75
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Knowledge of xylem feeders (Hemiptera: Auchenorrhyncha) in Albanian olive orchards in readiness for a potential outbreak with Xylella fastidiosa invasion

ORCID Icon, ORCID Icon, ORCID Icon, ORCID Icon, , ORCID Icon, ORCID Icon, , , , & show all
Pages 1-14 | Accepted 20 Dec 2023, Published online: 31 Jan 2024

References

  • Antonatos S, Papachristos DP, Kapantaidaki DE, Lytra IC, Varikou K, Evangelou VI, Milonas P. 2020. Presence of Cicadomorpha in olive orchards of Greece with special reference to Xylella fastidiosa vectors. Journal of Applied Entomology. 144(1–2):1–11. doi:10.1111/jen.12695.
  • Ben Moussa IE, Mazzoni V, Valentini F, Yaseen T, Lorusso D, Speranza S, Digiaro M, Varvaro L, Krugner R, D’Onghia AM. 2016. Seasonal fluctuations of sap-feeding insect species infected by Xylella fastidiosa in apulian olive Groves of southern Italy. Journal of Economic Entomology. 109(4):1512–1518. doi:10.1093/jee/tow123.
  • Biedermann R, Niedringhaus R. 2009. The plant-and leafhoppers of Germany: identification key to all species. Scheessel, Germany: Wissenschaftlich Akademischer Buchvertrieb–Fründ.
  • Borror DJ, White RE. 1998. A field guide to insects: America north of Mexico. Vol. 19. Boston: Houghton Mifflin Harcourt.
  • Bozzo F, Frem M, Fucilli V, Cardone G, Garofoli PF, Geronimo S, Petrontino A. 2022. Landscape and vegetation patterns zoning is a methodological tool for management costs implications due to Xylella fastidiosa invasion. Land. 11(7):1105. doi:10.3390/Land11071105.
  • Bragard C, Dehnen-Schmutz K, Di Serio F, Gonthier P, Jacques M-A, Jaques Miret JA, Justesen AF, MacLeod A, Magnusson CS, Milonas P, et al. 2019. Scientific Opinion on the effectiveness of in planta control measures for Xylella fastidiosa. EFSA Journal. 17(5):5666. doi:10.2903/j.efsa.2019.5666.
  • Cara M, Merkuri J, Koka E, Bacaj M, Cara O. 2016. Xylella fastidiosa does not occur in Albania: preliminary results. Journal of Multidisciplinary Engineering Science and Technology. 3(10):5701–5705.
  • Cardone G, Digiaro M, Djelouah K, El Bilali H, Frem M, Fucilli V, Ladisa G, Rota C, Yaseen T. 2021. Potential socio-economic impact of Xylella fastidiosa in the Near East and North Africa (NENA): risk of introduction and spread, risk perception and socio-economic effects. New Medit: Mediterranean Journal of Economics, Agriculture and Environment=Revue Méditerranéenne dʹEconomie Agriculture et Environment. 20(2). doi:10.30682/nm2102c.
  • Cardone G, Michele D, Khaled D, Michel F, Cosimo R, Alessia L, Vincenzo F. 2022. Socio-Economic risks posed by a New plant disease in the Mediterranean basin. Diversity. 14(11):975. doi:10.3390/d14110975.
  • Cavalieri V, Altamura G, Fumarola G, Di-Carolo M, Saponari M, Cornara D, Bosco D, Dongiovanni C. 2019. Transmission of Xylella fastidiosa subspecies pauca sequence type 53 by different insect species. Insects. 10(10):324. doi:10.3390/insects10100324.
  • Cornara D, Bosco D, Fereres A. 2018. Philaenus spumarius: when an old acquaintance becomes a new threat to European agriculture. Journal of Pest Science. 91(3):957–972. doi:10.1007/s10340-018-0966-0.
  • Cornara D, Morente M, Markheiser A, Bodino N, Tsai CW, Fereres A, Redak RA, Perring T, Lopes JRS. 2019. An overview on the worldwide vectors of Xylella fastidiosa. Entomologia Generalis. 39(3–4):157–181. doi:10.1127/entomologia/2019/0811.
  • Cruaud A, Gonzalez AA, Godefroid M, Nidelet S, Streito JC, Thuillier JM, Rossi JP, Santoni S, Rasplus JY. 2018. Using insects to detect, monitor and predict the distribution of Xylella fastidiosa: a case study in Corsica. Scientific Reports. 8(1):1–13. doi:10.1038/s41598-018-33957-z.
  • Dietrich CH. 2005. Keys to the families of Cicadomorpha and subfamilies and tribes of Cicadellidae (Hemiptera: Auchenorrhyncha). Florida Entomologist. 88(4):502–517. doi:10.1653/0015-4040(2005)88[502:KTTFOC]2.0.CO;2.
  • Dietrich CH. 2009. Chapter 15—Auchenorrhyncha:(Cicadas, Spittlebugs, Leafhoppers, Treehoppers, and Planthoppers). Encyclopedia of Insects. 56–64. doi:10.1016/B978-0-12-374144-8.00015-1.
  • Drosopoulos S, Remane R. 2000. Biogeographic studies on the spittlebug Philaenus signatus Melichar, 1896 species group (Hemiptera: Aphrophoridae) with the description of two new allopatric species. Annales de la Société entomologique de France. 36(3):269–277.
  • EFSA Panel on Plant Health (PLH), Bragard C, Dehnen-Schmutz K, Di Serio F, Gonthier P, Jacques MA, Parnell S. 2019. Update of the scientific opinion on the risks to plant health posed by Xylella fastidiosa in the EU territory. EFSA Journal. 17(5):e05665. doi:10.2903/j.efsa.2019.5665.
  • EFSA PLH Panel. 2015. Scientific opinion on the risks to plant health posed by Xylella fastidiosa in the EU territory, with the identification and evaluation of risk reduction options. EFSA Journal. 13(1):3989. doi:10.2903/j.efsa.2015.3989.
  • El Handi K, Hafidi M, Sabri M, Frem M, El Moujabber M, Habbadi K, Haddad N, Benbouazza A, Abou Kubaa R, Achbani EH. 2022. Continuous pest surveillance and monitoring constitute a tool for sustainable agriculture: case of Xylella fastidiosa in Morocco. Sustainability. 14(3):1485. doi:10.3390/su14031485.
  • Elbeaino T, Cara M, Shahini S, Pandeli P. 2021. Detection and phylogeny of viruses in native Albanian olive varieties. Phytopathologia Mediterranea. 60(1):165–174. doi:10.36253/phyto-11985.
  • Elbeaino T, Yaseen T, Valentini F, Ben Moussa IE, Mazzoni V, D’Onghia AM. 2014. Identification of three potential insect vectors of Xylella fastidiosa in southern Italy. Phytopathologia Mediterranea. 53(2):328–332. doi:10.14601/Phytopathol_Mediterr-14113.
  • Fierro A, Liccardo A, Porcelli F. 2019. A lattice model to manage the vector and the infection of the Xylella fastidiosa on olive trees. Scientific Reports. 9:8723. doi:10.1038/s41598-019-44997-4.
  • Frem M, Chapman D, Fucilli V, Choueiri E, Moujabber ME, Notte PL, Nigro F. 2020. Xylella fastidiosa invasion of new countries in Europe, the Middle East and North Africa: ranking the potential exposure scenarios. NeoBiota. 59:77–97. doi:10.3897/neobiota.59.53208.
  • Frem M, Fucilli V, Nigro F, El Moujabber M, Abou Kubaa R, La Notte P, Bozzo F, Choueiri E. 2021a. The potential direct economic impact and private management costs of an invasive alien species: Xylella fastidiosa on Lebanese wine grapes. Neobiota. 70:43–67. doi:10.3897/neobiota.70.72280.
  • Frem M, Santeramo F, Lamonaca E, El Moujabber M, Choueiri E, La Notte P, Nigro F, Bozzo F, Fucilli V. 2021b. Landscape restoration due to Xylella fastidiosa invasion in Italy: assessing the hypothetical public’s preferences. NeoBiota. 66:31–54. doi:10.3897/neobiota.66.67648.
  • Frem M, Vincenzo F, Alessand P, Claudio A, Rossella B, Francesco B. 2022. Nursery plant production models under quarantine pests’ outbreak: assessing the environmental implications and economic viability. implications and economic viability. Agronomy. 12(12):2964. doi:10.3390/agronomy12122964.
  • Gixhari B, Hodaj B, Gjeloshi A, Ismaili H. 2014. Olive in the story and art in Albania. In Proceedings of the International Conference “Adriatic Olive Grove: Risk Prevention. Sustainability. Corfu, Greece: Learning,” Publisher Ionian University.
  • Gnezdilov VM, Holzinger WE, Wilson MR. 2014. The Western Palaearctic Issidae (Hemiptera, Fulgoroidea): an illustrated checklist and key to genera and subgenera. Proceedings of the Zoological Institute RAS. 318(Supplement 1):1–124. https://www.zin.ru/journals/TrudyZIN/eng/supplement.html?id=65.
  • Godefroid M, Morente M, Schartel T, Cornara D, Purcell A, Gallego D, Moreno A, Fereres JAP. 2020. The risk of Xylella fastidiosa outbreaks will decrease in the Mediterranean olive-producing regions. bioRxiv. doi:10.1101/2020.07.16.206474.
  • Haddad N, Afechtal M, Streito JC, Ouguas Y, Benkirane R, Lhomme P, Smaili MC. 2021. Occurrence in Morocco of potential vectors of Xylella fastidiosa that may contribute to the active spread of the bacteria. Annales de la Société entomologique de France. 57:359–371. doi:10.1080/00379271.2021.1965910.
  • Hairston NG. 1959. Species abundance and community organization. Ecology. (3):404–416. doi:10.2307/1929757.
  • Harper SJ, Ward LI, Clover GRG. 2010. Development of LAMP and real-time PCR methods for the rapid detection of Xylella fastidiosa for quarantine and field applications. Phytopathology. 100(12):1282–1288. doi:10.1094/PHYTO-06-10-0168.
  • Holzinger WE, Kammerlander I, Nickel H. 2003. The Auchenorrhyncha of Central Europe: Die Zikaden Mitteleuropas. Vol. 1. Leiden, The Netherlands: Brill.
  • Hopkins DL. 1989. Xylella Fastidiosa: Xylem-limited bacterial pathogen of plants. Annual Review of Phytopathology. 27(1):271–290. doi:10.1146/annurev.py.27.090189.001415.
  • Huqi B, Dhima K, Vasilakoglou I, Keco R, Salaku F. 2009. Weed flora and weed management in established olive groves in Albania. Weed Biology and Management. 9(4):276–285. doi:10.1111/j.1445-6664.2009.00351.x.
  • Ismaili H. 2009. Study on the condition and production of olive plant material in Albania. Conference: MBUMK: “Olive development project in Albania” National Conference. July 2009.
  • Janse JD, Obradovic A. 2010. Xylella Fastidiosa: Its biology, diagnosis, control and risks. Journal of Plant Pathology. 92:S35–S48. http://www.jstor.org/stable/41998754.
  • Lazemetaj L. 2018. The sector of olive oil production in Albania, achievements and challenges in future. International Journal of Advanced Research and Innovative Ideas in Education. I(4):2395–4396.
  • Leoneti L, Imami D, Zhllima E, Stefanllari A. 2009. Report on food chain analysis of olive oil and table olives in Albania, prepared for USAID-AAC (Albanian Agriculture Competitiveness) project.
  • Loureiro T, Mesquita MM, MdLE D, Serra L, Martins Â, Cortez I, Poeta P. 2023. Xylella fastidiosa: A glimpse of the Portuguese situation. Microbiology Research. 14:1568–1588. doi:10.3390/microbiolres14040108.
  • Luigi M, Manglli A, Thomaj F, Buonaurio R, Barba M, Faggioli F. 2009. Phytosanitary evaluation of olive germplasm in Albania. Phytopathologia Mediterranea. 48(2):280–284. https://www.jstor.org/stable/26463352.
  • Martelli GP, Boscia D, Porcelli F, Saponari M. 2016. The olive quick decline syndrome in south-east Italy: a threatening phytosanitary emergency. European Journal of Plant Pathology. 144(2):235–243. doi:10.1007/s10658-015-0784-7.
  • Mazzoni V. 2004. Le cicaline (Hemiptera: Fulgoromorpha e Cicadomorpha) dell’agroecosistema vigneto: studio faunistico e indagine bio-etologica sulle principali specie ampelofaghe della Toscana occidentale: tesi dottorato di ricerca [Doctoral dissertation].
  • Morente M, Cornara D, Plaza M, Durán JM, Capiscol C, Trillo R, Ruiz M, Ruz C, Sanjuan S, Pereira JA, et al. 2018. Distribution and relative abundance of insect vectors of Xylella fastidiosa in olive groves of the Iberian Peninsula. Insects. 9(4):175. doi:10.3390/insects9040175.
  • Mulya H, Santosa Y, Hilwan I. 2021. Comparison of four species diversity indices in mangrove community. Biodiversitas Journal of Biological Diversity. 22(9). doi:10.13057/biodiv/d220906.
  • Panzavolta T, Bracalini M, Croci F, Ghelardini L, Luti S, Campigli S, Goti E, Marchi R, Tiberi R, Marchi G. 2019. Philaenus italosignus a potential vector of Xylella fastidiosa: occurrence of the spittlebug on olive trees in Tuscany (Italy). Bulletin Insectology. 72(2):317–320. http://www.bulletinofinsectology.org/pdfarticles/vol72-2019-317-320panzavolta.pdf.
  • Pazaj E, Kapaj A. 2023. Factors affecting the olive production chain in Albania. WSEAS Transactions on Business and Economics. 20:555–563. doi:10.37394/23207.2023.20.51.
  • Ribaut H. 1952. Homoptères Auchenorhynques II (Jassidae), vol 57. Faune de France. Fédération Française des Sciences Naturelles, Paris. https://faunedefrance.org/bibliotheque/docs/RIBAUT_H_vol%2057_%20Hompt_Jassidae.pdf.
  • Sanchez B, Barreiro-Hurle J, Soto Embodas I, Rodriguez-Cerezo E. 2019. The impact indicator for priority pests (I2P2): a tool for ranking pests according to Regulation (EU) 2016/2031. EUR29793 EN, Publications Office of the European Union, Luxembourg. July. https://op.europa.eu/en/publication-detail/-/publication/43d7d035-acf6-11e9-9d01-01aa75ed71a1.
  • Saponari M, Boscia D, Nigro F, Martelli GP. 2013. Identification of DNA sequences related to Xylella fastidiosa in oleander, almond and olive trees exhibiting leaf scorch symptoms in Apulia (Southern Italy). Journal of Plant Pathology. 95(3):659–668. doi:10.4454/JPP.V95I3.035.
  • Saponari M, Giampetruzzi A, Loconsole G, Boscia D, Saldarelli P. 2019. Xylella fastidiosa in olive in Apulia: where we stand. Phytopathology. 109(2):175–186. doi:10.1094/PHYTO-08-18-0319-FI.
  • Schneider K, van der Werf W, Cendoya M, Mourits M, Navas-Cortés JA, Vicent A, Lansink AO. 2020. Impact of Xylella fastidiosa subspecies pauca in European olives. Proceedings of the National Academy of Sciences. 117(17):9250–9259. doi:10.1073/pnas.1912206117.
  • Scholten R, Sanchez LM, Hornero A, Navas-Cortes JA, Zarco-Tejada PJ, Beck PS. 2019. Monitoring the impact of Xylella on Apulia’s olive orchards using Sentinel-2 satellite data and aerial photographs. In: Second European conference on Xylella fastidiosa, Ajaccio (France)). Vol. 30. https://www.efsa.europa.eu/sites/default/files/event/191029-xylella/S6.P1_BECK.pdf.
  • Simpson EH. 1949. Measurement of diversity. Nature. 163(4148):688–688. doi:10.1038/163688a0.
  • Tischler W, Tischler W. 1949. Die synökologischen Grundbegriffe. Grundzüge der terrestrischen Tierökologie. Wiesbaden: Vieweg+Teubner Verlag. doi:10.1007/978-3-663-02549-8_1.
  • Tomov R, Trencheva K, Trenchev G, Çota E, Ramadhi A, Ivanov B, Kenis M. 2009. Non-indigenous insects and their threat to biodiversity and economy in Albania, Bulgaria and Republic of Macedonia. p. 112.
  • Uka R. 1990. Morphological and bioecological study and parasitism of two olive scales of Pollinia pollini (Costa) and Leucaspis riccae Targ. Greece and Albania [PhD thesis]. Agricultural University of Athens, p. 167.
  • Unwin D. 2001. A key to the families of British bugs (Insecta, Hemiptera). Shrewsbury, UK: FSC Publications.
  • Whittaker RJ, Willis KJ, Field R. 2001. Scale and species richness: towards a general, hierarchical theory of species diversity. Journal of Biogeography. 28(4):453–470. doi:10.1046/j.1365-2699.2001.00563.x.
  • Yaseen T, Drago S, Valentini F, Elbeaino T, Stampone G, Digiaro M, D'onghia AM. 2015. On-site detection of Xylella fastidiosa in host plants and in” spy insects” using the real-time loop-mediated isothermal amplification method. Phytopathologia Mediterranea. 488–496. doi:10.14601/Phytopathol_Mediterr-15250.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.