Published October 31, 2025 | Version v1

Zoogeographic distribution and host plant relationships of Coccidae species in the Fergana valley, eastern Uzbekistan (Hemiptera: Coccomorpha)

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Kakhkhorova, Kholidakhon Rakhimjon qizi, Sobirov, Ozodbek Tojimatovich (2025): Zoogeographic distribution and host plant relationships of Coccidae species in the Fergana valley, eastern Uzbekistan (Hemiptera: Coccomorpha). Fragmenta entomologica 57 (2): 205-212, DOI: 10.13133/2284-4880/1805, URL: http://dx.doi.org/10.13133/2284-4880/1805

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References

  • Ben-Dov Y. 1993. A systematic catalogue of the soft scale insects of the world (Homoptera: Coccoidea: Coccidae). Gainesville, Florida: Sandhill Crane Press.
  • Bodenheimer F.S. 1935. Studies on the zoogeography and ecology of Palearctic Coccidae I -III. EOS, 10: 237-271.
  • Bodenheimer F.S. 1939. On the zoogeographical character of the coccid fauna of Central Asia. Proceedings of the Royal Entomological Society of London, 14: 9-12.
  • Bodenheimer F.S. 1947. Bibliography of F.S. Bodenheimer (1897-1947). ehovot: Jewish Agency for Palestine, Agricultural Research.
  • Chen L., Zhang W., Li H. 2022. The honeydew secretion of Coccus hesperidum and its effect on sooty mold development in greenhouse conditions. Crop Protection, 154, 105905. Doi: 10.1016/j.cropro.2021.105905.
  • Danzig E.M. 1993. The scale insects of the fauna of Russia and adjacent countries. Saint Petersburg, Zoological Institute.
  • Danzig E.M. 1997. Intraspecific variation of taxonomic charac- ters. In: Ben-Dov Y., Hodgson C.J. (eds), Soft scale insects: Their biology, natural enemies and control, Vol. 7A. Amsterdam, Elsevier, pp. 305-318.
  • Dilley B.J., Davies D., Glass T., Bond A.L., Ryan P.G. 2020. Severe impact of introduced scale insects on island trees threatens endemic finches at the Tristan da Cunha archi- pelago. Biological Invasions 23: 543-553. Doi: https://doi. org/10.1016/j.biocon.2020.108761.
  • Dos Santos M.M., Carvalho Reis L.A., Ferreira E.A., Rocha de Souza M.W., Gomes J.B., Moreira da Silva I., Soares M.A. 2022. Physiological aspects of Olea europaea (Oleaceae) attacked by Saissetia oleae (Hemiptera: Coccidae). Florida Entomologist, 105(3): 206-210. Doi: https://doi. org/10.1653/024.105.0305
  • Emeljanov A.F .1974. Proposals on the classification and nomen- clature of areals. Entomological Review, 53: 11-26.
  • Fernandez R., Gomez A., Mazzeo G. 2024.Adaptation of Saissetia oleae to non-native habitats under climate change scenarios. Insects, 15: 198. Doi: https://doi.org/10.3390/insects15040198
  • Garcia Morales M., Denno B.D., Miller D.R., Miller G.L., Ben-Dov Y., Hardy N.B. 2016. ScaleNet: A literature-based model of scale insect biology and systematics. Database 2016\:bav118. Doi: https://doi.org/10.1093/database/ bav118
  • Garonna A.P., Pellizzari G., Russo A. 2018. Scale insects (Hemiptera: Coccomorpha) of economic importance in Italy. EPPO Bull, 48: 123-135.
  • Gertsson C.-A. 2011. Fynd av kontinentala och kosmopolitiska skoldlusarter (Hemiptera, Coccoidea) i Sydsverige. FaZett, 24: 25-29.
  • Gertsson C.-A. 2023. Climate warming and the spread of invasive scale insects in northern Europe. Insect Science and Ecology, 59: 78-91.
  • Gonzalez R., Torres J.A., Medina A. 2023. Predicting potential distribution of Saissetia oleae under climate change using MaxEnt. Environmental Entomology, 52: 99-108.
  • Hijmans R.J, Van Etten J, Cheng J., Mattiuzzi M., Sumner M., Greenberg J.A., Shortridge A. 2011. raster: Geographic Data Analysis and Modeling. R package version. Available from: https://CRAN.R-project.org/package=raster
  • Ilias F., Hammadi F. 2017. Population dynamics of Saissetia oleae (Olivier) (Hemiptera: Coccidae) on olives. Open Access Library Journal, 4: 63805. Doi: https://doi.org/10.4236/oalih.1103805
  • Jones M.E., Smith D.J. 2023. Advances in biological control of Coccus hesperidum in greenhouse systems. Biological Control,180: 105087.
  • Hodgson C.J. 1994. The scale insect family Coccidae: An identification manual. Wallingford: CAB International.
  • Holt B.G., Lessard J.P., Borregaard M.K. 2013. An update of Wallace's zoogeographic regions of the world. Science, 339(6115):74-78.
  • Joshi S. 2019. Taxonomy and biodiversity of soft scales (Hemiptera: Coccidae). In: Chakravarthy A.K. (ed.). Indian insects: Diversity and science. Springer, Singapore, pp. 76-100.
  • Kakhkhorova Kh. 2025. ScaleNet. ScaleNet Database. Available from: https://scalenet.info/ Accessed 12 June 2025.
  • Kim H., Lopez M.L. 2025. Urban heat islands and invasive scale insect dynamics. Environmental Entomology, 54: 23-31.
  • Kozar F., Drozdjak J. 1986. Some questions concerning the knowledge of Palaearctic Coccoidea (Homoptera). Bollettino del Laboratorio di Entomologia Agraria "Filippo Silvestri" (Supplement), 43: 97-105.
  • Kozar F., Ben-Dov Y. 1997. Zoogeographical considerations and status of knowledge of the family. In: Ben-Dov Y, Hodgson CJ, editors. Soft scale insects: Their biology, natural enemies and control, Vol. 7A. Amsterdam: Elsevier. pp. 247-255.
  • Kozar F. 2009. Scale insects and climate change: Risk and impacts. Acta Phytopathologica et Entomologica Hungarica, 44: 233-243. Doi: 10.1556/APhyt.44.2009.2.19.
  • Kozar F., Szita E., Konczne Benedicty Z. 2013. Potential spread of scale insects under future climatic scenarios. Archives of Phytopathology and Plant Protection, 46: 1178-1186.
  • Kumar V., Singh S., Rajput N. 2023. Monitoring Pulvinaria floccifera infestations in ornamentals using remote sensing. Precission Agriculture, 24: 367-378.
  • Lagowska B. 2001. Zoogeographical analysis of the Polish scale insect fauna. Bollettino di Zoologia Agraria e di Bachicoltu- ra, 33: 239-248.
  • Lopez M.L., Hernandez C., Prieto C. 2021. Phenological development of Pulvinaria floccifera under greenhouse conditions in Spain. Journal of Insect Science, 21: 14.
  • Malumphy C., Halstead A.J., Salisbury A. 2012. Invasive scale insects in Europe: Current status and threats. EPPO Bulletin, 42: 121-128.
  • Miller D.R., Miller G. 2005. Scale insects: Identification, biology, and control. USDA Agricultural Handbook.
  • Moghaddam M., Watson G.W. 2024. The scale insects of Iran (Hemiptera: Coccomorpha) part 3: The soft scales (Coccidae) and other families. Zootaxa, 5542: 1-202. Doi: 10.11646/zootaxa.5542.1.1
  • Pellizzari G., Chadzidimitriou E., Milonas P.G, Stathas G.J., Kozar F. 2015. Checklist and zoogeographic analysis of the scale insect fauna (Hemiptera: Coccomorpha) of Greece. Zootaxa, 4012: 57-77. Doi: 10.11646/zootaxa.4012.1.3
  • Qaxhorova K.R., Zokirov K., Sobirov O.T., Turgunova O., Rakhimova M. 2024. On the zoogeographic analysis of species of the Coccidae family. In: Proceedings of the International Scientific and Practical Conference on Climate Change, Problems and Prospects of Rational Use of Nature. Fergana: Fergana State University.
  • Qaxhorova K.R., Sobirov O.T., Zokirov O.K, Turgunova O., Rakhimova M. 2025. On the analysis of food plants of species of the Coccidae family distributed in Andijan region In: Proceedings of the International Scientific and Practical Conference on Climate Change, Problems and Prospects of Rational Use of Nature. Fergana: Fergana State University.
  • Sobirov O.T., Zokirov K., Qakhorova K.R., Rogozhnikova O.A., Du'smatova O.E. 2024. Research region. On scale insects (Homoptera: Coccinea: Coccidae) on ornamental and fruit plants in Andijan. Bulletin of Khorezm Mamun Academy 5: 126-135.
  • Sobirov O.T., Isakov I.B., Qakhorova X.R., Khafizddinov M.F., Turg'unova O.Sh. 2025. Zoogeographic analysis of the fauna of scale insects found in the Andijan region (Uzbekistan). Science Republic. Kokand State Pedagogical Institute. Natural Science, 4.
  • Sobirov O.T., Kakhkhorova K.R., Zokirova M.S., Turg'unova O.Sh., Rakhimova M.U. 2025. On the cushion-shaped pseudo-scales distributed on fruit and ornamental plants in Andijan region. Bulletin of Khorezm Mamun Academy 2025 (3/1).
  • Tanaka H., Kamitani S. 2022. Ecological traits of Pulvinaria floccifera in urban greenhouses in Applied Entomology and Zoology, 57: 87-96. Doi: https://doi.org/10.1007/s13355- 021-00779-4
  • Villanueva R.T., Setamou M., French J.V. 2020. Host range and distribution of Coccus hesperidum in ornamental nurseries. Journal of Economic Entomology, 113: 2784-2792.
  • Wang J., Chen L, Zhao Y. 2024. Climate-driven range expansion of soft scale insects in Eastern Asia. Journal of Pest Science, 97: 345-360.
  • Wickham H. 2016. ggplot2: Elegant graphics for data analysis. New York: Springer. Doi: https://doi.org/10.1007/978-3-319- 24277-4
  • Wu Q., Lin J, Huang S. 2021. Trade and transportation as drivers of scale insect dispersal: A global risk analysis. Ecological Modelling, 460: 109747.