Morphology and Development of Saprophagous Scuttle Fly, Spiniphora genitalis Schmitz, 1940 (Diptera: Phoridae) Larvae at Indoor Ambient Temperatures

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Reena Abd Rashid
Raja M. Zuha

Abstract

The oriental scuttle fly, Spiniphora genitalis Schmitz, 1940 (Diptera: Phoridae), was first discovered from Peninsular Malaysia as a specialised decomposer of mollusc carrion but its occurrences on vertebrate carrion suggest that this species could also be utilised as a forensic indicator. However, the larval morphology and development of S. genitalis remain unexplored. In this study, the colony of S. genitalis was reared in the laboratory at ambient temperature range (20.0oC–25.5oC) and relative humidity (71.0%–94.5%) using decomposing beef liver as larval food source. Larval body length was measured at every 6 h and 18 h interval until pupariation and subsequently described. The third instar larva of S. genitalis can be characterised by its fleshy, but ventrally flattened body with posterior tubular extension. The abdominal segments are covered with tubercles and spinulose formations and interestingly, three distinct larval variations were also detected. The transitions from metapneustic first instar to amphipneustic second and third instar larvae were also described according to the characteristics of cephalopharyngeal skeleton, anterior spiracle and posterior spiracle. The lifecycle of S. genitalis reported in this study based on it developmental stages were 23 h–27 h (egg), 162 h–358 h (larva) and 240 h–341 h (pupa). This study established the diagnostic features of S. genitalis which can be useful in forensic analysis and as precursors to the ground plan of Spiniphora larvae taxonomy. The complete growth of S. genitalis larvae on beef liver indicated that the role of this species has been expanded from a specialised mollusc carrion decomposer to a potential forensic indicator.

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How to Cite
Reena Abd Rashid, & Raja M. Zuha. (2025). Morphology and Development of Saprophagous Scuttle Fly, Spiniphora genitalis Schmitz, 1940 (Diptera: Phoridae) Larvae at Indoor Ambient Temperatures. Tropical Life Sciences Research, 36(1), 205-221. https://doi.org/10.21315/tlsr2025.36.1.11
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Original Article

References

Beaver R. (1987). Biological studies of non-muscoid flies (Diptera) bred from mollusc carrion in Southeast Asia. Japanese Journal of Sanitary Zoology 38(3): 187–195. https://doi.org/10.7601/mez.38.187

Boonchu N, Sukontason K, Sukontason K L, Chaiwong T, Piangjai S and Vogtsberger R C. (2004). Observations on first and second-instar larvae of Megaselia scalaris (Loew) (Diptera: Phoridae). Journal of Vector Ecology 29(1): 79–83.

Bugelli V, Campobasso C P, Verhoff M A and Amendt J. (2017). Effects of different storage and measuring methods on larval length values for the blow flies (Diptera: Calliphoridae) Lucilia sericata and Calliphora vicina, Science and Justice 57(3): 159–164. https://doi.org/10.1016/j.scijus.2016.10.008

Colyer C N. (1955). A new species of Spiniphora (Dipt., Phoridae) from Ceylon: Notes on Spiniphora genitalis Schmitz. Entomologist’s Monthly Magazine 91: 48–50.

Day D M and Wallman J F. (2008). Effect of preservative solutions on preservation of Calliphora augur and Lucilia cuprina larvae (Diptera: Calliphoridae) with implications for post-mortem interval estimates. Forensic Science International 179(1): 1–10. https://doi.org/10.1016/j.forsciint.2008.04.006

Disney R H L. (1991). The aquatic Phoridae (Diptera). Fauna Entomologica Scandinavica 22(2): 171–191. https://doi.org/10.1163/187631291X00048

Disney R H L. (1994). Scuttle flies: The Phoridae. London: Chapman & Hall. https://doi.org/10.1007/978-94-011-1288-8

Disney R H L. (2023). A new species of Spiniphora Malloch (Diptera: Phoridae) from Sri Lanka and Thailand. Entomologist’s Monthly Magazine 159: 194–196. https://doi.org/10.31184/M00138908.1593.4158

Disney R H L and Bänziger H. (2009). Further records of scuttle flies (Diptera: Phoridae) imprisoned by Aristolochia baenzigeri (Aristolochiaceae) in Thailand. Mitteilungen der Schweizerischen Entomologischen Gesellschaft 82: 233–251. https://doi.org/10.5169/seals-402992

El Hadi Mohamed R A, Galil F M A A, Al-Keridis L A, Al-Shuraym L A, Al-Mekhlafi F A and Alhag S K. (2021). Effect of diets on the developmental rate of calliphorid fly of forensic importance Chrysomya megacephala (Fabricius, 1794). Journal of Asia-Pacific Entomology 24(3): 832–836. https://doi.org/10.1016/j.aspen.2021.07.007

Feng D X and Liu G C. (2012a). Morphology of immature stages of Megaselia spiracularis Schmitz (Diptera: Phoridae). Microscopy Research and Technique 75(9): 1297–1303. https://doi.org/10.1002/jemt.22064

Feng D X and Liu G C. (2012b). Morphology of immature stages of Dohrniphora cornuta (Bigot) (Diptera: Phoridae). Microscopy Research and Technique 75(11): 1528–1533. https://doi.org/10.1002/jemt.22096

Feng D X and Liu G C. (2012c). Morphology of immature stages of Diplonevra peregrine (Wiedemann (Diptera: Phoridae). Microscopy Research and Technique 75(10): 1425–1431. https://doi.org/10.1002/jemt.22085

Ferrar P A. (1987). A guide to the breeding habits and immature stages of Diptera Cyclorrhapha. Entomonograph (Part 1). Vol. 8. Leiden/Copenhagen: EJ Brill/Scandinavian Science Press, 284–287. https://doi.org/10.1163/9789004533936

Keilin D. (1911). Recherches sur la morphologie larvaire des Dipterès du genre Phora. Bulletin Scientifique de la France et de la Belgique 45: 27–88.

Lee Y M, Disney R H L and Zuha R M. (2021). Development of forensically important scuttle fly, Megaselia spiracularis Schmitz (Diptera: Phoridae) at ambient temperatures with distinguishing features of the larval instars. Journal of Asia-Pacific Entomology 24(3): 858–865. https://doi.org/10.1016/j.aspen.2021.07.013

Liu G C. (2001). A taxonomic study of Chinese phorid flies (Diptera: Phoridae). Shenyang: NEUPress.

Matthes K, Zehner R and Amendt J. (2021). Influence of storage on larval length and age determination of the forensically important blow fly Lucilia sericata (Diptera: Calliphoridae). Science and Justice 61(5): 579–585. https://doi.org/10.1016/j.scijus.2021.06.005

Niederegger S, Pastuschek J and Mall G. (2010). Preliminary studies of the influence of fluctuating temperatures on the development of various forensically relevant flies. Forensic Science International 199: 72–78. https://doi.org/10.1016/j.forsciint.2010.03.015

Nishida G M. (2002). Hawaiian terrestrial arthropod checklist, 4th ed. Bishop Museum Technical Report No. 24. Bishop Museum, Honolulu. 262 pp.

Oldroyd H. (1964). The natural history of flies. London: Weidenfeld and Nicholson.

Oliva A. (2004). Insects of forensic interest in Buenos Aires (Argentina). Addenda et corrigenda. I. Phoridae (Diptera: Brachycera), Physis (Buenos Aires), Secc. C. 60(138–139): 45–50.

Omar B, Marwi M A, Mansar A H, Rahman M S and Oothuman P. (1994). Maggots of Synthesiomyia nudiseta (Wulp) (Dipetra: Muscidae) as decomposers of corpses found indoors in Malaysia. Tropical Biomedicine 11: 145–148.

Rotheray G E. (2019). Ecomorphology of Cyclorrhaphan larvae (Diptera). Cham, Switzerland: Springer Nature. https://doi.org/10.1007/978-3-319-92546-2

Schmitz H. (1940). Eine neue ostasiatische Spiniphora (Phoridae, Diptera). Natuurhistorisch Maandblad 29(8): 78–79.

Sukontason K L, Sukontason K, Lertthamnongtham S and Boonchu N. (2002). Surface ultrastructure of third-instar Megaselia scalaris (Diptera: Phoridae). Memórias do Instituto Oswaldo Cruz 97(5): 663–665. https://doi.org/10.1590/s0074-02762002000500014

Sukontason K L, Sukontason K, Ngern-Klun R, Sripakdee D and Piangjai S. (2004). Differentiation of the third instar of forensically important fly species in Thailand. Annals of the Entomological Society of America 97(6): 1069–1075. https://doi.org/10.1603/0013-8746(2004)097[1069:DOTTIO]2.0.CO;2

Teskey H J. (1981). Morphology and terminology - Larvae. In J F McAlpine, B V Peterson, G E Shewell, H J Teskey, J R Vockeroth and D M Wood. (eds.), Manual of Nearctic diptera (Vol. 1). Quebec: Canadian Government Publishing Centre, 65–88.

Wang Y, Zhang Y, Guoliang H, Wang M, Zhu R, Zhai Y, Sun J, Li X, Wang L, Wu M and Wang J. (2020). Development of Megaselia spiracularis (Diptera: Phoridae) at different constant temperatures. Journal of Thermal Biology 93: 102722. https://doi.org/10.1016/j.jtherbio.2020.102722

Yanan Z, Li L, Liao M, Kang C, Hu G, Guo Y, Wang Y and Wang J. (2023). Development of Megaselia scalaris at constant temperatures and its significance in estimating the time of death. International Journal of Legal Medicine 138: 1–10. https://doi.org/10.1007/s00414-023-02993-4

Zuha R M. (2021). Effects of preservative concentrations on larval cephalopharyngeal skeleton of Chrysomya megacephala (Fabricius, 1794) (Diptera: Calliphoridae), an alternative indicator to larval body length for mPMI estimation. Journal of Clinical and Health Sciences 6: 90–-101. https://doi.org/10.24191/jchs.v6i1(Special).13992

Zuha R M. (2022). A preliminary evaluation on bivariate allometry in active-feeding Chrysomya megacephala (Fabricius, 1794) (Diptera: Calliphoridae) larvae. Malaysian Applied Biology 51(1): 49–58. https://doi.org/10.55230/mabjournal/v51i1.1999

Zuha R M and Omar B. (2014). Developmental rate, size, and sexual dimorphism of Megaselia scalaris (Loew) (Diptera: Phoridae): Its possible implications in forensic entomology. Parasitology Research 113(6): 2285–2294. https://doi.org/10.1007/s00436-014-3883-z

Zuha R M, Huong-Wen S, Disney R H L and Omar B. (2017). Scuttle flies (Diptera: Phoridae) inhabiting rabbit carcasses confined to plastic waste bins in Malaysia include new records and an undescribed species. Tropical Life Sciences Research 28(1): 131–143. https://doi.org/10.21315/tlsr2017.28.1.9

Zuha R M, Razak T A, Ahmad N W and Omar B. (2012). Interaction effects of temperature and food on the development of forensically important fly, Megaselia scalaris (Loew) (Diptera: Phoridae). Parasitology Research 111: 2179–2187. https://doi.org/10.1007/s00436-012-3070-z