160 LITERATURE REFERENCES a Adamson, R.S. 1950. Umbelliferae

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160 LITERATURE REFERENCES a Adamson, R.S. 1950. Umbelliferae LITERATURE REFERENCES A Adamson, R.S. 1950. Umbelliferae. In Adamson, R.S. & Salter, T.M. (eds), Flora of the Cape Peninsula. Juta & Co. Cape Town. Pp. 623–625. Anonymous. 2001. Kruierate van die Montagu Museum. Montagu Museum. Montagu. B Bell, C.R. 1971. Breeding systems and floral biology of the Umbelliferae or evidence for specialization in unspecialized flowers. In Heywood, V.H. (ed.), the Biology and Chemistry of the Umbelliferae. Supplement 1 to the Botanical Journal of the Linnean Society 64. Pp. 93–106. Bernardi, L. 1979. Tentamen revisionis generis Ferulago. Boissiera 30: 1–182. Brummitt, R.K. & Powell, C.E. (eds) 1992. Authors of Plant Names. Royal Botanical Gardens, Kew. Richmond. Bruneton, J. 1995. Pharmacognosy, Phytochemistry, Medicinal Plants. Intercept, Hampshire. Pp. 229–240. Burger, A. & Wachter, H. 1998. Hunnius Pharmazeutisches Wörterbuch. 8. Walter de Gruyter. New York. P. 1051. Burtt, B.L. & Davis, P.H. 1949. Glaucosciadium: a new Meditteranean genus of Umbelliferae. Kew Bulletin 2: 225–230. Burtt, B.L. 1989. Notes on some plants from southern Africa: XV. Edinburgh Journal of Botany 45: 198–200. 160 Literature References Burtt, B.L. 1991. Umbelliferae of southern Africa: an introduction and annotated checklist. Edinburgh Journal of Botany 48: 133–282. Burtt, B.L. 1997. A new name for a southern African Peucedanum. Bothalia 27: 51 & 52. C Calestani, V. 1905. Contributo alla sistematica delle Ombrellifere d’Europa. Webbia 1: 89–280. Calviño, C.I., Tilney, P.M., Van Wyk, B.-E. & Downie, S.R. A molecular phylogenetic study of southern African Apiaceae. American Journal of Botany (in press). Cerceau-Larrival, M.T. 1962. Plantules et pollens d’Ombellifères. Leur intèrêt systématique et phylogénetique. Mémoirs du Muséum National d’ Histoire Naturelle B14: 1–166. Chandler, G.T. & Plunkett, G.M. 2004. Evolution in Apiales: nuclear and chloroplast markers together in (almost) perfect harmony. Botanical Journal of the Linnean Society 144: 123–147. Chinese Pharmacopoeia Commission. 2005. Pharmacopoeia of the People’s Republic of China. vol. 1. People’s Medical Publishing House. Beijing. Pp. 224 & 225. Commelin, C. 1701. Horti Medici Amstelodamensis Rariorum Plantarum 2. Amsterdam. Pp. 115. 161 Literature References D Dawson, J.W. 1967. The New Zealand species of Gingidium (Umbelliferae). New Zealand Journal of Botany 5: 84–116. Doust, J.L. 1980. Floral sex ratios in andromonoecious Umbelliferae. The New Phytologist 85: 265–273. Downie, S.R. & Katz-Downie, D.S. 1996. A molecular phylogeny of Apiaceae subfamily Apioideae: evidence from nuclear ribosomal DNA internal transcribed spacer sequences. American Journal of Botany 83: 234–251. Downie, S.R. & Katz-Downie, D.S. 1999. Phylogenetic analysis of chloroplast rps16 intron sequences reveals relationships within the woody southern African Apiaceae subfamily Apioideae. Canadian Journal of Botany 77: 1120–1135. Downie, S.R., Plunkett, G.M., Watson, M.F., Spalik, K., Katz-Downie, D.S., Valiejo-Roman, C.M., Terentieva, E.I., Troitsky, A.V., Lee, B.-Y., Lahham, J. & El-Oqlah, A. 2001. Tribes and clades within Apiaceae subfamily Apioideae: the contribution of molecular data. Edinburgh Journal of Botany 58: 301–330. Downie, S.R., Watson, M., Spalik, K. & Katz-Downie, D.S. 2000. Molecular systematics of Old World Apioideae (Apiaceae): relationships among some members of the tribe Peucedaneae sensu lato, the placement of several island-endemic species, and resolution within the Apioid superclade. Canadian Journal of Botany 78: 506–528. Doyle, J.J. & Doyle, J.L. 1987. A rapid DNA isolation procedure for small quantities of fresh leaf tissue. Phytochemical Bulletin 19: 11–15. 162 Literature References Drude, O. 1897–98. Umbelliferae. In Engler, A. & Prantl, K. (eds), Die naturlichen Pflanzenfamilien 3(8). Engelmann, Leipzig. Pp. 63–250. Dykman, E.J. 1891. Kook-, Koek- en Resepte Boek. Paarlse Drukpers Maatskappy. Paarl. Pp. 133 & 136. E Ecklon, C.F. & Zeyher, C. 1837: Enumeratio Plantarum Africae Australis Extratropicae. Hamburg. Pp. 330–355. F Farris, J. 1970. Methods for computing wagner trees. Systematic Zoology 34: 21– 24. Feder, N. & O’ Brien, T.P. 1968. Plant microtechniques: some principles and new methods. American Journal of Botany 55: 123–142. Felsenstein, J. 1985. Confidence limits on phylogenies: an approach using bootstrap. Evolution 39: 783–791. Finkelstein, N., Albrecht, C.F. & Van Jaarsveld, P.P. 1993. Isolation and structural elucidation of xanthotoxin, a phototoxic furanocoumarins, from Peucedanum galbanum. South African Journal of Botany 59: 81–84. Fitch, W.M. 1971. Towards defining the course of evolution: minimal change for a specific tree topology. Systematic Zoology 20: 406–416. Forbes, V.S. (ed.) 1986. Carl Peter Thunberg Travels at the Cape of Good Hope 1772–1775. Van Riebeeck Society. Cape Town. P. 59. 163 Literature References Frey, R. 1989. Taxonomische Revision der Gattung Peucedanum: Sektion Peucedanum und Sektion Palimbioidea (Umbelliferae). Candollea 44: 257– 327. G Goldblatt, P. & Manning, J.C. 2000. Cape Plants: A Conspectus of the Cape Flora of South Africa. Strelitzia 9. National Botanical Institute. Cape Town. P. 279. H Hadaček, F. 1986. Vergleichende phytochemische Untersuchungen in der Gattung Peucedanum (Apiaceae-Apioideae). Stapfia 18: 1–190. Holmgren, P.K., Holmgren, N.H. & Barnett, L.C. 1990. Index Herbariorum 1: The Herbaria of the World, 8th ed. Regnum Vegetabile. New York Botanical Garden. New York. J Jarvis, C.E., Reduron, J.-P., Spencer, M.A. & Cafferty, S. 2006. Typification of Linnaean plant names in Apiaceae. Taxon 55: 207–216. K Kling, H. 1923. Die Sieketrooster. Van de Sandt, de Villiers & Co. Cape Town. P. 18. Kowal, T. & Wojterska, H. 1973. Morfologiczne i anatomiczne cechy diagnostyczne owocow wybronych gatunkow rodzeju Peucedanum L. Pr. Kromis. Boil. PTPN 35: 33–67. 164 Literature References L Lee, C.-S. & Downie, S.R. 2006. Phylogenetic relationships within Cicuta (Apiaceae tribe Oenantheae) inferred from nuclear rDNA ITS and cpDNA sequence data. Canadian Journal of Botany 83: 453–468. Leistner, O. A. & Morris, J. M. 1976. Southern African place names. Annals of the Cape Province Museum 12. Liu, M.L., Plunkett, G.M., Lowry, II P.P., Van Wyk, B.-E. & Tilney, P.M. 2006. The taxonomic value of fruit wing types in the order Apiales. American Journal of Botany 93: 1357–1368. M Magee, A.R., Van Wyk, B.-E. & Tilney, P.M. The identity of Peucedanum gummiferum (L.) Wijnands (Apiaceae). Taxon (manuscript submitted for publication). Marloth R. 1925. The Flora of South Africa: with Synoptical Tables of the Genera of the Higher Plants. vol. 2. Darter Bros. & Co. Cape Town. Pp. 243 & 244. N Nielsen, B.E. 1971. Coumarin patterns in the Umbelliferae. In Heywood, V.H. (ed.), the Biology and Chemistry of the Umbelliferae. Supplement 1 to the Botanical Journal of the Linnean Society 64. Pp. 325 & 336. O Oskolski, A.A. 2001. Phylogenetic relationships within Apiales: evidence from wood anatomy. Edinburgh Journal of Botany 58: 201–206. 165 Literature References Ostroumova, T.A. & Pimenov, M.G. 1997a. Carpological diversity of African Peucedanum s.l. (Umbelliferae) I. The species of southern Africa. Feddes Repertorium 108: 299–318. Ostroumova, T.A. & Pimenov, M.G. 1997b. Carpological diversity of African Peucedanum s.l. (Umbelliferae) II. The species of Tropical Africa. Feddes Repertorium 108: 533–547. Oxelman, B., Liden, M. & Berglund, D. 1997. Chloroplast rps16 intron phylogeny of the tribe Sileneae (Caryophyllaceae). Plant Systematics and Evolution 206: 393–410. P Pappe, L. 1857. Florae Capensi Medicae Prodromus. 2nd edition. Cape Town. Pp. 18 & 19. Pimenov, M.G. 1987. Leutea, Demavendia, Cervaria, Johreniopsis, Zeravschania. In Rechinger, K.H. (ed.), Flora Iranica. vol. 162. Akademiesche Druck- u. Verlagsanstalt. Graz. Pp. 445–461. Pimenov, M.G. & Leonov, M.V. 1993. The Genera of the Umbelliferae. Royal Botanic Gardens, Kew. Richmond. Plunkett, G.M. & Downie, S.R. 1999. Major lineages within Apiaceae subfamily Apioideae: a comparison of chloroplast restriction site and DNA sequence data. American Journal of Botany 86: 1014–1026. Plunkett, G.M., Soltis, D.E. & Soltis, P.S. 1996. Higher level relationships of Apiales (Apiaceae and Araliaceae) based on phylogenetic analysis of rbcL sequences. American Journal of Botany 83: 499–515. 166 Literature References R Reduron, J.-P. 1984. Biologie florale de quatre espèces de Peucedanum (Umbelliferae) de la flore française; conclusions pluri disciplinaires et implications taxonomiques. Bulletin of the Museum of Natural History B6: 119–145. Rood, B. 1994. Uit die Veldapteek. Tafelberg. Cape Town. P. 9. S Sass, J.E. 1958. Botanical Microtechnique. 3rd edition. Iowa State University Press. Iowa. Pp. 15–18. Schubert, M.T.R. 2000. A revision of the Genus Centella L. (Apiaceae). Ph.D. (Botany) thesis, Rand Afrikaans University [now the University of Johannesburg]. Johannesburg. Schubert, M.T.R., Van Wyk, B.-E., Van der Bank, F.H. & Van der Bank, M. 1996. Morphological and biochemical genetic evidence for hybridization in the genus Centella (Apiaceae), with notes on phylogenetic and taxonomic implications. Bothalia 26: 167–175. Schur, PH. J.F. 1866. Enumeratio Plantarum Transilvaniae Exhibens. Vindobonae. Guielmum Broumüller. Shneyer, V.S., Kutyavina, N.G. & Pimenov, M.G. 2003. Systematic relationships within and between Peucedanum and Angelica (Umbelliferae-Peucedaneae) inferred from immunological studies of seed proteins. Plant Systematics and Evolution 236: 175–194. 167 Literature References Smith,
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