Abraham YJ, Moore D, Godwin G (1990) Rearing and aspects of biology of Cephalonomia stephanoderis and Prorops nasuta (Hymenoptera: Bethylidae) parasitoids of the coffee berry borer, Hypothenemus hampei (Coleoptera: Scolytidae). Bull Entomol Res 80:121–128
Arcila-Pulgarin J, Jaramillo A, Baldion-Rincon V, Bustillo AE (1993) La floración del cafeto y su relación con el control de la broca. FNC. Cenicafé, Chinchiná, Colombia. Boletín Técnico 193:4
Aristizábal LF, Bustillo AE, Arthurs SP (2016) Integrated pest management of coffee berry borer: strategies from Latin America that could be useful for coffee farmers in Hawaii. InSects 7:6. https://doi.org/10.3390/insects7010006
Article PubMed PubMed Central Google Scholar
Aristizábal LF, Johnson MA, Mariño YA, Bayman P, Wright MG (2023) Establishing an integrated pest management program for coffee berry borer (Hypothenemus hampei) in Hawaii and Puerto Rico coffee agroecosystems: achievements and challenges. Insects 14:603
Article PubMed PubMed Central Google Scholar
Arnold CY (1959) The determination and significance of the base temperature in a linear heat unit system. J Am Soc Hortic Sci 74:430–445
Augustin J, Bourgeois G, Brodeur J, Boivin G (2022) Low and high temperatures decrease the mating success of an egg parasitoid and the proportion of females in the population. J Therm Biol 110:103382
Bacca RT (1999) Efecto del Parasitoide Prorops nasuta Waterston (Hymenoptera: Bethylidae) Sobre Poblaciones de Broca del Café Hypothenemus hampei (Ferrari) (Coleoptera:Scolytidae). Universidad Nacional de Colombia, Bogotá, Colombia, p 186
Baker PS (1999) The coffee berry borer in Colombia; final report of the DFID-Cenicafé-CABI Bioscience IPM for coffee project (CNTR 93/1536A). DFID-CENICAFE, Chinchina (Colombia), p 154
Barrera JF, Moore D, Abraham DJ, Murphy ST, Prior C (1990). Biological control of the coffee berry borer Hypothenemus hampei in Mexico and possibilities for further action. Brighton Crop Protection Conference on Pest and Diseases. pp 391–396
Benassi VLRM, Bussoli AC (2009) Biology of Prorops nasuta Wat. (Hymenoptera: Bethylidae), parasitoid of the coffee berry borer. IN Simposio de pesquia dos cafés do Brasil, 6. p 250
Benavides P, Gil ZN, Escobar LE, Navarro-Escalante L, Follett P, Diaz-Soltero H (2023) Pilot testing of an area-wide biological control strategy against the coffee berry borer in Colombia using African parasitoids. InSects 14:865. https://doi.org/10.3390/insects14110865
Article PubMed PubMed Central Google Scholar
Bernal JS, González D (1993) Temperature requirements of parasitoids and their hosts: implications for biological control. In: Bernal JS, González D (eds) Theoretical and applied aspects of biological control. University of California Press, Berkeley, pp 101–120
Berryman AA (1999) The theoretical foundations of biological control. In: Hawkins BA, Cornell HV (eds) Theoretical approaches to biological control. Cambridge University Press, Cambridge, pp 3–21
Bressac C, El Sabrout A, Kifouche F, Anne M, Capdevielle-Dulac C, Mougel F, Kaiser L (2023) Hot and cold waves decrease sperm production and bias sex ratio in the parasitoid wasp Cotesia typhae (Hymenoptera, Braconidae). J Insect Physiol 149:104553
Article CAS PubMed Google Scholar
Bustillo AE (2006) Una revisión sobre la broca del café, Hypothenemus hampei (Coleoptera: Curculionidae: Scolytinae), en Colombia. Rev Colomb Entomol 32:101–116
Campbell A, MacKauer M (1975) Thermal constants for the development of the pea aphid (Hemiptera: Aphididae) and some of its parasites. Can Entomol 107:419–423
Campbell A, Frazer BD, Gilbert NGAP, Gutierrez AP, Mackauer M (1974) Temperature requirements of some aphids and their parasitoids. J Appl Ecol 11:431–438
Castaño A, Benavides P, Baker PS (2005) Dispersión de Hypothenemus hampei en cafetales zoqueados. Rev Cenicafe 56:142–150
Chapman RF (1998) The insects: structure and function. Cambridge University Press, Cambridge, UK
Chi H, Liu H (1985) Two new methods for the study of insect population ecology. Bull Inst Zool Acad Sin 24:225–240
Chi H, You MS, Athhann R, Smith CL, Kavousi A, Özgökçe MS, Güncan A, Tuan SJ, Fu JW, Xu YY et al (2023) Age-stage, two-sex life table: an introduction to theory, data analysis, and application. Entomol Gen 40:103–124
Chidawanyika F, Mudavanhu P, Nyamukondiwa C (2019) Global climate change as a driver of bottom-up and top-down factors in agricultural landscapes and the fate of host-parasitoid interactions. Front Ecol Evol 7:80. https://doi.org/10.3389/fevo.2019.00080
Costa CST, Villacorta A (1989) Modelo acumulativo para Hypothenemus hampei (Ferarri, 1867) (Coleoptera: Scolytidae) com base em suas exigencies termicas. An Soc Entomol Brasil 19:92–99
De Toledo AA (1942) Notes on the biology of the Uganda parasite Prorops nasuta Waterst. (Hym. Bethyl.) in the State of São Paulo. Arq Inst Biol 13:233–260
Dinno A (2017) dunn.test: Dunn’s test of multiple comparisons using rank sums. R package version 1.3.6, https://CRAN.R-project.org/package=dunn.test
Duque H, Baker PS (2003) Devouring profit the socio-economics of coffee berry borer IPM. Cenicafé, Caldas, Colombia, pp 62–63
Escobar-Ramirez S, Grass I, Armbrecht I, Tscharntke T (2019) Biological control of the coffee berry borer: main natural enemies, control success, and landscape influence. Biol Control 136:103992
Espinoza JC, Infante F, Castillo A, Pérez J, Nieto G, Pinson EP, Vega FE (2009) The biology of Phymastichus coffea LaSalle (Hymenoptera: Eulophidae) under field conditions. Biol Control 49:227–233
Feldhege MR (1992) Rearing techniques and aspects of biology of Phymastichus coffea (Hymenoptera: Eulophidae), a recently described endoparasitoid of the coffee berry borer, Hypothenemus hampei (Coleoptera: Scolytidae). The Café Cacao 36:45–54
Foerster LA, Doetzer AK (2006) Cold storage of the egg parasitoids Trissolcus basalis (Wollaston) and Telenomus podisi Ashmead (Hymenoptera: Scelionidae). Biol Control 36:232–237. https://doi.org/10.1016/j.biocontrol.2005.10.004
Fonseca-Lacerda L, Coelho JA, Gomes-Garcia A, Sentelhas PC, Parra PJR (2019) Biology at different temperatures, thermal requirements, and ecological zoning of Opogona sacchari (Lepidoptera: Tineidae). J Econ Entomol 112:1676–1682. https://doi.org/10.1093/jee/toz103
Gao H, Zhao H, Du C, Deng M, Du E (2012) Life table evaluation of survival and reproduction of the aphid, Sitobion avenae, exposed to cadmium. J Insect Sci 12:1–9
Giraldo-Jaramillo M, Parra JRP (2018) Artificial diet adjustments for Brazilian strain of Hypothenemus hampei (Ferrari, 1867) (Coleoptera: Curculionidae). Coffee Sci 13:132–135
Giraldo-Jaramillo M, Garcia AG, Parra JRP (2018) Biology, thermal requirements, and estimation of the number of generations of Hypothenemus hampei (Ferrari, 1867) (Coleoptera: Curculionidae) in the state of São Paulo, Brazil. J Econ Entomol 111:2192–2200. https://doi.org/10.1093/jee/toy162
Giraldo-Jaramillo M, Montoya EC, Sarmiento N, Quiroga A, Espinosa JC, García JC, Duque H, Benavides P (2019) Vulnerabilidad de la caficultura de Caldas a la broca del café en diferentes eventos climáticos. Avances Tecnicos Cenicafe 505:1–8. https://doi.org/10.38141/10773/0505
Gómez Ó, Gonzáles A, Gil ZN, Escobar LE, Rodríguez DS, Giraldo M, Benavides P (2024) Rearing coffee berry borer, Hypothenemus hampei, and its parasitoid Phymastichus coffea, the Togolese wasp, in natural and artificial diets. Boletín Técnico Cenicafé 48:1–24
Gutierrez AP, Villacorta A, Cure JR, Ellis CK (1998) Tritrophic analysis of the coffee (Coffea arabica)-coffee berry borer [Hypothenemus hampei (Ferrari)]-parasitoid system. An Soc Entomol Bras 27:357–385
Haddad ML, Parra JRP (1984) Métodos para estimar os limites térmicos e a faixa ótima de desenvolvimento das diferentes fases do ciclo evolutivo de insetos. FEALQ, Piracicaba, Brazil
Hance T, van Baaren J, Vernon P, Boivin G (2007) Impact of extreme temperatures on parasitoids in a climate change perspective. Annu Rev Entomol 52:107–126. https://doi.org/10.1146/annurev.ento.52.110405.091333
Article CAS PubMed Google Scholar
Hempel A (1934) A Prorops nasuta Waterston no Brasil. Arq Inst Biol (Sao Paulo) 5:197–212
Infante F (2000) Development and population growth rates of Prorops nasuta (Hym., Bethylidae) at constant temperatures. J Appl Entomol 124:343–348
Infante F (2018) Pest management strategies against the coffee berry borer (Coleoptera:Curculionidae: Scolytinae). J Agric Food Chem 66:5275–5280
Article CAS PubMed Google Scholar
Infante F, Barrera J, Gomez J, Castillo A (1992) Thermal constants for preimaginal development of the parasitoid Cephalonomia stephanoderis Betrem (Hymenoptera: Bethylidae). Can Entomol 124:935–941
Infante F, Mumford J, Mendez I (2001) Non-recovery of Prorops nasuta (Hymenoptera: Bethylidae), an imported parasitoid of the coffee berry borer (Coleoptera: Scolytidae) in Mexico. Southwestern Entomol 26:159–163
Infante F, Mumford J, Baker P, Barrera J, Fowler S (2001) Interspecific competition between Cephalonomia stephanoderis and Prorops nasuta (Hym., Bethylidae), parasitoids of the coffee berry borer, Hypothenemus hampei (Col., Scolytidae). J Appl Entomol 125:63–70
Infante F, Mumford J, Baker P (2005) Life history studies of Prorops nasuta, a parasitoid of the coffee berry borer. Biol Control 50:259–270
Jaramillo A (2018) El Clima de la Caficultura en Colombia. Cenicafé, Chinchina-Caldas, Colombia. https://www.cenicafe.org/es/publications/libroClima.pdf. Accessed 20 June 2024
Jaramillo J, Borgemeister C, Baker P (2006) Coffee berry borer Hypothenemus hampei (Coleoptera: Curculionidae): searching for sustainable control strategies. Bull Entomol Res 96:223–233
Article CAS PubMed Google Scholar
Jeffs CT, Lewis OT (2013) Effects of climate warming on host-parasitoid interactions. Ecol Entomol 38:209–218. https://doi.org/10.1111/een.12026
Johnson MA, Ruiz-Diaz CP, Manoukis NC, Verle Rodrigues JC (2020) Coffee berry borer (Hypothenemus hampei), a global pest of coffee: perspectives from historical and recent invasion
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