Author:
Jaimes-Suárez Yeirme Y.,Carvajal-Rivera Albert S.,Galvis-Neira Donald A.,Carvalho Fabricio E. L.,Rojas-Molina Jairo
Abstract
Low technological knowledge in production chains, global climate change, and misinformation are concrete threats to food security. In addition, these combined threats also trigger ecological instability in megadiverse areas of the world, especially in some cacao-producing countries in South America, where this crop plays an important socio-economic role, even being used to replace illicit crops. Accordingly, the use of agroforestry systems approaches has emerged as a good alternative to maintain productivity, add high-value commodities to producers, and provide important ecosystem services for sustainable agriculture. However, limitations associated with the competition for resources between the species composing the system, and the higher incidence of some diseases, have led many producers to abandon this strategy, opting for monoculture. In this review, we seek to gather the main information available in the literature, aiming to answer the question: what is the real scientific evidence that supports the benefits and harms of adopting agroforestry systems in cacao production? We seek to make critical scrutiny of the possible negative effects of certain associations of the agroforestry system with biotic and abiotic stress in cacao. Here, we review the possible competition for light and nutrients and discuss the main characteristics to be sought in cacao genotypes to optimize these inter-specific relationships. In addition, we review the research advances that show the behavior of the main cacao diseases (Witch’s broom disease, frosty pod rot, black pod rot) in models of agroforestry systems contrasted with monoculture, as well as the optimization of agronomic practices to reduce some of these stresses. This compendium, therefore, sheds light on a major gap in establishing truly sustainable agriculture, which has been treated much more from the perspective of negative stigma than from the real technological advantages that can be combined to the benefit of a balanced ecosystem with generating income for farmers.
Reference118 articles.
1. Desempeño fisiológico de nueve genotipos de cacao (T. cacao L.) bajo la sombra de tres especies forestales en Santander;Agudelo-Castañeda;Colombia.,2018
2. The causal agents of witches’ broom and frosty pod rot of cacao (chocolate, T. cacao) form a new lineage of Marasmiaceae;Aime;Mycologia,2005
3. Phytophthora Megakarya: a review on its status as a pathogen on cacao in West Africa five major diseases of cocoa (T. cacao Lss.), Phytophthora pod rot (black pod), witches broom, swollen shoot virus, vascular streak dieback, and monilia pod;Akrofi;African Crop Sci. J.,2015
4. Black pod disease on cacao (T. cacao, L) in Ghana: spread of Phytophthora megakarya and role of economic plants in the disease epidemiology;Akrofi;Crop Prot.,2015
5. Modelling agroforestry systems of cacao (T. cacao) with laurel (Cordia alliodora) and poro (E. poeppigiana) in Costa Rica;Alpízar;Agrofor. Syst.,1986
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