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32 results for “Chrysoritis”
Figure 5 – C in Chrysoritis Butler (Papilionoidea: Lycaenidae: Aphnaeinae) - Part III: An integrative taxonomic revision
Figure 5 – C. chrysantas (Garies). Final instar (top), C. chrysantas distal four larval segments (bottom). Not to scale.
Figure 4 – C. zonarius 2 in Chrysoritis Butler (Papilionoidea: Lycaenidae: Aphnaeinae) - Part III: An integrative taxonomic revision
Figure 4 – C. zonarius 2nd (top) and 4th (middle) instars (Churchhaven) and 6th/final instar (bottom; Platrug Farm). Not to scale. An egg of C. zonarius is shown in Fig. 7A in HEA23.
Figure 2 in Chrysoritis Butler (Papilionoidea: Lycaenidae: Aphnaeinae) - Part III: An integrative taxonomic revision
Figure 2 – Male genitalia. (A) C. phosphor lateral view with aedeagus removed (illustration by A. Heath); see also Fig. 1h in HEA23. (B) C. oreas lateral view with aedeagus removed. (C) C. oreas genitalic components; see also Fig. 1c in HEA23. Parts (B) and (C) reproduced from Stempffer (1967) by courtesy of The Natural History Museum, London. Not to scale.
Figure 13 – C in Chrysoritis Butler (Papilionoidea: Lycaenidae: Aphnaeinae) - Part III: An integrative taxonomic revision
Figure 13 – C. rileyi (Brand Vlei) 4th instar (top) and final instar (bottom). Not to scale. An egg of C. rileyi is shown in Fig. 7B in HEA23.
Figure 13 - C. zonarius 1 in Chrysoritis Butler (Papilionoidea: Lycaenidae: Aphnaeinae) - Part II: Natural history: morphology, ecology, and behaviour, with accounts of larval ecology and insights into the aphytophagous C. dicksoni (Gabriel)
Figure 13 - C. zonarius 1st instar, in captivity, feeding on Osteospermum moniliferum (Silwerstroomstrand, Cape Town) in a manner described for C. zeuxo by Clark & Dickson (1971:168). The usual host plant for C. zonarius in nature is O. incanum.
Figure 1 in Chrysoritis Butler (Papilionoidea: Lycaenidae: Aphnaeinae) - Part II: Natural history: morphology, ecology, and behaviour, with accounts of larval ecology and insights into the aphytophagous C. dicksoni (Gabriel)
Figure 1 – Flattened components of male genitalia of eight Chrysoritis species. From top to bottom: juxta (furca), valve, and saccus. (a) C. thysbe, (b) C. p. pyroeis, (c) C. oreas, (d) C. zonarius, (e) C. f. felthami, (f) C. l. lycegenes, (g) C. dicksoni, and (h) C. phosphor. Reproduced from Heath (1997: 60). See also Fig. 2 in Heath et al., 2023.
Figure 3 in Chrysoritis Butler (Papilionoidea: Lycaenidae: Aphnaeinae) - Part II: Natural history: morphology, ecology, and behaviour, with accounts of larval ecology and insights into the aphytophagous C. dicksoni (Gabriel)
Figure 3 – Micrographs of basal hind wing scales at three magnifications, under dorso-lateral lighting intending to invoke iridescence if any. Images show the base of the wing. A–C: C. violescens (Komsberg Pass, sample SAM-LEP-A041390). D– F: C. aridus (Studer's Pass, SAM-LEP-A041391). G–I: C. amatola stat. nov. (Groot Winterberg, SAM-LEP-A041392). Images by S. van Noort.
Figure 7 in Chrysoritis Butler (Papilionoidea: Lycaenidae: Aphnaeinae) - Part II: Natural history: morphology, ecology, and behaviour, with accounts of larval ecology and insights into the aphytophagous C. dicksoni (Gabriel)
Figure 7 - Eggs of four Chrysoritis species (not to scale). A. C. z. zonarius (Churchhaven). B. C. rileyi (Brand Vlei). C. C. blencathrae (Waaihoek Mt.). D. C. dicksoni (Witsand; photo: S.E. Woodhall).
Figure 9 in Chrysoritis Butler (Papilionoidea: Lycaenidae: Aphnaeinae) - Part II: Natural history: morphology, ecology, and behaviour, with accounts of larval ecology and insights into the aphytophagous C. dicksoni (Gabriel)
Figure 9 – Four tubercles (excluding tentacular organ) re-drawn from Clark & Dickson (1971). (a) C. nigricans, (b) C. pan, (c) C. p. palmus, (d) C. u. uranus.
Figure 11 – C. t. thysbe 5 in Chrysoritis Butler (Papilionoidea: Lycaenidae: Aphnaeinae) - Part II: Natural history: morphology, ecology, and behaviour, with accounts of larval ecology and insights into the aphytophagous C. dicksoni (Gabriel)
Figure 11 – C. t. thysbe 5th instar plus two Crematogaster peringueyi ants engaged in mutual trophallaxis, sharing honeydew that was taken from the larva's DNO (Blaauwberg N. Res.)
Figure 19 – C in Chrysoritis Butler (Papilionoidea: Lycaenidae: Aphnaeinae) - Part III: An integrative taxonomic revision
Figure 19 – C. braueri final instar (Bedford, E. C.).
Figure 18 – C in Chrysoritis Butler (Papilionoidea: Lycaenidae: Aphnaeinae) - Part III: An integrative taxonomic revision
Figure 18 – C. nigricans (Pella, Mamre).1st instar (top); final instar (bottom). Not to scale.
Figure 17 – C in Chrysoritis Butler (Papilionoidea: Lycaenidae: Aphnaeinae) - Part III: An integrative taxonomic revision
Figure 17 – C. swanepoeli final instar (Schoemanspoort).
Figure 6 – C in Chrysoritis Butler (Papilionoidea: Lycaenidae: Aphnaeinae) - Part III: An integrative taxonomic revision
Figure 6 – C. pan final instar (Lamberts Bay).
Figure 7 – C in Chrysoritis Butler (Papilionoidea: Lycaenidae: Aphnaeinae) - Part III: An integrative taxonomic revision
Figure 7 – C. lyndseyae late instar with Crematogaster peringueyi host ants (Wallekraal).
Figure 15 – C. b in Chrysoritis Butler (Papilionoidea: Lycaenidae: Aphnaeinae) - Part III: An integrative taxonomic revision
Figure 15 – C. b. brooksi final instar (Pella, Mamre).
Figure 16 – C in Chrysoritis Butler (Papilionoidea: Lycaenidae: Aphnaeinae) - Part III: An integrative taxonomic revision
Figure 16 – C. brooksi-rileyi hybrid (Brandvlei Dam).
Figure 9 – C. u in Chrysoritis Butler (Papilionoidea: Lycaenidae: Aphnaeinae) - Part III: An integrative taxonomic revision
Figure 9 – C. u. uranus final instar (du Toits Kloof Pass).
Figure 1 – C in Chrysoritis Butler (Papilionoidea: Lycaenidae: Aphnaeinae) - Part III: An integrative taxonomic revision
Figure 1 – C. oreas (Bushman's Nek). 1st instar (top) and ~4th instar (bottom). Not to scale.
Figure 11 – C. p in Chrysoritis Butler (Papilionoidea: Lycaenidae: Aphnaeinae) - Part III: An integrative taxonomic revision
Figure 11 – C. p. pyramus final instar larva (Swartberg Pass).
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