FINAL INSTAR CATERPILLARS AND METAMORPHOSIS OF CYCLOSIA SORDIDUS (WALKER) IN SINGAPORE (LEPIDOPTERA: ZYGAENIDAE: CHALCOSIINAE)

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NATURE IN SINGAPORE 2012 5: 151 158 Date of Publication: 4 May 2012 National University of Singapore FINAL INSTAR CATERPILLARS AND METAMORPHOSIS OF CYCLOSIA SORDIDUS (WALKER) IN SINGAPORE (LEPIDOPTERA: ZYGAENIDAE: CHALCOSIINAE) Tzi Ming Leong Department of Biological Sciences, National University of Singapore 14 Science Drive 4, Singapore 117543, Republic of Singapore (E-mail: banjarana@gmail.com) ABSTRACT. The final instar caterpillar and characteristic cocoon of the chalcosiine moth, Cyclosia sordidus (Walker), are described and illustrated. Notes on sexual dimorphism in this species are provided. KEY WORDS. caterpillar, cocoon, Chalcosiinae, Cyclosia sordidus INTRODUCTION The moth Cyclosia sordidus was first described by F. Walker (1862) based on specimens collected by A. R. Wallace from Sarawak, Borneo. Two subspecies have been recognised, with the nominate subspecies occurring in Sundaland (including Sumatra, Java, Malay Peninsula, Borneo), while the subspecies bungauensis Schultze occurs in Tawitawi, Philippines (Piepers & Snellen, 1902; Endo & Kishida, 1999; Holloway, 2011). Early illustrations of adult moths of this species were featured in the works of Swinhoe (1892: pl. II, Fig. 14 [female]) and Piepers & Snellen (1902: pl. 14, Fig. 4 [female], Fig. 8 [male]). More recent illustrations appeared in Endo & Kishida (1999: 29, Fig. 7 [male], Fig. 8 [female]) and Holloway (2011: pl. 3, moth 10 [male] from Singapore, moth 11 [female]). Although brief descriptions (in French) of its caterpillar and cocoon were included by Piepers & Snellen (1902), illustrations were not provided. OBSERVATIONS On 12 Nov.2011, the skeletonised leaves of a rambai treelet (Baccaurea motleyana, family Phyllanthaceae) along the Lower Peirce Reservoir forest betrayed the presence of a small group of caterpillars feeding at waist-level. Four caterpillars were then obtained to be reared in captivity. The body lengths of the final instar caterpillars were between 15 19 mm. Their cylindrical bodies were a translucent, pale greenish yellow, with broad, cherry red bands at the anterior and posterior segments (Figs. 1, 2). At the anterior, this continuous red band spans the dorsum of T2, T3, and A1. At the rear, the band originates at the posterior half of A7 and extends to A9. Fig. 1. Dorsolateral view of the final instar caterpillar of Cyclosia sordidus (body length: 18 mm), feeding on the leaf of a rambai treelet (Baccaurea motleyana, Phyllanthaceae) at the Lower Peirce Reservoir forest on 12 Nov.2011. 151

Leong: Final Instar Caterpillars of Cyclosia sordidus in Singapore Fig. 2. Dorsal view of final instar caterpillar (head towards right, as in Fig. 1). Note even rows of protuberances per segment, as well as pale fine setae radiating outwards. Throughout its body, evenly spaced protuberances were prominently arranged from segments T2 to A9 (Figs. 2, 3). Segments T2 and T3 exhibited six tubercles each, while segments A1 to A9 had four tubercles each. The tubercles from A2 to A7 were particularly attractive, as each was encircled by a cherry red ring at its base. A sparse arrangement of fine, silvery setae radiated from its body, many originating from these tubercles. Along its flanks, the tiny, black spiracles were visible at T1 and from A1 to A8. The abdominal prolegs between A3 and A6 were well developed. Its head is concealed by a membranous hood that extends forwards from T1. This hood is mostly black in the front and whitish on the sides (Figs. 4, 5). Originating from the ventrolateral corners of T1 is a pair of translucent tentacles that are usually retracted when the caterpillar is on the move, but often extended when the caterpillar is feeding. These structures are motile and probably have sensory functions. At its posterior, the anal segment is adorned with a gently curved, black band (Fig. 6). In captivity, the caterpillars demonstrated a voracious appetite, despite their diminutive size. Apart from the leaves, the petioles were also readily consumed (Figs. 3, 5). A video clip of their feeding activity on a leaf was recorded and uploaded (http://www.youtube.com/watch?v=yzrkc7kvi2i). On the 15 Nov.2011, the caterpillars had begun to display pre-pupal signs, including the darkening of body colours, cessation of feeding, and restless pacing about. That same night, one of the caterpillars was observed to position itself upon the upper side of a leaf and began laying down a thin mat of silk. By the evening of 16 Nov.2011, a fully formed, elliptical cocoon had been completed (Fig. 7). It was carefully aligned over the mid vein of the leaf, was dorsoventrally flattened, and measured 21 11 mm. There was a dark, round, protruding knob at the centre. Overall, the cocoon had a light, pinkish brown colour. On the evening of 3 Dec.2011 (ca. 1900 hours), the first moth had eclosed. Upon eclosion, its translucent gold pupal case had become partially extruded from within the cocoon (Fig. 8). The adult moth was then determined to be a female Cyclosia sordidus, after comparisons with published illustrations for this species. The moth was an overall black, with light hints of metallic blue, and powdery white band on its forewings, variously interrupted by the wing venation (Fig. 9). Its body length was 15 mm; forewing length, 23 mm. Its antennae (length: 10 mm) were metallic blue and bipectinate (Fig. 10). From the ventral perspective, the pattern of the hindwings (white with broad, black margins) 152

NATURE IN SINGAPORE 2012 Fig. 3. Three caterpillars converged on the petiole (diameter: 4 mm) of the hostplant and systematically consumed this segment for hours without a pause. Fig. 4. Frontal view of caterpillars feeding along leaf margin. Their heads were constantly shrouded in a membranous hood. A pair of translucent tentacles originating from T1 may be seen. 153

Leong: Final Instar Caterpillars of Cyclosia sordidus in Singapore Fig. 5. Lateral close-ups of anterior segments to view the motile, translucent tentacles at T1. These tentacles were both extensible and retractable, probably serving as sensory organs. Fig. 6. Posterior close-up of caterpillar. Note curved, black band on anal segment. 154

NATURE IN SINGAPORE 2012 Fig. 7. The earliest cocoon to be formed was completed by the evening of 16 Nov.2011. It was positioned along the mid vein of a leaf of its hostplant and measured 21 11 mm. could be seen (Fig. 11). Between 4 5 Dec.2011, the three remaining moths eclosed and were also females. The specimens were preserved and catalogued at the Zoological Reference Collection (ZRC) of the Raffles Museum of Biodiversity Research, National University of Singapore as ZRC.LEP.360 (body lengths: 13 16 mm, forewing lengths: 9 11 mm, antenna lengths: 9 10 mm). There is significant sexual dimorphism in Cyclosia sordidus, with males being noticeably smaller than females, having less extensive white on the forewings, and displaying metallic blue on the hindwings (instead of white) (Fig. 12). An extensive series of male moths from Singapore was examined for comparative purposes (ZRC.LEP.363 371, 36 males, body lengths: 9 14 mm, forewing lengths: 15 18 mm, antenna lengths: 7 9 mm). These were mostly collected by L. L. Koh between 2006 2007 from the Bukit Timah Nature Reserve and the Central Catchment Nature Reserve. The genus Baccaurea (Phyllanthaceae) appears to be a preferred larval hostplant among Cyclosia moths, with prior records for at least four other species. These include: (i) Cyclosia macularia (Guerin) on Baccaurea motleyana and Baccaurea racemosa, (ii) Cyclosia nivipetens Walker on Baccaurea motleyana, (iii) Cyclosia panthona (Stoll) on Baccaurea ramiflora, and (iv) Cyclosia papilionaris (Drury) on Baccaurea ramiflora (Robinson et al., 2011). In Singapore, at least two additional species of Cyclosia have been recorded, based on field observations and museum specimens. These include Cyclosia macularia macularia (Guerin) and Cyclosia pieridoides virgo Jordan. Hopefully, future field studies will allow encounters with their respective caterpillars to enable comparisons of larval morphology and hostplant preference. 155

Leong: Final Instar Caterpillars of Cyclosia sordidus in Singapore Fig. 8. The vacated pupal case (arrowed) was partially extruded from the cocoon (as in Fig. 7) upon eclosion of a female moth on the evening of 3 Dec.2011. Fig. 9. Dorsal view of freshly eclosed female moth (ZRC.LEP.360, body length: 15 mm, forewing: 23 mm). 156

NATURE IN SINGAPORE 2012 Fig. 10. Anterior close-up to view details of bipectinate antennae (length: 10 mm) of female moth (as in Fig. 9). Fig. 11. Ventral view of female moth (as in Figs. 9, 10) to view hindwing patterns. 157

Leong: Final Instar Caterpillars of Cyclosia sordidus in Singapore Fig. 12. Dorsal view of a male (ZRC.LEP.371, body length: 12 mm, forewing: 15 mm, antenna length: 8 mm) collected from MacRitchie forest in Feb.2007. ACKNOWLEDGEMENTS I am grateful to Haji Samsuri bin Ahmad (Herbarium, Singapore Botanic Gardens) for identifying the larval hostplant with much enthusiasm, and also to Jeremy Holloway (Natural History Museum, London) for kindly confirming the identity of the moth. Lua Hui Kheng (ZRC) granted permission to examine the Cyclosia specimens in the Lepidoptera collection. Useful comments by a lepidopterist reviewer were much appreciated. LITERATURE CITED Endo, T. & Y. Kishida, 1999. Day-flying Moths: Chalcosiinae & Epicopeia. Endless Collection Series. Volume 8. Endless Science Information, Tokyo. 119 pp. Holloway, J. D., 2011. The Moths of Borneo (Part 2): Families Phaudidae, Himantopteridae and Zygaenidae; revised and annotated checklist. Malayan Nature Journal, 63: 1 548. Piepers, M. M. & M. C. Snellen, 1902. Énumération des Lépidoptères Hétérocères de Java. III. Famille VI. Zygaenidae, m. (Zygaenoidea H. S.). Tijdschrift voor Entomologie, 45: 151 242, pls. 13 15. Robinson, G. S., P. R. Ackery, I. J. Kitching, G. W. Beccaloni & L. M. Hernández, 2011. HOSTS A Database of the World s Lepidopteran Hostplants. Natural History Museum, London. http://www.nhm.ac.uk/researchcuration/research/projects/hostplants/. (Accessed 28 Dec.2011). Swinhoe, C., 1892. Catalogue of Eastern and Australian Lepidoptera Heterocera in the Collection of the Oxford University Museum. Clarendon Press, Oxford. viii + 324 pp., 8 colour pls. Walker, F., 1862. Catalogue of the Heterocerous Lepidopterous insects collected at Sarawak, in Borneo, by Mr. A. R. Wallace, with descriptions of new species. Journal of the Proceedings of the Linnean Society (Zoology), 6: 82 145, 171 198. 158