The Advance of Fusarium Wilt Tropical Race 4 in Musaceae of Latin America and the Caribbean: Current Situation
Abstract
:1. Introduction
2. Methodology
2.1. Type of Research and Method of Analysis
2.2. Topic Analysis
2.2.1. The Threat of Foc TR4 in Banana Production
2.2.2. Bibliometric Analysis of the Scientific Production on Foc TR4 in LA
2.2.3. Current Situation of Foc TR4 in Colombia, Peru, and Venezuela
2.2.4. Medium-Term Prospects in LAC Member Countries
2.2.5. Export Trade and Local Food Security
3. Results and Discussion
3.1. The Threat of Foc TR4 in Banana Production
3.2. A Bibliometric Analysis of the Scientific Production of Foc TR4 in LAC
3.3. The Current Situation of Foc TR4 in Colombia, Peru, and Venezuela
3.3.1. Current Situation in Colombia
3.3.2. Program for Prevention and Containment of Foc TR4 in Colombia
- (a)
- Program supervision: A Unified Command Post (UCP) was created by instruction of the President of the Republic and the Minister of Agriculture. The national agriculture authorities, banana farmers’ associations, the military, and police forces formed the command to coordinate the interinstitutional actions for the containment of Foc TR4 in La Guajira, Colombia (Figure 5).
- (b)
- Articulation and coordination with stakeholders: The program involved the action of the Colombian Farmers’ Association (SAC), banana local farmers’ associations, and other actors in the supply production and commercial and logistics chains.
- (c)
- Empowerment and mandate: The NPPO was empowered to lead the response, take quarantine measures to contain the outbreak, be accountable for the program execution, and act as the technical secretariat of the UCP.
- (d)
- Take advantage of national capacities: The capabilities of the NPPO were used, using the national research institution of Colombia (AGROSAVIA), Bioversity International and the International Center for Tropical Agriculture (CIAT), Cenibanano, academic institutions, and other institutions dedicated to agricultural technology transfer. These institutions proposed sustainable alternatives based on scientific evidence and appropriate risk communication to respond to the Foc TR4 presence.
- (e)
- Cooperation and technical assistance: recognized organizations and world experts in Foc TR4 provided sustained support, cooperation, and technical assistance.
3.3.3. Current Situation in Peru
3.3.4. Program for Prevention and Containment of Foc TR4 in Peru
3.3.5. Current Situation in Venezuela
3.4. Medium-Term Prospects in LAC Member Countries
- (a)
- Ecuador: It is considered the main banana exporting country worldwide and is among the two countries that have reported the disease. The Phytosanitary and Zoosanitary Regulation and Control Agency—AGROCALIDAD in quality, NPPO of Ecuador, in Resolution No. 122 of the year 2017, designated Foc TR4 as a quarantine pest for the country [61].
- (b)
- Venezuela: The recent detection of Foc TR4 in the central and central-western region of Venezuela as well as to the proximity of the first source of infection in the Colombian Guajira to the border of both countries, where there are conditions of high fragility due to the flow of people, the commercial exchange added to the possible overflow of rivers in adjacent areas due to the of rainfall caused by tropical depressions, increasing the level of dispersion risk [10].
- (a)
- Campaigns on the radio, television, and social networks about the impact that the plague could have, both for the productive sector as well as for the population in general. They try to create a process of awareness of the population, in general, about the risk that the illegal introduction of plants, leaves, “seeds”, or souvenirs of vegetable fibers entails to the country in reference.
- (b)
- Placement of technical signage on symptoms and biosafety measures in communal and strategic areas.
- (c)
- Educate, inform, and support the implementation of relevant biosecurity measures.
- (d)
- The capacities of the official Pest Diagnosis Laboratory were strengthened (in terms of human resources, equipment, and methodology).
- (e)
- The inspection of imported in vitro plants that have entered each country in recent years, verifying that they were free of the pest.
- (f)
- Research on possible resistant varieties, although there is not yet a commercially viable option.
- (g)
- At the airport level, baggage checks and merchandise entry control are reinforced. The purchase of more X-ray equipment for entry points is under management. Special mats are placed with products that deactivate the possible presence of the fungus in the shoes or luggage wheels of people who enter the country through any of the entry points or borders. They are also improving and monitoring the conditions for international waste management (airline waste).
- (h)
- Some countries (the largest producers and exporters of bananas) are improving the infrastructure of the fumigation arches at the border and are updating the type of disinfectant used.
- (a)
- Consider that all Musaceae production sites must implement biosecurity measures in a time not exceeding one year.
- (b)
- Strengthen the surveillance system in all Musaceae production sites, with emphasis on actions to reinforce phytosanitary inspections in ports, airports, and border crossings.
- (c)
- Give continuity to the training for producers and other actors in the agricultural production chain so that they know how to implement biosecurity measures on their farms and that they can recognize the early symptoms caused by the pathogen and how to proceed in the event of a possible case of the disease.
- (d)
- Strengthen the diagnostic capacity for Foc TR4 and other Musaceae pests.
- (e)
- Promote the creation and management of germplasm banks that serve as support for the development of breeding programs and that contribute to the diversity of clones in planting systems and the evaluation of new resistant or tolerant materials.
3.5. Impacts of Foc TR4 on World Trade and Local Food Security in LAC
3.5.1. Impact of Foc TR4 in Countries with the Disease
3.5.2. Potential Short-Term Impact on World Markets
3.5.3. Potential Medium-Term Impact in Peru and Colombia
4. Summary Points and Future Issues
- (a)
- The containment measures for Foc TR4 worked until the moment they were defeated by the indiscriminate transit of contaminated material (vegetable soil, water, among others), to which must be added the great expansion of the area planted with Cavendish clones in monoculture systems, highly vulnerable to this pathogen. Its recent foray into LAC presupposes an impact on world banana production and trade.
- (b)
- The Foc TR4 prevention and containment programs that are currently available must be complied with, but at the same time, it is necessary, as previously mentioned, to advance the knowledge of the multiple factors related to this situation since, in this way, it will be possible to design management strategies for this disease based on scientific knowledge.
- (c)
- In Colombia, rapid intervention based on the eradication of areas adjacent to affected lots has been a successful measure. In Peru, the eradication measures have been applied in a localized way to try not to affect the total production of the producers since their production units are very small and represent their main economic support. In Venezuela, the recent emergency declaration of Foc TR4 puts local banana production at risk. In these cases, the design of an efficient biosecurity model for the production units, access to resistant plant material, soil health, early detection, and phytosanitary education at different levels about this disease are essential to contain it.
- (d)
- The range of impact of the disease is large and proportional to the disease’s contention and the producer’s financial capacity to face simultaneous yield losses and increased production costs. In the case of Peru and Colombia, the further spread of Foc TR4 could lead to production losses of organic bananas for export. The current situation in the American continent is even more complicated given the recent declaration (19 January 2023) of the presence of Foc TR4 in Venezuela. If the disease was to spread further to other regions, conventional bananas destined for both export and domestic markets could be at stake, leading to significant food safety concerns.
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Vellema, S.; Jansen, K. Sustainable banana cultivation: From standards to multiple solutions. In Achieving Sustainable Cultivation of Bananas: Volume 1: Cultivation Techniques; Burleigh Dodds Science Publishing Limited: Cambridge, UK, 2018; pp. 323–336. [Google Scholar] [CrossRef]
- Food and Agriculture Organization. Perspectivas a Mediano Plazo: Perspectivas Para la Producción y el Comercio Mundial de Bananos y Frutas Tropicales 2019–2028; FAO: Rome, Italy, 2020; Available online: https://www.fao.org/world-banana-forum/fusariumtr4/ru/ (accessed on 7 January 2023).
- Crawford, A.; Kueffner, S. Disease Is Ravaging the $25 Billion Banana Industry. Bloomberg 2020, 1, 1–4. [Google Scholar]
- Olivares, B.; Pitti, J.; Montenegro, E. Socioeconomic characterization of Bocas del Toro in Panama: An application of multivariate techniques. Rev. Bras. Gest. Desenvolv. Reg. 2020, 16, 59–71. [Google Scholar] [CrossRef]
- Pitti, J.; Olivares, B.O.; Montenegro, E.; Miller, L.; Ñango., Y. The role of agriculture in the Changuinola district: A case of applied economics in Panama. Trop. Subtrop. Agroecosystems 2021, 25, 017. [Google Scholar] [CrossRef]
- Montenegro, E.J.; Pitti-Rodríguez, J.E.; Olivares-Campos, B.O. Identification of the main subsistence crops of Teribe: A case study based on multivariate techniques. Idesia 2021, 39, 83–94. [Google Scholar] [CrossRef]
- Martínez-Solórzano, G.E.; Rey-Brina, J.C. Bananos (Musa AAA): Importancia, producción y comercio en tiempos de Covid-19. Agron. Mesoam. 2021, 32, 1034–1046. [Google Scholar] [CrossRef]
- FAO. FAOSTAT Base Datos: Superficie, Producción y Exportación de Banano y Plátano. Available online: http://www.fao.org/faostat/es/#data/QCL (accessed on 5 March 2022).
- Maryani, N.; Lombard, L.; Poerba, Y.S.; Subandiyah, S.; Crous, P.W.; Kema, G.H.J. Phylogeny and genetic diversity of the banana Fusarium wilt pathogen Fusarium oxysporum f. sp. cubense in the Indonesian centre of origin. Stud. Mycol. 2018, 91, 79–99. [Google Scholar] [CrossRef]
- Martínez, G.; Rey, J.; Pargas, R.; Manzanilla, E. Marchitez por Fusarium raza tropical 4: Estado actual y presencia en el continente americano. Rev. Agron. Mesoam. 2020, 31, 259–276. [Google Scholar] [CrossRef]
- García-Bastidas, F.A.; Quintero-Vargas, J.C.; Ayala-Vasquez, M.; Schermer, T.; Seidl, M.F.; Santos-Paiva, M.; Noguera, A.M.; Aguilera-Galvez, C.; Wittenberg, A.; Hofstede, R.; et al. The first report of Fusarium wilt Tropical Race 4 in Cavendish bananas was caused by Fusarium odoratissimum in Colombia. Plant Dis. 2020, 104, 994. [Google Scholar] [CrossRef]
- Izquierdo-García, L.F.; Carmona, S.L.; Zuluaga, P.; Rodríguez, G.; Dita, M.; Betancourt, M.; Soto-Suárez, M. Efficacy of disinfectants against Fusarium oxysporum f. sp. cubense tropical race 4 isolated from La Guajira, Colombia. J. Fungi 2021, 7, 297. [Google Scholar]
- Olivares, B.O.; Rey, J.C.; Lobo, D.; Navas-Cortés, J.A.; Gómez, J.A.; Landa, B.B. Fusarium wilt of bananas: A review of agro-environmental factors in the Venezuelan production system affecting its development. Agronomy 2021, 11, 986. [Google Scholar] [CrossRef]
- Montiflor, M.O.; Vellema, S.; Digal, L.N. Coordination as a management response to the spread of a global plant disease: A case study in a major philippine banana production area. Front. Plant Sci. 2019, 10, 1048. [Google Scholar] [CrossRef] [Green Version]
- Leiva, A.M.; Rouard, M.; Lopez-Alvarez, D.; Cenci, A.; Breton, C.; Acuña, R.; Rojas, J.C.; Dita, M.; Cuellar, W.J. Draft Genome Sequence of Fusarium oxysporum f. sp. cubense Tropical Race 4 from Peru, Obtained by Nanopore and Illumina Hybrid Assembly. Microbiol. Resour. Announc. 2022, 11, e00347-22. [Google Scholar] [CrossRef]
- Ordóñez, N. The phylogeography of the banana Fusarium wilt pathogen Fusarium oxysporum f. sp. cubense. In A Global Genetic Diversity Analysis of Fusarium oxysporum f. sp. Cubense, 59; Wageningen University and Research ProQuest Dissertations Publishing: Wageningen, The Netherlands, 2018. [Google Scholar]
- Staver, C.; Pemsl, D.E.; Scheerer, L.; Perez Vicente, L.; Dita, M. Ex ante assessment of returns on research investments to address the impact of Fusarium wilt tropical race 4 on global banana production. Front. Plant Sci. 2020, 11, 844. [Google Scholar] [CrossRef]
- Zhang, S.; Li, X.; Ba, Y.; Lyu, X.; Zhang, M.; Li, M. Banana Fusarium Wilt Disease Detection by Supervised and Unsupervised Methods from UAV-Based Multispectral Imagery. Remote Sens. 2022, 14, 1231. [Google Scholar] [CrossRef]
- Ujat, A.H.; Vadamalai, G.; Hattori, Y.; Nakashima, C.; Wong, C.K.F.; Zulperi, D. Current Classification and Diversity of Fusarium Species Complex, the Causal Pathogen of Fusarium Wilt Disease of Banana in Malaysia. Agronomy 2021, 11, 1955. [Google Scholar] [CrossRef]
- van Westerhoven, A.C.; Meijer, H.J.; Seidl, M.F.; Kema, G.H. Uncontained spread of Fusarium wilt of banana threatens African food security. PLoS Pathog. 2022, 18, e1010769. [Google Scholar] [CrossRef]
- García-Bastidas, F.A.; Arango-Isaza, R.; Rodriguez-Cabal, H.A.; Seidl, M.F.; Cappadona, G.; Segura, R.; Salacinas, M.; Kema, G.H. Induced resistance to Fusarium wilt of banana caused by Tropical Race 4 in Cavendish cv Grand Naine bananas after challenging with avirulent Fusarium spp. PLoS ONE 2022, 17, e0273335. [Google Scholar]
- Segura, R.A.; Stoorvogel, J.J.; Sandoval, J.A. The effect of soil properties on the relation between soil management and Fusarium wilt expression in Gros Michel bananas. Plant Soil 2022, 471, 89–100. [Google Scholar] [CrossRef]
- Acuña, R.; Rouard, M.; Leiva, A.M.; Marques, C.; Olortegui, A.; Ureta, C.; Cabrera-Pintado, R.M.; Rojas, J.C.; López, D.; Cenci, A.; et al. First report of Fusarium oxysporum f. sp. cubense Tropical Race 4, causing Fusarium wilt in Cavendish bananas in Peru. Plant Dis. 2021, 106, 2268. [Google Scholar] [CrossRef]
- Rocha, A.D.J.; Soares, J.M.D.S.; Nascimento, F.D.S.; Rocha, A.D.S.; Amorim, V.B.O.D.; Ramos, A.P.D.S.; Ferreira, C.F.; Haddad, F.; Amorim, E.P. Molecular, histological and histochemical responses of banana cultivars challenged with Fusarium oxysporum f. sp. cubense with different levels of virulence. Plants 2022, 11, 2339. [Google Scholar] [CrossRef]
- Reyes-Herrera, P.H.; Torres Bedoya, E.; Lopez-Alvarez, D.; Burbano, D.; Carmona, S.L.; Bebber, D.; Studholme, D.J.; Betancourt, M.; Soto-Suarez, M. Genome sequence data reveal at least two distinct incursions of the tropical race 4 (TR4) variant of Fusarium wilt into South America. Phytopathology 2022, 113, 90–97. [Google Scholar] [CrossRef]
- Pocasangre, L.E.; Ploetz, R.C.; Molina, A.B.; Perez Vicente, L. Raising awareness of the threat of Fusarium wilt tropical race 4 in Latin America and the Caribbean. Acta Hortic. 2011, 897, 331–337. [Google Scholar] [CrossRef]
- Llauger, R.; Peralta, E.L.; López, V.; López, D.; Brunel, S.; Dusunceli, F. Regional Strategy and Action Plan for the Prevention, Preparedness, Response, and Recovery of Latin America and the Caribbean to Fusarium Wilt of Musaceae Tropical Race 4; FAO: Panama City, Panama, 2022; pp. 1–81. [Google Scholar] [CrossRef]
- UN Comtrade. Available online: https://comtrade.un.org/ (accessed on 1 December 2022).
- Van Eck, N.J.; Waltman, L. Visualizing bibliometric networks. In Measuring Scholarly Impact: Methods and Practice; Ding, Y., Rousseau, R., Wolfram, D., Eds.; Springer: Berlin/Heidelberg, Germany, 2014; pp. 124–136. [Google Scholar]
- Van Eck, N.; Waltman, L. Software survey: VOSviewer, a computer program for bibliometric mapping. Scientometrics 2010, 84, 523–538. [Google Scholar]
- Magdama, F.; Monserrate-Maggi, L.; Serrano, L.; García Onofre, J.; Jiménez-Gasco, M.D.M. Genetic Diversity of Fusarium oxysporum f. sp. cubense, the Fusarium Wilt Pathogen of Banana, in Ecuador. Plants 2020, 9, 1133. [Google Scholar] [CrossRef]
- Molina, A.B.; Fabregar, E.; Sinohin, V.G.; Yi, G.; Viljoen, A. The recent occurrence of Fusarium oxysporum f. sp. cubense tropical race 4 in Asia. Acta Hortic. 2009, 828, 109–116. [Google Scholar] [CrossRef]
- Dita, M.; Teixeira, L.A.J.; O’Neill, W.; Pattison, A.B.; Weinert, M.P.; Li, C.Y.; Zheng, S.J.; Staver, C.; Thangavelu, R.; Viljoen, A. Current state of Fusarium wilt of banana in the subtropics. Acta Hortic. 2020, 1272, 45–56. [Google Scholar] [CrossRef]
- Waltman, L.; Van Eck, N.J. A smart local moving algorithm for large-scale modularity-based community detection. Eur. Phys. J. B 2013, 86, 471. [Google Scholar] [CrossRef]
- Dita, M.; Barquero, M.; Heck, D.; Mizubuti, E.S.; Staver, C.P. Fusarium wilt of banana: Current knowledge on epidemiology and research needs toward sustainable disease management. Front. Plant Sci. 2018, 9, 1468. [Google Scholar] [CrossRef]
- Kema, G.H.; Drenth, A.; Dita, M.; Jansen, K.; Vellema, S.; Stoorvogel, J.J. Fusarium wilt of banana, a recurring threat to global banana production. Front. Plant Sci. 2021, 11, 628888. [Google Scholar] [CrossRef]
- Chen, A.; Sun, J.; Matthews, A.; Armas-Egas, L.; Chen, N.; Hamill, S.; Aitken, E.A. Assessing variations in host resistance to Fusarium oxysporum f sp. cubense race 4 in Musa species, with a focus on the subtropical race 4. Front. Microbiol. 2019, 10, 1062. [Google Scholar] [CrossRef]
- García-Bastidas, F.A.; Van der Veen, A.J.; Nakasato-Tagami, G.; Meijer, H.J.; Arango-Isaza, R.E.; Kema, G.H. An improved phenotyping protocol for Panama disease in banana. Front. Plant Sci. 2019, 10, 1006. [Google Scholar] [CrossRef]
- Olivares, B.O.; Rey, J.C.; Perichi, G.; Lobo, D. Relationship of Microbial Activity with Soil Properties in Banana Plantations in Venezuela. Sustainability 2022, 14, 13531. [Google Scholar] [CrossRef]
- Olivares, B.O.; Vega, A.; Rueda Calderón, M.A.; Montenegro-Gracia, E.; Araya-Almán, M.; Marys, E. Prediction of Banana Production Using Epidemiological Parameters of Black Sigatoka: An Application with Random Forest. Sustainability 2022, 14, 14123. [Google Scholar] [CrossRef]
- Ye, H.; Huang, W.; Huang, S.; Cui, B.; Dong, Y.; Guo, A.; Ren, Y.; Jin, Y. Recognition of Banana Fusarium Wilt Based on UAV Remote Sensing. Remote Sens. 2020, 12, 938. [Google Scholar] [CrossRef]
- Selvaraj, M.G.; Vergara, A.; Montenegro, F.; Ruiz, H.A.; Safari, N.; Raymaekers, D.; Ocimati, W.; Ntamwira, J.; Tits, L.; Omondi, A.B.; et al. Detection of banana plants and their major diseases through aerial images and machine learning methods: A case study in DR Congo and Republic of Benin. ISPRS J. Photogramm. Remote Sens. 2020, 169, 110–124. [Google Scholar] [CrossRef]
- Yuan, J.; Wen, T.; Zhang, H.; Zhao, M.; Penton, C.R.; Thomashow, L.S.; Shen, Q. Predicting disease occurrence with high accuracy based on soil macroecoogical patterns of Fusarium wilt. ISME J. 2020, 14, 2936–2950. [Google Scholar]
- Olivares, B. Machine Learning and the New Sustainable Agriculture: Applications in Banana Production Systems of Venezuela. Agric. Res. Updates 2022, 42, 133–157. [Google Scholar]
- AGROSAVIA-FAO. Intercambio Técnico sobre la Agenda de Investigación Foc TR4. In Jornada AGROSAVIA—ICA—INIA—SENASA—FAO; Peralta, E., Ed.; FAO: Urabá Antioquia, Colombia, 2022. [Google Scholar]
- Gonzalez, A.; Cardenas, J. Curso Internacional de Actualización Sobre la Marchitez por Fusarium de las Musáceas, Raza 4 Tropical; Senasag: La Paz, Bolivia, 2022. [Google Scholar]
- Betancourt, V.M.; Cárdenas, J.; Rodríguez, G.A. Guía Para Importar a Colombia Germoplasma y Material de Propagación de Plátano y Banano en el Marco de la Emergencia Sanitaria por Foc TR4 en Colombia; AGROSAVIA: Bogotá, Colombia, 2021; pp. 1–63. [Google Scholar] [CrossRef]
- Cardenas, J. De la teoría a la acción. Historia del Fusarium R4T en Colombia; Capital Graphic SAS: Manizales, Colombia, 2022; p. 89. [Google Scholar]
- SENASA. Declaran la Alerta Fitosanitaria en todo el Territorio Nacional Para la Plaga Fusarium oxysporum f. sp. Cubense Raza 4 Tropical; Resolución Jefatural Nº 0175-2019-MINAGRI-SENASA; Lima, P., Dirección de Sanidad Vegetal del Servicio Nacional de Sanidad Agraria, Eds.; 2019; Available online: https://n9.cl/ipplp (accessed on 7 February 2023).
- SENASA. Declaran Emergencia Fitosanitaria en todo el Territorio Nacional ante la Presencia de la Plaga Fusarium oxysporum f. sp. cubense Raza 4 Tropical; Resolución Jefatural Nº 0048-2021-MIDAGRI-SENASA; Dirección de Sanidad Vegetal del Servicio Nacional de Sanidad Agraria, Ed.; Lima, Peru, 2021; Available online: https://n9.cl/2pyl1 (accessed on 7 February 2023).
- Cano, J. Mamita Yunai, una bananera estadounidense en Centroamérica: El caso de Palmar Sur (Costa Rica). Mem. Rev. Digit. Arqueol. Hist. Desde Caribe 2017, 4, 88–119. [Google Scholar]
- García, F.; Pachacama, S.; Jarrín, D.; Iza, M.; Ayala, M.; Ortiz, H.; Dix, O.; Echegaray, J.; Farfán, D.; Bartolini, I.; et al. Guía Andina Para el Diagnóstico de Fusarium Raza 4 Tropical (TR4) Fusarium oxysporum f. sp. Cúbense (syn. Fusarium odoratissimum) Agente Causal de la Marchitez por Fusarium en Musáceas (Plátanos y Bananos); Secretaría General Comunidad Andina Publisher: Lima, Peru, 2020; pp. 1–70. Available online: https://bit.ly/3mpTYYl (accessed on 1 October 2022).
- Pérez-Vicente, L.; Dita, M.; Martínez, E. Technical Manual Prevention and Diagnostic of Fusarium Wilt (Panama Disease) of Banana Caused by Fusarium oxysporum f. sp. Cubense Tropical Race 4 (TR4); FAO: Rome, Italy, 2014. [Google Scholar]
- Lescot, T. Banane. Diversité génétique. Française 2017, 248, 102. [Google Scholar]
- Bakry, F.; Horry, J.-P. Advances in genomics: Applications to banana breeding. Acta Hortic. 2016, 1114, 171–180. [Google Scholar] [CrossRef]
- Ploetz, R. Fusarium wilt of banana. Phytopathology 2015, 105, 1512–1521. [Google Scholar] [CrossRef]
- Bioversity–CIAT (Alliance). Available online: https://n9.cl/kemyt (accessed on 1 October 2022).
- IICA. Available online: https://n9.cl/o3j1b (accessed on 1 October 2022).
- OIRSA. Análisis de riesgo de Fusarium oxysporum f. sp. cubense raza 4 tropical (Foc TR4). In Plaga Cuarentenaria; Organismo Internacional Regional de Sanidad Agropecuaria: San Salvador, El Salvador, 2019; p. 287. Available online: https://visar.maga.gob.gt/visar/22/sv/ARP-Fus.pdf (accessed on 7 February 2023).
- FONTAGRO. Agenda de investigación para la exclusión, prevención y manejo de brotes de la raza 4 tropical de Fusarium (TR4) en el cultivo de Musáceas de América Latina y el Caribe (ALC). In Taller Técnico. Memorias; FONTAGRO, AGROSAVIA, BID: Bogotá, Colombia, 2019; p. 73. Available online: https://bit.ly/3lqT64q (accessed on 7 February 2023).
- AGROCALIDAD. Available online: https://www.agrocalidad.gob.ec (accessed on 1 October 2022).
- INSAI. Available online: https://www.insai.gob.ve (accessed on 1 October 2022).
- Rey, J.C.; Martínez-Solórzano, G.; Ramírez, H.; Pargas-Pichardo, R. Relationship of the agroecological conditions of a plot of lacustrine plain with the wilting of Cavendish banana in Aragua, Venezuela. Agron. Trop. 2020, 70, 1–12. [Google Scholar]
- Olivares, B.O.; Vega, A.; Calderón, M.A.R.; Rey, J.C.; Lobo, D.; Gómez, J.A.; Landa, B.B. Identification of Soil Properties Associated with the Incidence of Banana Wilt Using Supervised Methods. Plants 2022, 11, 2070. [Google Scholar] [CrossRef]
- Olivares, B. Determination of the Potential Influence of Soil in the Differentiation of Productivity and in the Classification of Susceptible Areas to Banana Wilt in Venezuela; UCO Press: Cordoba, Spain, 2022; pp. 89–111. Available online: https://helvia.uco.es/handle/10396/22355 (accessed on 7 February 2023).
- Segura, R.A.; Stoorvogel, J.J.; García-Bastidas, F.; Salacinas-Niez, M.; Kema, G.H.J.; Sandoval, J.A. Evaluating the potential of soil management to reduce the effect of Fusarium oxysporum f. sp. cubense in banana (Musa AAA). Eur. J. Plant Pathol. 2021, 160, 441–455. [Google Scholar] [CrossRef]
- Segura, M.R.A.; Stoorvogel, J.J.; Blanco, R.F.A.; Sandoval, F.J.A. A medium-term field experiment to study the effect of managing soil chemical properties on Fusarium wilt in banana (Musa AAA). J. Fungi 2021, 7, 261. [Google Scholar] [CrossRef]
- Aquino, A.; Bandoles, G.; Lim, V.A.; Abeleda, C.; Molina, A. Economic Impact of Fusarium Wilt Disease on Cavendish Banana Farms in Southern Philippines, Consultation-Workshop on the Socio-Economic Impacts of Fusarium Wilt Disease of Cavendish Banana in the Asia-Pacific Region; Waterfront Insular Hotel: Davao City, Philippines, 2013; pp. 11–15. [Google Scholar]
- Fruitrop. Banana World Statistics 2020–2021. Fruitrop 2022, 281, 96–105. Available online: https://n9.cl/cm2de (accessed on 7 February 2023).
- Chen, X.; Dong, T.; Huang, Y.; Yi, G. In Socio-Economic Impact of Fusarium Wilt on Cavendish Banana in China, Consultation-Workshop on the Socio-Economic Impacts of Fusarium Wilt Disease of Cavendish Banana in the Asia-Pacific Region; Waterfront Insular Hotel: Davao City, Philippines, 2013; pp. 11–15. [Google Scholar]
- Altendorf, S. Banana Fusarium Wilt Tropical Race 4: A Mounting Threat to Global Banana Markets? FAO: Rome, Italy, 2019; pp. 1–10. Available online: https://n9.cl/q6gt8 (accessed on 7 February 2023).
- Cook, D.C.; Taylor, A.S.; Meldrum, R.A.; Drenth, A. Potential economic impact of Panama disease (tropical race 4) on the Australian banana industry. J. Plant Dis. Prot. 2015, 122, 229–237. Available online: http://www.jstor.org/stable/24618900 (accessed on 7 February 2023).
- Dawson, C. Organic banana in 2021, trends taking root. Fruitrop 2022, 281, 90–97. Available online: https://n9.cl/ny5xu (accessed on 7 February 2023).
- Dawson, C.; Lescot, T. The Organic Banana in Peru. Producer country profile. Fruitrop 2022, 280, 10–19. [Google Scholar]
- Dawson, C.; Loeillet, D. The banana in Colombia. Producer country profile. Fruitrop 2019, 265, 130–135. [Google Scholar]
- Dawson, C.; Van der Waal, H.-W. The world of organic bananas: A review of the production, markets, sustainability, and current and future trends. Acta Hortic. 2022; accepted. [Google Scholar]
- Ministerio de Agricultura y Desarrollo Rural. Cadena de Banano; Dirección de cadenas agrícolas y Forestales, Ministerio de Agricultura y Desarrollo Rural, Ed.; Bogotá, Colombia, 2020. Available online: https://sioc.minagricultura.gov.co/Banano/Documentos/2020-09-30%20Cifras%20Sectoriales.pdf (accessed on 7 February 2023).
- Ministerio de Agricultura y Desarrollo Rural de Colombia. Cadena de Plátano; Dirección de cadenas agrícolas y Forestales, Ministerio de Agricultura y Desarrollo Rural, Ed.; Bogotá, Colombia, 2020. Available online: https://sioc.minagricultura.gov.co/Platano/Documentos/2020-03-31%20Cifras%20Sectoriales.pdf (accessed on 7 February 2023).
- Drenth, A. TR4 around the world: Ongoing spread and impact. Aust. Banan. 2019, 55, 34–35. [Google Scholar]
- Stokstad, E. Banana fungus puts Latin America on alert. Science 2019, 365, 207–208. [Google Scholar] [CrossRef]
- Drenth, A.; Kema, G. The vulnerability of bananas to globally emerging disease threats. Phytopathology 2021, 111, 2146–2161. [Google Scholar] [CrossRef]
Ranking | Country | Exported Tons in 2021 |
---|---|---|
1 | Ecuador | 6,915,429 |
2 | Costa Rica | 2,507,485 |
3 | Philippines | 2,428,887 |
4 | Guatemala | 2,290,266 |
5 | Colombia | 1,993,597 |
6 | Panama | 700,000 |
7 | Mexico | 530,481 |
8 | Côte d’Ivoire | 380,000 |
9 | Dominican Republic | 360,192 |
10 | Honduras | 335,968 |
LAC Country | Estimated Area of Organic Banana (ha) | Share of World Surfaces (%) |
---|---|---|
Dominican Republic | 20,000 | 34.2 |
Ecuador | 18,830 | 32.2 |
Peru | 10,217 | 17.4 |
Mexico | 4184 | 7.1 |
Colombia | 4000 | 6.8 |
Other countries (not LAC) | 1300 | 2.2 |
World total | 58,531 | 100.0 |
Disclaimer/Publisher’s Note: The statements, opinions and data contained in all publications are solely those of the individual author(s) and contributor(s) and not of MDPI and/or the editor(s). MDPI and/or the editor(s) disclaim responsibility for any injury to people or property resulting from any ideas, methods, instructions or products referred to in the content. |
© 2023 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Share and Cite
Martínez, G.; Olivares, B.O.; Rey, J.C.; Rojas, J.; Cardenas, J.; Muentes, C.; Dawson, C. The Advance of Fusarium Wilt Tropical Race 4 in Musaceae of Latin America and the Caribbean: Current Situation. Pathogens 2023, 12, 277. https://doi.org/10.3390/pathogens12020277
Martínez G, Olivares BO, Rey JC, Rojas J, Cardenas J, Muentes C, Dawson C. The Advance of Fusarium Wilt Tropical Race 4 in Musaceae of Latin America and the Caribbean: Current Situation. Pathogens. 2023; 12(2):277. https://doi.org/10.3390/pathogens12020277
Chicago/Turabian StyleMartínez, Gustavo, Barlin O. Olivares, Juan Carlos Rey, Juan Rojas, Jaime Cardenas, Carlos Muentes, and Carolina Dawson. 2023. "The Advance of Fusarium Wilt Tropical Race 4 in Musaceae of Latin America and the Caribbean: Current Situation" Pathogens 12, no. 2: 277. https://doi.org/10.3390/pathogens12020277