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Sustainable production of mahogany in plantations: Biology of mahogany shoot borer (Hypsipyla robusta Moore) on artificial media and associated natural enemies

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Abstract

Hypsipyla robusta (Moore) Lepidoptera: Pyralidae is a major pest of meliaceous forest trees, especially mahogany, and hampers efforts at establishing mahogany plantations. The larvae of H. robusta destroy the principal terminal shoot by boring into the tips and tunneling in the stems of young saplings causing branching, stunted growth, and tip death. In an attempt to contribute to finding a solution to the problem, larvae were sampled from the field, the life cycle (biology) of H. robusta was studied on artificial media, and an amended diet with mahogany plant tissues. The natural enemies associated with the insects sampled from the field were also isolated and identified. The number of H. robusta larvae differed significantly between sampling periods and the maximum coincided with the peak of the rainy season and flushing of new shoots. Ventilated breeding cages with mahogany plant tissue or amended diet produced the highest values for all the parameters related to rearing success in the lab. The average minimum and maximum days of the life cycle of H. robusta (egg to adult) were 39 days and 51 days respectively. Oviposition took place for 1-3 days and the incubation period lasted between 3 to 4 days. The larval development period takes five to seven instars, and the days to complete larval development was 20-34 days for larvae going through five instars, 27-41 days for larvae going through six instars, and 30-46 days for larvae going through seven instars, and pupation lasted for 7-10 days. Six parasitoids, belonging to two insect orders Hymenoptera and Diptera, and the nematode Hexamermis sp were isolated from the larvae and eggs. Four pathogenic fungal species belonging to two genera, Beauvaria and Fusarium, were also isolated. The findings from these studies of Hypsipyla biology, in addition to parasitoids and fungal pathogens identified as biocontrol agents, could contribute to the efforts towards Integrated Pest Management of H. robusta.

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References

  • Abraham J, Angeli S, Schuetz S, Weissbecker B, Opuni-Frimpong E (2010) Olfactory cues of female Hypsipyla robusta (Moore) (Lepidoptera: Pyralidae) to mahoganies of the genera Entandrophragma and Khaya. Int For Rev 12(5):111

    Google Scholar 

  • Atuahene SKN (1972) The major Entomological problems facing Ghana’s reforestation program. 7th World forestry conference CFM/C1/2 EESF. Buenos Aires Argentina

  • Atuahene SKN (2001) The forest resources of Ghana and research on Hypsipyla robusta (Moore) (Lepidoptera: Pyralidae) control in mahogany plantations in Ghana. In: Floyd, F. Hauxwell, C. (Eds.) Proceedings of an International Workshop on Hypsipyla shoot borers of the Meliaceae, Kandy, Srilanka, 1996. ACIAR Proceedings No. 97 Canberra, 58-62

  • Atuahene SKN, Souto D (1983) The rearing and biology of the mahogany shoot borer Hypsipyla robusta Moore (Lepidoptera: Pyralidae) on an artificial medium. Insect Sci Appl 4(4):319–325

    Google Scholar 

  • Barradas-Juanz N, Díaz-Fleischer F, Pérez-Staples D (2016a) Mating Behavior of Hypsipyla grandella (Lepidoptera: Pyralidae) Under Laboratory Conditions. Ann Entomol Soc Am 109(3):377–383

    Article  Google Scholar 

  • Barradas-Juanz N, Díaz-Fleischer F, Montoya P, Dorantes A, Pérez-Staples D (2016b) New rearing method and larval diet for the mahogany shoot borer Hypsipyla grandella (Lepidoptera: Pyralidae). Fla Entomol 99:185–191

    Article  Google Scholar 

  • Chi NM, Quang DN, Hien PN, Dzung BDNP, Nhung NV, Nam PTT, Thuy V, Tuong B Dell (2021) Management of Hypsipyla robusta Moore (Pyralidae) damage in Chukrasia tabularis A. Juss (Meliaceae). Int J Trop Insect Sci. https://doi.org/10.1007/s42690-020-00405-3

  • Couilloud R, Guiol F (1980) The laboratory breeding of Hypsipyla robusta Moore. Revue Bois et Forets des Tropique 194:35–41

    Google Scholar 

  • Cunningham SA, Floyd RB (2004) Leaf compositional differences predict variation in Hypsipyla robusta damage to Toona ciliate in the field trials. Can J For Res 34(3):642–648

    Article  Google Scholar 

  • Danquah JA, Appiah M, Osman A, Pappinen A (2020) Geographic Distribution of Global Economic Important Mahogany Complex: A ReviewAnnual Research & Review in Biology 34(3):1–22

  • Darko CB, E. Opuni-Frimpong E, Owusu SA, Kyere B, Storer AJ (2022) Sustainability of Mahogany Production in Plantations: Does Resource Availability Influence Susceptibility of Young Mahogany Plantation Stands to Hypsipyla robusta Infestation? Int J For Res 2022, 5588184. https://doi.org/10.1155/2022/5588184

  • Griffiths MW (2001) The biology and ecology of Hypsipyla shoot borers. In: Floyd, R.B., Hauxwell, C. (Eds.), Hypsipyla Shoot Borers in Meliaceae: Proceedings of an International Workshop, Kandy, Sri Lanka, August 20– 23, 1996. Australian Centre for International Agricultural Research, Canberra, Australia, pp. 74–80

  • Grijpma P (1976) Resistance of Meliaceae against the shoot borer with particular reference to Toona ciliate M. J. Roem.var Australia (f.V.Muell.) C.D.C. In. J. Burley and B.T styles (eds) Tropical Trees: variations breeding and conservation. Linnean Society, London. pp 69-78

  • Grijpma P (1974) Contributions to an Integrated Control Programme of Hypsipyla grandella (zeller) in Costa Rica. Wagnengen, Netherlands

    Google Scholar 

  • Lee SS, Lim GT (2003) Pest and disease outbreaks in Malaysian forest plantations in Proceedings of the 6th International Conference on Plant Protection in the Tropics: Globalization and Plant Protection in Developing Economies. Pan Pacific Hotel, Kuala Lumpur. 11−14 August 2003. MAPPS and CABI, Kuala Lumpur

  • Mahroof RM, Hauxwell C, Edirisinghe JP, Watt AD, Newton AC (2002) Effects of artificial shade on the attack by the mahogany shoot borer, Hypsipyla robusta (Moore). Agric For Entomol 4:283–292

    Article  Google Scholar 

  • Mohanadas K (2000) Management of the shoot borer Hypsipyla robusta (Lepidoptera: Phycitidae) in mahogany plantations. KFRI Research Report 184, 19pp

  • Mo J, Tanton MT, Bygrave FL (1998) An improved technique for rearing the red cedar tip moth, Hypsipyla robusta (Lepidoptera: Pyralidae). Aust J Entomol 37:64–69

    Article  Google Scholar 

  • Newton AC, Baker P, Ramnarline S, Messen JF, Leeky RRB (1993) The mahogany shoot borer. Prospects for control. For Ecol Manag 57:301–328

    Article  Google Scholar 

  • Ocieng-Odero JPR, Onyongo FO, Kilori JT, Bungu MDO, Amboga EO (1991) Insect rearing management as a prerequisite in the development of IPM for sustainable food production. Insect Sci Appl 12(5/6):645–651

    Google Scholar 

  • Ofori DA, Opuni-Frimpong E, Cobbinah JR (2007) Provenance variation in Khaya species for growth and resistance to shoot borer Hypsipyla robusta. For Ecol Manag 242:438–443

    Article  Google Scholar 

  • Opoku EM, Opuni-Frimpong E, Dompreh D (2018) Developing sustainable regeneration techniques for four African mahogany species: grafting methods for success and growth. New For 1-16. https://doi.org/10.1007/s11056-018

  • Opuni-Frimpong E (2006) Improving productivity and conservation of African mahogany: genetic selection, propagation and silvicultural management of Hypsipyla robusta (Moore). Ph.D. A thesis submitted to the Graduate School of Michigan Technological University, September 2006, 176pp

  • Opuni-Frimpong E, Opoku SM, Storer AJ, Burton AJ, Yeboah D (2013) Productivity, pest tolerance and carbon sequestration of Khaya grandifoliola in the dry semi-deciduous forest of Ghana: a comparison in pure stands and mixed stands. New For 44(6):863–879. https://doi.org/10.1007/s11056-013-9376-6

    Article  Google Scholar 

  • Opuni-Frimpong E, Karnosky DF, Storer Abeney EA, Cobbinah JR (2008a) Relative susceptibility of four species of African mahogany to the shoot borer Hypsipyla robusta (Lepidoptera: Pyralidae) in the moist semideciduous forest of Ghana. For Ecol Manag 255(2):313–319

  • Opuni-Frimpong E (2008) Khaya grandifoliola C.DC. In Louppe, D., Oteng-Amoako, A.A. and Brink, M. (Editors). Plant Resources of Tropical Africa 7(1). Timbers 1. PROTA Foundation, Wageningen, Netherlends/Backhuys Publishers, Leiden, Netherlands/CTA, Wageningen, Netherlands. Pp329-333

  • Opuni-Frimpong E, Karnosky DF, Storer AJ, Cobbinah JR (2008b) Silvicultural systems for plantation mahogany in Africa: Influences of canopy shade on tree growth and pest damage. For Ecol Manag 255:328–333

    Article  Google Scholar 

  • Opuni-Frimpong E, Karnosky DF, Storer AJ, Cobbinah JR (2005) The effect of mixed-species stands on the Hypsipyla attack on mahogany trees in the moist semi-deciduous forest of Ghana. Int For Rev 7:57

    Google Scholar 

  • Opuni-Frimpong E, Nyarko-Duah NY, Belford EJD, Storer AJ (2014) Silvicultural systems for restoration of mahogany in degraded landscapes in Africa: Influence of mixed rainforest plantation on growth and pest damage. Open J For 4:414–425

  • Owusu SA, Opuni-Frimpong E, Antwi-Boasiako C (2014) Improving regeneration of mahogany: techniques for vegetative propagation of four African mahogany species using leafy stem cuttings. New For 45(5):687–697. https://doi.org/10.1007/s11056-014-9431-y

    Article  Google Scholar 

  • Pakull B, Ekué MRM, Bouka Dipelet UG, Doumenge C, McKey DB, Loumeto JJ, Opuni-Frimpong E, Yorou SN, Nacoulma BMY, Guelly KA, Ramamonjisoa L, Thomas D, Guichoux E, Loo J, Degen B (2019) Genetic diversity and differentiation among the species of African mahogany (Khaya spp.) based on a large SNP array. Conserv Genet. https://doi.org/10.1007/s10592-019-01191-3

  • Remires Sanchez J (1964) Investigation preliminar sobre biologia ecologia and control de Hypsipyle grandella Zeller. Boletin del Institute forestall Latino. Americano de Investigation 7 Capacitation 16:54–77

  • Robert H (1968) An outline of the biology of Hypsipyla robusta Moore, the shoot borer of the Meliaceae (Mahoganies) of Nigeria; together with brief comments on two stem borers and one other Lepidoptera fruit borer also found Nigerian Meliaceae. Commonw For Rev Pp 225-232

  • Tekpetey SL, Opuni-Frimpong E, Appiah-Kubi E, Essien C, Korang J, Pentsil S, Owusu WF, Govina JK, Owusu SA (2016) African Mahogany in Ghana’s Forest Estate: Distribution, Properties, and Uses. CSIR-FORIG, Kumasi, Ghana. iv + 195pp

  • Wagner MR, Cobbinah JR, Bosu PP (2008) Forest entomology in West Tropical Africa: Forest Insects of Ghana, 2nd edn. Springer Publishers, Dordrecht, The Netherlands, p 244

    Book  Google Scholar 

Download references

Acknowledgments

The authors are thankful to the African Academy of Science and the International Tropical Timber Organization (Project PD 625-08 Rev1-F) for providing financial support for this work. We appreciate the thorough review of anonymous reviewers whose suggestions have helped improve the paper’s quality. We also thank the staff at insect museums of Crop Research Institute of CSIR Ghana for assisting in identifying the parasitoids.

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Opuni-Frimpong, E., Owusu, S.A., Opoku, E.M. et al. Sustainable production of mahogany in plantations: Biology of mahogany shoot borer (Hypsipyla robusta Moore) on artificial media and associated natural enemies. Int J Trop Insect Sci 42, 2635–2644 (2022). https://doi.org/10.1007/s42690-022-00791-w

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