Open Access
Issue |
Silva Lusitana
Volume 29, Number 1, 2021
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Page(s) | 39 - 52 | |
DOI | https://doi.org/10.1051/silu/20212901039 | |
Published online | 04 August 2021 |
- Balachowsky, A.S., 1949. Faune de France: coléoptères scolytides. Lechevalier, Paris. [Google Scholar]
- Baker, J.M., 1963. Ambrosia beetles and their fungi, with particular reference to Platypus cylindrus Fab. in symbiotic associations. Symp. Soc. General. Microbiol. 13: 323–354. [Google Scholar]
- Belhoucine, L., Bouhraoua, R.T., Dahane, B., Pujade-Villar, J., 2011. Aperçu biologique du Platypus cylindrus (Fabricius, 1792) (Coleoptera, Curculionidae: Platypodinae) dans les galeries du bois de chêne-liège (Quercus suber L.). Orsis 25: 105–120. [Google Scholar]
- Belhoucine L., Bouhraoua R.T., 2015. Aperçu biologique du Platypus cylindrus Fab. (Coleoptera, Platypodidae) dans les galeries du bois de chêne-liège (Quercus suber L.). In Les actes du Med Suber: 1ère Rencontre Méditerranéenne Chercheurs-Gestionnaires- Industriels sur la Gestion des Subéraies et la Qualité du liège. Tlemcen, Algeria. pp. 146–159. [Google Scholar]
- Bellahirech, A., Inacio, M.L., Bonifacio, L., Nobrega, F., Sousa, E., Ben Jamaa, M.L., 2014. Comparison of fungi associated with Platypus cylindrus F. (Coleoptera: Platypodidae) in Tunisian and Portuguese cork oak stands. IOBC/ WPRS Bul. 101: 149–156. [Google Scholar]
- Bellahirech, A., Inácio, M.L., Nóbrega, F., Bonifácio, L., Sousa, E., Ben Jamâa, M. L., 2015. Can differences of Platypus cylindrus (Coleoptera: Platypodinae) in Portugal and Tunisia be explained by genetic and morphological traits? Bul. Entomol. Res. 106: 1–8. [CrossRef] [Google Scholar]
- Bellahirech, A., 2016. Etude des relations chêne-liège/Platypus cylindrus/champignons associés dans les subéraies tunisiennes. Ph. D. dissertation. National Institute of Agronomy of Tunisia. Tunisia. 206 pp. [Google Scholar]
- Bellahirech, A., Branco, M., Catry, F.X., Bonifácio, L., Sousa, E., Ben Jamâa, M.L., 2019. Site and tree related factors affecting colonization of cork oaks Quercus suber L. by ambrosia beetles in Tunisia. Ann. For. Sci. 76: 45–58. [Google Scholar]
- Ben Jamaa, M.L., Jerraya, A., Lieutier, F., 2000. Les Scolytes ravageurs des Pins en Tunisie. Annales de l’INRGREF. 4: 27–39. [Google Scholar]
- Ben Jamaa, M.L., Lieutier, F., Yart, A., Jerraya, A., Khouja, M.L., 2007. The virulence of phytopathogenic fungi associated with the bark beetles Tomicus piniperda and Orthotomicus erosus in Tunisia. For. Path. 37: 51–63. [CrossRef] [Google Scholar]
- Ben Jamaa, M.L., Sghaier, T., M'nara, S., Nouri, M., Sellemi, H., 2005. Le dépérissement du chêne-liège dans la subéraie de Bellif (Tunisie): caractérisation et évaluation de son impact sur l’accroissement du liège. IOBC/WPRS Bul. 28: 17–24. [Google Scholar]
- Beaver, R.A., 1977. Bark and ambrosia beetles in tropical forests. Biotrop. Spec. Publ. 2: 133–147. [Google Scholar]
- Biedermann, P.H.W., Taborsky, M., 2011. Larval helpers and age polyethism in ambrosia beetles. P. Natl. Acad. Sci. 108: 17064–17069. [CrossRef] [Google Scholar]
- Bouchaour-Djabeur, S., 2013. Les insectes ravageurs du Chêne liège au nord-ouest algérien. Geo-Eco-Trop. 36: 175–184. [Google Scholar]
- Bugalho, M.N., Caldeira, M.C., Pereira, J.S., Aronson, J., Pausas, J.G., 2011. Mediterranean cork oak savannas require human use to sustain biodiversity and ecosystem services. Front Ecol Environ. 9: 278–286. [CrossRef] [Google Scholar]
- CABI., 2008. Scolytus intricatus. Crop Protection Compendium. http://www.cabi.org/cpc. [Google Scholar]
- CABI., 2019. https://www.cabi.org/isc/datasheet/57038. [Google Scholar]
- Chadigan, M., Fraval, A., Ramzi, H., Villemant, C., 1991. Insectes xylophages. In La faune du chêne-liège. Documents scientifiques et Techniques, Actes Editions, Rabat. pp. 345–356. [Google Scholar]
- DGF (Direction Générale des Forêts). 2006. Deuxième inventaire forestier et pastoral national. Résultats sur l'échelon de Jendouba. Ministère de l'Agriculture, Tunis, 129 p. [Google Scholar]
- Eriksson, G., Varela, M.C., Lumaret, R., Gil, L., 2017. Genetic conservation and management of Quercus suber. Technical Bulletin. European Forest Genetic Resources Programme (EUFORGEN), Biodiversity International, Rome, Italy. [Google Scholar]
- Eskalen, A., Mc Donald, V.E., 2011. First Report of Raffaelea canadensis Causing Laurel Wilt Disease Symptoms on Avocado in California. Plant Disease 95(9):1189–1201. [CrossRef] [Google Scholar]
- Ferreira, M.C., Ferreira, G.W., 1989. Platypus cylindrus F. (Coleóptera: Platipodidae) Plaga de Quercus suber. Bol. San. Veg. Plagas 4: 301–305. [Google Scholar]
- Folmer, O., Black, M., Hoeh, W., Lutz, R., Vrijenhoek, R., 1994. DNA primers for amplification of mitochondrial cytochrome C oxidase subunit I from diverse metazoan invertebrates. Mol. Mar. Biol. Biotechnol. 3: 294–297. [Google Scholar]
- Fraedrich, W.S, Wood, C., Roger, D., Menard, R.D., Harrington, T.C., Olatinwo, R., Best, G.S., 2015. First report of Xyleborus glabratus (Coleoptera: Curculionidae: Scolytinae) and laurel wilt in Louisiana, USA: the disease continues westward on sassafras. Florida Entomologist 98(4): 1266–1268. [CrossRef] [Google Scholar]
- Gebhardt, H., Begerow, D., Oberwinkler, F., 2004. Identification of the ambrosia fungus of Xyleborus monographus (Fabricius) and X. dryographus (Coleoptera: Curculionidae, Scolytinae). Mycol Progress 3: 95–102. [CrossRef] [Google Scholar]
- Haack, R.A., 2001. Exotic Forest Pest Information System for North America: Scolytus intricatus. North American Forest Commission. [Google Scholar]
- Harrington, T.C., Fraedrich, S.W., 2011. Quantification of propagules of the laurel wilt fungus and other mycangial fungi from the redbay ambrosia beetle, Xyleborus glabratus. Phytopathology 100: 1118–1123. [CrossRef] [Google Scholar]
- Hulcr, J., Smith, S., 2010. Xyleborini ambrosia beetles: an identification tool to the world genera. URL: http://itp.lucidcentral.org/id/wbb/xyleborini/index.htm [Google Scholar]
- Inácio, M.L., Henriques, J., Lima, A., Sousa E., 2012a. Ophiostomatoid fungi associated with cork oak mortality in Portugal. IOBC/WPRS Bul. 76: 89–92. [Google Scholar]
- Inácio, M.L., Henriques, J., Nóbrega, F., Marcelino, J., Sousa, E., 2012b. Ophiostomatoid fungi, a new threat to cork oak stands. In Present and Future of Cork Oak in Portugal. ITQB, Oeiras, Portugal. pp 87–92. [Google Scholar]
- Kühnholz, S., Borden, J.H., Uzunovic, A., 2003. Secondary ambrosia beetles in apparently healthy trees: adaptations, potential causes and suggested research. Integrated Pest Manag. Rev. 6: 209–219. [CrossRef] [Google Scholar]
- Lira-Noriega, A., Soberón, J., Equihua, J., 2018. Potential invasion of exotic ambrosia beetles Xyleborus glabratus and Euwallacea sp. in Mexico: A major threat for native and cultivated forest ecosystems. Sci. Rep. 8: 10179. [CrossRef] [Google Scholar]
- Mejri, M., 2017. Dépistage des insectes xylophages des principales espèces de pin en Tunisie et de leurs nématodes associés du genre Bursaphelenchus et leur importance dans le dépérissement. Ph.D. dissertation. National Institute of Agronomy of Tunisia. Tunisia, 224 pp. [Google Scholar]
- Mendes, A.M.S.C., Graça, J.A.R., 2009. Cork bottle stoppers and other cork products, In Cork Oak Woodlands on the Edge. Soc. Ecol. Rest. Int. Island Press. Washington. pp. 59–69. [Google Scholar]
- Nsibi, R., Souayah, N., Khouja, M.L., Khaldi, A., Bouzid, S., 2006. Impacts des facteurs biotiques et abiotiques sur la dégradation de subéraie tunisienne. Revue internationale de géologie, de géographie et d'écologie tropicales 1: 25–34. [Google Scholar]
- Rassati, D., Haack, R.A., Knizek, M., Faccoli, M., 2018. National trade can drive range expansion of bark- and wood-boring beetles. J. Eco. Entomol. 111: 260–268. [CrossRef] [Google Scholar]
- Simon, C., Frati, F., Beckenbach, A., Crespi, B., Liu, H., Flook, P., 1994. Evolution, weighting, and phylogenetic utility of mitochondrial gene sequences and a compilation of conserved polymerase chain reaction primers. Annals of Entomological. Society 87: 651–701. [CrossRef] [Google Scholar]
- Sousa, E., Inácio, M.L., El Antry, S., Bakry, M., Kadiri, Z.A., 2005. Comparaison de la bio-écologie de l’insecte Platypus cylindrus Fab. (Col., Platypodidae) dans les subéraies portugaises et marocaines. IOBC/WPRS Bul. 28: 137–144. [Google Scholar]
- Tamura, K., Stecher, G., Peterson, D., Filipski, A., Kumar, S., 2013. MEGA6: Molecular evolutionary genetics analysis version 6.0. Mol Biol Evol. 30(12): 2725–2729. [CrossRef] [PubMed] [Google Scholar]
- Villemant., C., Fraval A., 1993. La faune entomologique du chêne-liège en forêt de la Mamora (Maroc). Ecologia Mediterranea 19: 89–98. [CrossRef] [Google Scholar]
- Wood, S.L., 1960. Coleoptera: Platypodidae and Scolytidae. Insects of Micronesia 18: 1–73. [Google Scholar]
- Wood, S.L., Bright, D.E., 1992. A catalog of Scolytidae and Platypodidae (Coleoptera), Part 2. Taxonomic Index. Great Basin Nat. Mem. 13: 1–1553. [Google Scholar]
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