Skip to main content Skip to main navigation menu Skip to site footer
Type: Article
Published: 2023-01-12
Page range: 122-136
Abstract views: 951
PDF downloaded: 36

First molecular identification of Suillia gigantea (Meigen, 1830) (Diptera: Heleomyzidae)

1Department of Forest Ecology, Forest Research Institute, Sękocin Stary, Braci Leśnej 3, 05-090 Raszyn, Poland
Institute of Environmental Biology, Wrocław University of Environmental and Life Sciences, Kożuchowska 5b, 51-631, Wrocław, Poland.
1Department of Forest Ecology, Forest Research Institute, Sękocin Stary, Braci Leśnej 3, 05-090 Raszyn, Poland
3Pisz Forest District, Gdańska 24, 12-200 Pisz, Poland
Department of Forest Ecology, Forest Research Institute, Sękocin Stary, Braci Leśnej 3, 05-090 Raszyn, Poland
Diptera molecular methods protection of truffle orchards Tuber aestivum truffle fly

Abstract

In 2017, the presence of the fly Suillia gigantea (Meigen, 1830) was noted in Poland, after many years of research related to the ecology of insects associated with the fruiting bodies of hypogeous fungi. Finally, in 2020, after further studies, the distribution of the truffle fly in Poland was confirmed. Six adults were reared from larvae inhabiting the fruiting bodies of Burgundy truffle (Tuber aestivum Vittad. (1831)). The fungi were harvested in southern Poland. Morphological and genetic analyses of the insect specimens were performed. For the first time, the DNA sequence of this fly species was isolated. This is the first record of S. gigantea in Poland, although it has already been reported from neighbouring countries. The development of S. gigantea, also known as the truffle fly, is associated with hypogeous fungi, mainly belonging to the genus Tuber P. Micheli ex F.H. Wigg. (1780). The diptera larvae develop inside the fruiting bodies. This type of damage causes great losses in truffle production. Containment of these losses is of great interest to the truffle industry. Knowledge of truffle-inhabiting insects is crucial for the development of effective methods to protect truffle crops in Europe.

 

References

  1. Allen, K. & Bennett, J.W. (2021) Tour of truffles: Aromas, aphrodisiacs, adaptogens, and more. Mycobiology, 49 (3), 201–212. https://doi.org/10.1080/12298093.2021.1936766
    Amano, K. (1985) Breeding of the house fly, Musca domestica (Diptera: Muscidae), in fresh dung of cattle fed on pasture grass. Applied Entomology and Zoology, 20 (2), 143–150. https://doi.org/10.1303/aez.20.143
    Arzone, A. (1970) Reperti ecologici ed etologici di Liodes cinnamomea Panzer vivente su Tuber melanosporum Vittadini (Coleoptera Staphylinoidea). Annali della Facoltà di Sciènze Agrarie della Università Degli Studi di Torino, 5, 317–357. [in Italian]
    Arzone, A. (1971) Nuovi reperti sulla biologia di Liodes cinnamomea Panzer in Tuber magnatum Pico (Coleoptera, Staphylinoidea). Allionia: Bollettino dell’Instituto ed Orto Botanico dell’Universitaà di Torino, 17, 121–129. [in Italian]
    Bährmann, R. & Adaschkiewitz, W. (2003) Beitrag zur Ökologie und Fauna der Heleomyzidae Mitteldeutschlands (Insecta: Diptera). Faunistische Abhandlungen, Dresden, 24, 185–204. [in German]
    Bajaj, S.R., Marathe, S.J., Grebenc, T., Zambonelli, A. & Shamekh, S. (2021) First report of European truffle ectomycorrhiza in the semi–arid climate of Saudi Arabia. 3 Biotech, 11 (1), 1–9. https://doi.org/10.1007/s13205-020-02559-w
    Baz, A., Cifrián, B., Díaz-Äranda, L.M. & Martín-Vega, D. (2007) The distribution of adult blowflies (Diptera: Calliphoridae) along an altitudinal gradient in Central Spain. Annales de la Societé Entomologique de France, 43, 289–296. https://doi.org/10.1080/00379271.2007.10697524
    Benucci, G.M.N., Bonito, G., Falini, L.B., Bencivenga, M. & Donnini, D. (2012) Truffles, timber, food, and fuel: sustainable approaches for multi-cropping truffles and economically important plants. In: Zambonelli, A. & Bonito, G. (Eds.), Edible Ectomycorrhizal Mushrooms. Soil Biology. Vol. 34. Springer, Berlin, Heidelberg, pp. 265–280. https://doi.org/10.1007/978-3-642-33823-6_15
    Bratek, Z., Papp, L., Merkl, O. & Takács, V. (1992) Főld alatti Gombákon rovarok. Mikológiali Közlemények, 31 (1–2), 55–66. [in Hungarian]
    Byk, A., Mokrzycki, T., Rosa-Gruszecka, A., Tylkowski, S. & Zamojski, M. (2016) Grzybolcowate (Bolboceratidae) i wygonakowate (Ochodaeidae) - aktywność, wymagania ekologiczne i metody obserwacji. Studia i Materiały Centrum Edukacji Przyrodniczo-Leśnej w Rogowie, 49A (4), 124–141. [in Polish]
    Čejka, T., Isaac, E.L., Oliach, D., Martínez-Peña, F., Egli, S., Thomas, P., Trnka, M. & Büntgen, U. (2022) Risk and reward of the global truffle sector under predicted climate change. Environmental Research Letters, 17 (2), 024001. https://doi.org/10.1088/1748-9326/ac47c4
    Coutin, R. (1983) Truffle flies [Suillia fuscicornis, Suillia gigantea, Tuber melanosporum]. Bulletin de la Federation Nationale des Producteurs de Truffes, 6, 17–21. [in French]
    Czerny, L. (1924) Monographie der Helomyziden (Dipteren). Abhandlungen der Zoologisch-Botanischen Gesellschaft in Wien, 15 (1), 1–166. [in German]
    De Bree, E. (2022) Acalyptratae flies (Diptera: Schizophora) from vinegar traps from the Valbona VALLEY National Park (Albania). Acta Entomologica Serbica, 27 (1), 91–97. https://doi.org/10.5281/zenodo.6579705
    Di Santo, P. (2013) Interazioni pianta–micorriza–insetto: il modello Quercus sp.—Tuber sp.—Leiodes cinnamomea (Panzer). Dottorato di Ricerca in “Difesa e Qualita delle Produzioni Agro-Alimentari e Forestali”, Universita degli Studi del Molise, pp. 27–55. [in Italian]
    Dvořáková, K., Dvořák, L., Kukaniia, A. & Oboňa, J. (2020) Selected Diptera from beer traps in three biotopes at Klyucharky village near Mukachevo town (Western Ukraine). Biodiversity & Environment, 12 (2), 11–18.
    Elkhateeb, W.A. & Daba, G.M. (2021) Attacks on the precious truffles by useful and harmful invadors. Biomedical Research and Clinical Reviews, 3 (4), 1–4. https://doi.org/10.31579/2692-9406/048
    Fallén, C.F. (1823) Geomyzides Sveciae. Berlingianis, Lundae [Lund], 8 pp.
    Farinha, A., Dourado, C.G., Centeio, N., Oliveira, A.R., Dias, D. & Rebelo, M.T. (2014) Small bait traps as accurate predictors of dipteran early colonizers in forensic studies. Journal of Insect Science, 14 (77), 1–16. https://doi.org/10.1093/jis/14.1.77
    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. Molecular Marine Biology and Biotechnology, 3, 294–299.
    García-Montero, L.G., Pérez-Andueza, G., Díaz, P. & Manjón, J.L. (2004) Contribution to ecological knowledge of herbivorous flies (Diptera: Heleomyzidae) on truffles in Spain. Boletín de Sanidad Vegetal, Plagas, 30 (4), 679–683.
    Gorodkov, K.B. (1970) 80. Semya Helomyzidae (Heleomyzidae). In: Stackelberg, A.A. & Nartshuk, E.P. (Eds.), Opredelitel nasekomykh evropeiskoi chasti SSSR. Vol. 5 (2). Dvukrylye, blokhi. Nauka, Leningrad, pp. 306–325. [In Russian]
    Gorodkov, K.B. (1984) Family Heleomyzidae (Helomyzidae). In: Soós, Á. & Papp, L. (Eds.), Catalogue of Palaearctic Diptera. Vol. 10. Clusiidae—Chloropidae. Akadémiai Kiadó, Budapest, pp. 15–45.
    Hall, T.A. (1999) BioEdit: a user-friendly biological sequence alignment editor and analysis program for Windows 95/98/NT. Nucleic Acids Symposium Series, 41, 95–98.
    Haselböck, A. (2012) Dryomyzidae? Available from: https://diptera.info/forum/viewthread.php?forum_id=5&thread_id=46108 (accessed 11 May 2022)
    Haselböck, A. (2022) Suillia gigantea. Available from: http://naturspaziergang.de/Zweifluegler/Suillia_gigantea.htm (accessed 11 May 2022)
    Hilszczańska, D., Siebyła, M., Horak, J., Król, M., Podsadni, P., Steckiewicz, P. & Turło, J. (2016) Comparison of Chemical Composition in Tuber aestivum Vittad. of Different Geographical Origin. Chemistry & Biodiversity, 13 (12), 1617–1629. https://doi.org/10.1002/cbdv.201600041
    Hochberg, M.E., Bertault, G., Poitrineau, K. & Janssen, A. (2003) Olfactory orientation of the truffle beetle, Leiodes cinnamomea. Entomologia Experimentalis et Applicata, 109, 147–153. https://doi.org/10.1046/j.1570-7458.2003.00099.x
    Huchet, J-B., Azoulay, L., Danay, O., Ezov, N., Perman, I., Friedman, A-L. & Shaltiel-Harpaz, L. (2022) Ochodaeus berytensis Petrovitz (Coleoptera: Ochodaeidae), a new pest of the truffle Tuber aestivum in Upper Galilee, Israel. Journal of Applied Entomology, 146, 911–916. https://doi.org/10.1111/jen.13027
    Jaillard, B., Oliach, D., Sourzat, P. & Colinas, C. (2016) Soil characteristics of Tuber melanosporum habitat. In: Zambonelli, A., Iotti, M. & Murat, C. (Eds.), True Truffle (Tuber spp.) in the World. Soil Biology. Vol. 47. Springer, Cham, pp. 169–190. https://doi.org/10.1007/978-3-319-31436-5_11
    Kirk, H., Dorn, S. & Mazzi, D. (2013) Molecular genetics and genomics generate new insights into invertebrate pest invasions. Evolutionary Applications, 6, 842–856. https://doi.org/10.1111/eva.12071
    Kumar, S., Stecher, G., Li, M., Knyaz, C. & Tamura, K. (2018) MEGA X: Molecular Evolutionary Genetics Analysis across Computing Platforms. Molecular Biology and Evolution, 35 (6), 1547–1549. https://doi.org/10.1093/molbev/msy096
    Leerhoei, F. (2020) DNAmark Project. Available from: https://www.ncbi.nlm.nih.gov/nuccore/MT862392 (accessed 24 May 2022)
    Leonardi, M., Iotti, M., Pacioni, G., Hall, I.R. & Zambonelli, A. (2021) Truffles: Biodiversity, ecological significances, and biotechnological applications. In: Abdel-Azeem, A.M., Yadav, A.N., Yadav, N. & Usmani, Z. (Eds.), Industrially Important Fungi for Sustainable Development. Fungal Biology, 107–146. Springer, Cham, pp. 107–146. https://doi.org/10.1007/978-3-030-67561-5_4
    Meigen, J.W. (1830) Systematische Beschreibung der bekannten europäischen zweiflügeligen Insekten. Vol. 6. Schutz, Hamm, IV+ 401 pp.
    Menta, C. & Pinto, S. (2016) Biodiversity and Ecology of Soil Fauna in Relation to Truffle. In: Zambonelli, A., Iotti, M. & Murat, C. (Eds.), True Truffle (Tuber spp.) in the World. Soil Biology, Vol. 47. Springer, Cham, pp. 319–331. https://doi.org/10.1007/978-3-319-31436-5_19
    Miquel, M.E. &Vasko, B.N. (2014) A study of the association of Odonteus armiger (Scopoli, 1772) (Coleoptera: Geotrupidae) with the European rabbit. Journal of Entomology and Zoology Studies, 1 (6), 138–146.
    Molinier, V., Peter, M., Stobbe, U. & Egli, S. (2016) The Burgundy truffle (Tuber aestivum syn. uncinatum): A truffle species with a wide habitat range over Europe. In: Zambonelli, A., Iotti, M. & Murat, C. (Eds.), True Truffle (Tuber spp.) in the World. Soil Biology. Vol. 47. Springer, Cham, pp. 33–47. https://doi.org/10.1007/978-3-319-31436-5_3
    Morcillo, M., Sánchez, M. & Vilanova, X. (2015) Truffle farming today, a comprehensive world guide. Micologia Forestal & Aplicada, Barcelona, 352 pp.
    Murtaza, G., Ramzan, M., Bilal, H., Ejaz, A., Khan, M.A.A., Riaz, T. & Waqas, M. (2021) Monitoring of fruit fly, Bactrocera zonata (Diptera: Tephritidae) population by installing traps in mango orchard Bahawalnagar, Pakistan. Journal of Applied Research in Plant Sciences, 2 (2), 148–151. https://doi.org/10.38211/joarps.2021.2.2.19
    Navarro-Llopis, V., López, B., Primo, J., Martín-Santafé, M. & Vacas, S. (2021) Control of Leiodes cinnamomeus (Coleoptera: Leiodidae) in Cultivated Black Truffle Orchards by Kairomone-Based Mass Trapping, Journal of Economic Entomology, 114 (2), 801–810. https://doi.org/10.1093/jee/toaa317
    Ori, F., Trappe, J., Leonardi, M., Iotti, M. & Pacioni, G. (2018) Crested porcupines (Hystrix cristata): mycophagist spore dispersers of the ectomycorrhizal truffle Tuber aestivum. Mycorrhiza, 28 (5), 561–565. https://doi.org/10.1007/s00572-018-0840-1
    Pacioni, G., Bologna, M.A. & Laurenzi, M. (1991) Insect attraction by Tuber: a chemical explanation. Mycological Research, 95, 1359–1363. https://doi.org/10.1016/S0953-7562(09)80385-7
    Păcurar, H., Dȋrja, M., Păcurar, I., Roşca, S., Bilaşco, Ş. & Negruşier, C. (2019) Ecological influences on Tuber aestivum distribution in the subcarpathian region of Transylvania. Bulletin of the University of Agricultural Sciences & Veterinary Medicine Cluj-Napoca. Agriculture, 76 (2). [published online] https://doi.org/10.15835/buasvmcn-agr:2019.0036
    Pegler, D.N. (2003) Useful fungi of the world: morels and truffles. Mycologist, 17 (4), 174–175. https://doi.org/10.1017/S0269915X04004021
    Pérez-Andueza, G., Morcillo, M., Sanchez, M. & Vilanova, X. (2015) Truffles’ flies and beetles–Suillia and Leiodes. In: Morcillo, M., Sanchez, M. & Vilanova, X. (Eds.), Truffle Farming Today, a Comprehensive World Guide. Micoflora, Barcelona, pp. 285–299.
    Pérez-Andueza, G. (2016) Entomofauna asociada a la trufa negra (Tuber melanosporum Vittadini) cultivada en España Central: incidencia y valoración de las principales especies micófagas (Coleoptera, Leiodidae; Diptera, Heleomyzidae). Ph.D dissertation, Universidad de Salamanca, Salamanca, pp. 4–20. [in Spanish]
    Pinto, S., Gatti, F., García-Montero, L.G. & Menta, C. (2017) Does soil fauna like truffles just as humans do? One-year study of biodiversity in natural brûlés of Tuber aestivum Vittad. Science of The Total Environment, 584, 1175–1184. https://doi.org/10.1016/j.scitotenv.2017.01.181
    Preisler, J. & Roháček, J. (2012) New faunistic records of Heleomyzidae (Diptera) from the Czech Republic and Slovakia, and notes on the distribution of three rare Suillia species. Časopis Slezského zemského Muzea Opava (A), 61, 85–90.
    Preisler, J., Roháček, J. & Tkoč, M. (2022) The fauna of Heleomyzidae (Diptera) in the Gemer area (Central Slovakia). Acta Musei Silesiae, Scientiae Naturales, 71, 131–181. https://doi.org/10.2478/cszma-2022-0007
    Reyna, S. & Garcia-Barreda, S. (2014) Black truffle cultivation: a global reality. Forest systems, 23 (2), 317–328. https://doi.org/10.5424/fs/2014232-04771
    Rivera, C.S., Blanco, D., Marco, P., Oria, R. & Venturini, M.E. (2011) Effects of electron-beam irradiation on the shelf life, microbial populations and sensory characteristics of summer truffles (Tuber aestivum) packaged under modified atmospheres. Food microbiology, 28 (1), 141–148. https://doi.org/10.1016/j.fm.2010.09.008
    Robineau-Desvoidy, J.B. (1830) Essai sur les myodaires. Mémoires présentés par divers savans à l’Académie Royale des Sciences de l’Institut de France (Sciences Mathématiques et Physiques), 2 (2), 1–813.
    Rondani, C. (1856) Dipterologiae Italicae Prodromus. Vol. I. Genera italica ordinis Dipterorum ordinatim disposita et distincta et in familias et stirpes aggregata. A. Stocchi, Parmae [Parma], 226 + [2] pp. https://doi.org/10.5962/bhl.title.8160
    Rosa-Gruszecka, A., Gange, A.C., Harvey, D.J., Jaworski, T., Hilszczański, J., Plewa, R., Konwerski, S. & Hilszczańska, D. (2017a) Insect−truffle interactions—potential threats to emerging industries? Fungal Ecology, 25, 59−63. https://doi.org/10.1016/j.funeco.2016.10.004
    Rosa-Gruszecka, A., Hilszczańska, D., Gil, W. & Kosel, B. (2017b) Truffle renaissance in Poland—history, present and prospects. Journal of Ethnobiology and Ethnomedicine, 13 (36), 1–1. https://doi.org/10.1186/s13002-017-0163-x
    Roslin, T., Somervuo, P., Pentinsaari, M., Hebert, P., Agda, J., Ahlroth, P., Anttonen, P., Aspi, J., Blagoev, G., Blanco, S., Chan, D., Clayhills, T., deWaard, J., deWaard, S., Elliot, T., Elo, R., Haapala, S., Helve, E., Ilmonen, J., Hirvonen, P., Ho, C., Itamies, J., Ivanov, V., Jakovlev, J., Juslen, A., Jussila, R., Kahanpaa, J., Kaila, L., Jari, P., Kakko, A., Kakko, I., Karhu, A., Karjalainen, S., Kjaerandsen, J., Koskinen, J., Laasonen, E.M., Laasonen, L., Laine, E., Lampila, P., Levesque-Beaudin, V., Lu, L., Lahteenaro, M., Majuri, P., Malmberg, S., Manjunath, R., Martikainen, P., Mattila, J., McKeown, J., Metsala, P., Miklasevskaja, M., Miller, M., Miskie, R., Muinonen, A., Veli, M., Naik, S., Nikolova, N., Nupponen, K., Ovaskainen, O., Osterblad, I., Paasivirta, L., Pajunen, T., Parkko, P., Paukkunen, J., Penttinen, R., Perez, K., Pohjoismaki, J., Prosser, S., Raekunnas, M., Rahulan, M., Rannisto, M., Ratnasingham, S., Raukko, P., Rinne, A., Rintala, T., Miranda Romo, S., Salmela, J., Salokannel, J., Savolainen, R., Schulman, L., Sihvonen, P., Soliman, D., Sones, J., Steinke, C., Stahls, G., Tabell, J., Tiusanen, M., Varkonyi, G., Vesterinen, E.J., Viitanen, E., Vikberg, V., Viitasaari, M., Vilen, J., Warne, C., Wei, C., Winqvist, K., Zakharov, E. & Mutanen, M. (2022) A molecular-based identification resource for the arthropods of Finland. Molecular Ecology Resources, 22 (2), 803–822. https://doi.org/10.1111/1755-0998.13510
    Sánchez-Arroyo, H. & Capinera, J.L. (2017) House fly: Musca domestica. Featured Creatures. Retrieved 20 March 2020. Available from: https://entnemdept.ufl.edu/creatures/urban/flies/house_fly.htm (accessed 14 December 2022)
    Séguy, E. (1934) Diptères (Brachycères) (Muscidae Acalypterae et Scatophagidae). In: Faune de France. Vol. 28. Paul Lechevalier et fils, 12, Rue de Tournon. Federation francaise des Sociétés naturelles, Office central de faunistique, Paris, pp. 1–832.
    Sharley, D.J., Pettigrove, V. & Parsons, Y.M. (2004) Molecular identification of Chironomus spp. (Diptera) for biomonitoring of aquatic ecosystems. Australian Journal of Entomology, 43, 359–365. https://doi.org/10.1111/j.1440-6055.2004.00417.x
    Sitta, N. & Süss, L. (2012) Insects parasitizing edible ectomycorrhizal mushrooms. In: Zambonelli, A. & Bonito, G. (Eds.), Edible Ectomycorrhizal Mushrooms. Soil Biology. Vol. 34. Springer, Berlin, Heidelberg, pp. 335–353. https://doi.org/10.1007/978-3-642-33823-6_19
    Sourzat, P. (2020) Truffle Cultivation in the South of France: Socioeconomic Characteristic. In: Pérez-Moreno, J., Guerin-Laguette, A., Arzú, R.F. & Yu, F.-Q. (Eds.), Mushrooms, Humans and Nature in a Changing World, Springer, Cham, pp. 321–339. https://doi.org/10.1007/978-3-030-37378-8_12
    Sulzbacher, M.A., Hamann, J.J., Fronza, D., Jacques, R.J.S., Giachini, A.J., Grebenc, T. & Antoniolli, Z.I. (2019) Ectomycorrhizal fungi in pecan orchards and the potential of truffle cultivation in Brazil. Ciência Florestal, 29, 975–987. https://doi.org/10.5902/1980509827581
    Thomas, P.W., Elkhateeb, W.A. & Daba, G. (2019) Truffle and truffle-like fungi from continental Africa. Acta Mycologica, 54 (2). [published online] https://doi.org/10.5586/am.1132
    Tuno, N., Sagara, N. & Okadome, T. (2003) Territorial behaviour of Suillia males on basidiocarps of Hebeloma radicosum in central Japan. The Mycologist, 17 (3), 122–125. https://doi.org/10.1017/S0269915X03002143
    Vahdatzadeh, M., Deveau, A. & Splivallo, R. (2015) The role of the microbiome of truffles in aroma formation: a meta-analysis approach. Applied and Environmental Microbiology, 81 (20), 6946–6952. https://doi.org/10.1128/AEM.01098-15
    Wei-Yun, C., Ting-Hsuan, H. & Shiuh-Feng, S. (2004) Molecular Identification of Forensically Important Blow Fly Species (Diptera: Calliphoridae) in Taiwan. Journal of Medical Entomology, 41 (1), 47–57. https://doi.org/10.1603/0022-2585-41.1.47
    Westwood, J.O. (1840) Order XIII. Diptera Aristotle. (Antliata Fabricius. Halteriptera Clairv.). In: An introduction to the modern classification of insects; founded on the natural habits and corresponding organisation of the different families. Synopsis of the genera of British insects. Longman, Orme, Brown, Green & Longmans, London, pp. 125–154. https://doi.org/10.5962/bhl.title.12455
    Worland, M.R., Block, W. & Grubor-Lajsic, G. (2000) Survival of Heleomyza borealis (Diptera, Heleomyzidae) larvae down to –60 °C. Physiological Entomology, 25, 1–5. https://doi.org/10.1046/j.1365-3032.2000.00159.x
    Woźnica, A.J. (2006) Three new species of the genus Suillia Robineau- Desvoidy, 1830 from the Neotropical Region (Diptera: Heleomyzidae). Annales Zoologici, 56 (4), 657–665.
    Woźnica, A.J. (2011) Report on Heleomyzidae and Trixoscelididae (Diptera: Muscomorpha) from the Gemer Region (Slovakia) collected by ATBI project the during the years 2008–2010. Dipteron, 27, 60–64.
    Woźnica, A.J., Bystrowski, C. & Richter, V.A. (2013) Fauna Europaea: Heleomyzidae. In: Beuk, P. & Pape, T. (Eds.), Fauna Europaea: Diptera. Fauna Europaea. Version June 2017. Available from: https://fauna-eu.org (accessed 11 May 2022)
    Woźnica, A.J & Kirk-Spriggs, A.H (2021) Heleomyzidae 98. In: Kirk-Spriggs, A.H. & Sinclair, B.J. (Eds.), Manual of Afrotropical Diptera. Vol. 3. Brachycera—Cyclorrhapha, excluding Calyptratae. Suricata 8. South African National Biodiversity Institute (SANBI), Pretoria, pp. 2131–2144.