANGING CLIMATE; PLANTING DATE; SYSTEMS; FARMERS; CORN; PRODUCTIVITY; ADAPTATION;
D O I
10.1017/S0014479724000012
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Smallholders in Southern Africa continue to grapple with low maize productivity despite this being the staple food crop. This study sought to analyze and isolate the relative contribution of agronomic practices to maize yields obtained by smallholders in Malawi and Mozambique using data generated from on-farm trials testing the performance of conservation agriculture cropping systems. The trials were implemented in two communities, namely Kasungu district in Malawi and Sussundenga district in Mozambique, and ran for seven consecutive growing seasons starting in 2010-2011. Maize yield was measured annually in the on-farm trials, which included a 'control treatment' representing an improved farm practice, and in neighboring fields managed by the same farmers on their own, hence representing a 'true farm practice'. Results indicated that maize yield increased linearly with increasing plant population at harvest at both sites. On average, an increase in plant population at harvest by 1000 plants ha-1 resulted in an increase in maize yield of 90 and 63 kg ha-1 at Kasungu and Sussundenga, respectively. The greatest maize yields were obtained when plant population at harvest exceeded 40 000 plants ha-1. Yet, the plant population at harvest was below the generally recommended optimum for most of the cropping systems studied and in most growing seasons. Furthermore, the use of agronomic practices alone without conservation agriculture (i.e., improved varieties, fertilizer management, and timely weed control) resulted in maize yield gains of as much as 54% and 43% relative to the 'true farm practice' at Kasungu and Sussundenga, respectively. Overall, the proportion of these yield increases relative to the 'true farm practice' accounted for by agronomic practices amounted to 53-70% and 57-85% at Kasungu and Sussundenga for the highest to the lowest-yielding cropping system. Although conservation agriculture significantly improved maize yield at both sites, such increases were smaller in magnitude compared to the yield gains derived from improved agronomic practices. The study suggests that considerable strides toward narrowing maize yield gaps in Southern Africa can be achieved through improvement of current crop management practices, let alone adhering to the conservation agriculture principles of minimum tillage, residue retention, and crop diversification.
引用
收藏
页数:20
相关论文
共 67 条
[1]   Phenotypic Stability of Zea mays Grain Yield and Its Attributing Traits under Drought Stress [J].
Ali, Fawad ;
Ahsan, Muhammad ;
Ali, Qurban ;
Kanwal, Naila .
FRONTIERS IN PLANT SCIENCE, 2017, 8
[2]   Methodology of Analyzing Maize Density Loss in Smallholder's Fields and Potential Optimize Approach [J].
An, Zhichao ;
Wang, Chong ;
Jiao, Xiaoqiang ;
Kong, Zhongliang ;
Jiang, Wei ;
Zhang, Dong ;
Ma, Wenqi ;
Zhang, Fusuo .
AGRICULTURE-BASEL, 2021, 11 (06)
[3]  
[Anonymous], 2014, Renewable Agriculture and Food Systems
[4]   Adoption and intensity of adoption of conservation farming practices in Zambia [J].
Arslan, Aslihan ;
McCarthy, Nancy ;
Lipper, Leslie ;
Asfaw, Solomon ;
Cattaneo, Andrea .
AGRICULTURE ECOSYSTEMS & ENVIRONMENT, 2014, 187 :72-86
[5]   Unravelling the variability and causes of smallholder maize yield gaps in Ethiopia [J].
Assefa, Banchayehu Tessema ;
Chamberlin, Jordan ;
Reidsma, Pytrik ;
Silva, Joao Vasco ;
van Ittersum, Martin K. .
FOOD SECURITY, 2020, 12 (01) :83-103
[6]   Yield Responses to Planting Density for US Modern Corn Hybrids: A Synthesis-Analysis [J].
Assefa, Yared ;
Prasad, P. V. Vara ;
Carter, Paul ;
Hinds, Mark ;
Bhalla, Gaurav ;
Schon, Ryan ;
Jeschke, Mark ;
Paszkiewicz, Steve ;
Ciampitti, Ignacio A. .
CROP SCIENCE, 2016, 56 (05) :2802-2817
[7]   Where to Target Conservation Agriculture for African Smallholders? How to Overcome Challenges Associated with its Implementation? Experience from Eastern and Southern Africa [J].
Baudron, Frederic ;
Thierfelder, Christian ;
Nyagumbo, Isaiah ;
Gerard, Bruno .
ENVIRONMENTS, 2015, 2 (03) :338-357
[8]   Review of yield gap explaining factors and opportunities for alternative data collection approaches [J].
Beza, Eskender ;
Silva, Joao Vasco ;
Kooistra, Lammert ;
Reidsma, Pytrik .
EUROPEAN JOURNAL OF AGRONOMY, 2017, 82 :206-222
[9]   MAIZE PRODUCTION IN A CHANGING CLIMATE: IMPACTS, ADAPTATION, AND MITIGATION STRATEGIES [J].
Cairns, J. E. ;
Sonder, K. ;
Zaidi, P. H. ;
Verhulst, N. ;
Mahuku, G. ;
Babu, R. ;
Nair, S. K. ;
Das, B. ;
Govaerts, B. ;
Vinayan, M. T. ;
Rashid, Z. ;
Noor, J. J. ;
Devi, P. ;
San Vicente, F. ;
Prasanna, B. M. .
ADVANCES IN AGRONOMY, VOL 114, 2012, 114 :1-58
[10]   Subsidies and the African Green Revolution: Direct Effects and Social Network Spillovers of Randomized Input Subsidies in Mozambique [J].
Carter, Michael ;
Laajaj, Rachid ;
Yang, Dean .
AMERICAN ECONOMIC JOURNAL-APPLIED ECONOMICS, 2021, 13 (02) :206-229