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Type: Article
Published: 2024-06-19
Page range: 241-260
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Systematic study in Dipcadi ursulae (Asaparagaceae, Scillioideae) from Maharashtra, India

R.D & S.H. National College, Department of Botany Bandra (W), Mumbai-400050, Maharashtra, India.
R.D & S.H. National College, Department of Botany Bandra (W), Mumbai-400050, Maharashtra, India.
R.D & S.H. National College, Department of Botany Bandra (W), Mumbai-400050, Maharashtra, India.
anatomy endemic Gujarat Maharashtra maximum likelihood white Monocots

Abstract

Dipcadi ursulae is identified as having leaves with a central white band, long acuminate bracts, and sweet-scented flowers. Dipcadi ursulae var. longiracemosum has been raised to the species level due to its morphological and anatomical features. Morphometric analysis based on 89 morphological characters is provided to support the status change. A unique new variety of Dipcadi, which is morphologically closely related to Dipcadi ursulae but differs in having pure white campanulate-urceolate flowers, and unequal spreading perianth lobes, is described here. Anatomical, phylogenetic and morphometric evidence is provided to support the status of the new variety.

References

  1. Abdukareem, K.A. & Mustapha, O.T. (2016) Assessment of the diversity of leaf epidermal traits of Dipcadi filamentosum Medik among different co-geographical regions in Nigeria. The Journal of Agricultural Sciences 11 (2): 118–129.
  2. Aiton, W. (1789) Hortus Kewensis. Vol 3. George Nicol, London, 496 pp.
  3. Almeida, M.R. (2009) Dipcadi Medicus. In: Almeida, M.R. (Ed.) Flora of Maharashtra. Vol. 5 (A). Orient Press, Mumbai, pp. 176–178.
  4. Baker, J.G. (1870) A revision of the genera and species of herbaceous capsular gamophyllous Liliaceae. Botanical Journal of the Linnean Society 11: 349–436. https://doi.org/10.1111/j.1095-8339.1870.tb00068.x.
  5. Balakrishnan, N.P. (1970) Nomenclatural notes on some flowering plants. Journal of the Bombay Natural History Society 67: 57–66.
  6. Blatter, E. & McCann, Y.M.C. (1928) Some new species of plants from the Western Ghats. Journal of the Bombay Natural History Society 32: 733–736.
  7. Bole, P.V. & Pathak, J.M. (1988) Flora of Saurashtra Part III (Hydrocharitaceae to Poaceae). Botanical Survey of India, Calcutta 319 pp.
  8. Chandore, A.N, Borude, D.B., Bhaekar, P.P., Madhav, N.P. & Gosavi, K.V.C. (2021) Dipcadi janae-shrirangii (Asparagaceae), a new species from the lateritic plateaus of Konkan region of Maharashtra, India. Phytotaxa 524 (1): 37–44. https://doi.org/10.11646/phytotaxa.524.1.4
  9. Chermezon, M.H. (1921) Sur quelques cyperacraes nouvelles du centre de Madagascar. Bulletin du Muséum National d’Histoire Naturelle 26: 552–554.
  10. Dalzell, N.A. (1850) Contribution to the Botany of Western India. Hooker’s journal of botany and Kew Garden miscellany 2: 133–145.
  11. Deb, D.B. & Dasgupta, S. (1976) New taxa of the genus Dipcadi Medik. (Liliaceae). Journal of the Bombay Natural History Society 72 (1): 822–824.
  12. Deb, D.B. & Dasgupta, S. (1977) Revision of the Genus Dipcadi Medik. (Liliaceae) in India and adjoining regions. Journal of Bombay the Natural History Society 75: 50–70.
  13. Deb, D.B. & Dasgupta, S. (1981) Dipcadi. In: Deb, D.B. & Dasgupta, S. (Eds.) Fascicles of Flora of India. Fascicle 7. Botanical Survey of India, Calcutta, pp. 2–11.
  14. Deshpande, A.S., Mirgal, A., Krishnan, S., Narkhede, S. & Janarthanam, M.K. (2016) Extended distribution of Dipcadi concanense (Dalzell) Baker - a highly threatened plant taxon of the family Asparagaceae. Journal of Threatened Taxa 8 (13): 9586–9588. http://dx.doi.org/10.11609/jott.2403.8.13.9586-9588
  15. Don, D. (1825) Prodromus Florae Nepalensis, London, pp. 45.
  16. Dutta, S.R., Rodrigues, H., Harvey, P., Chakral, K., Ingle, P. & Dangi, R. (2024) Sympatric speciation in Dipcadi saxorum at Kanheri Caves, Borivali, Maharashtra India. Phytotaxa 637 (1): 87–96. https://doi.org/10.11646/phytotaxa.637.1.6
  17. Edgar, R.C. (2004) Local homology recognition & distance measures in linear time using compressed amino acid alphabets. Nucleic Acids Research 32: 380–385.
  18. Edler, D., Klein, J., Antonelli, A. & Silvestro, D. (2019) RAxML GUI 2.0 beta: A Graphical interface & toolkit for phylogenetic analyses using RAxML. Method in ecology and evolution 373–377.
  19. Hooker, J.D. (1892) Dipcadi. In: Hooker, J.D. (ed.) Flora of British India. Vol. 6. L. Reeve & Co., London. pp. 345–347.
  20. Hooker, J.D. (1880) Anotis lancifolia. In: Hooker, J.D. (Ed.) Flora of British India. Vol. 3. L. Reeve & Co., London, pp. 73.
  21. Hooker, W.J. (1851) Icones Plantarum, Vol. 9. Reeve & Co., London, 867 pp.
  22. Jain, S.K. & Rao, R.R. (1976) A Hand Book of Field and Herbarium Methods. Today and Tomorrow’s Printers and Publishers, New Delhi, pp. 1–150.
  23. Karthikeyan, S., Jain, S.K., Nayar, M.P. & Sanjappa, M. (1989) Florae Indicae Enumeratio: Monocotyledonae. Botanical Survey of India, Calcutta, 93 pp.
  24. 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.
  25. Lakshminarasimhan, P. (1996) Monocotyledones. In: Sharma, B.D., Karthikeyan, S. & Singh, N.P. (Eds.) Flora of Maharashtra State. Botanical Survey of India, Calcutta. pp. 131–134.
  26. Lewis, W.H. (1966) The Asian genus Neanotis nomen novum (Anotis) and allied taxa in the Americas (Rubiaceae). Annals of the Missouri Botanical Garden 53: 32–46. https://doi.org/10.2307/2394973
  27. Linnaeus, C. (1753) Species Plantarum. Laurentius Salvius, Stockholm, 15 pp.
  28. Manning, J.C., Goldblatt, P. and Fay, M.F. (2004) A Revised Generic Synopsis of Hyacinthaceae in Sub-Saharan Africa, based on Molecular Evidence, Including New Combinations and The New Tribe Pseudoprospereae. Edinburgh Journal of Botany 60 (3): 533–568.
  29. Mao, A.A., Sudahansu, S.D. & Onkar, N.M. (2020) (eds.) Flowering Plants of India: An Annotated Checklist, Monocotyledons. Vol. 3. Botanical Survey of India, Calcutta, 196 pp.
  30. Medikus, F.K. (1790) Von zwei neuen Pflanzengeschtern, deren Hauptcharaktere in dem Wurzelbaue liegen. Historia et Commentationes Academiae Electoralis Scientiarum et Elegantiorum Litterarum Theodoro-Palatinae. Vol. 6. Mannheim, 431.pp.
  31. Miller, M.A., Pfeiffer, W., and Schwartz, T. (2010) Creating the CIPRES Science Gateway for inference of large phylogenetic trees. In: Proceedings of the Gateway Computing Environments Workshop (GCE). pp. 1–8.
  32. Nayar, T.S., Sibi, M. & Beegam, A.R. (2014) Flowering plants of the Western Ghats. Vol. 2 (Monocots). Jawaharlal Nehru Tropical Botanic Garden and Research Institute, Thiruvananthapuram, 1452 pp.
  33. POWO (2024) Plants of the World Online. Facilitated by the Royal Botanic Gardens, Kew. Available from: http://www.plantsoftheworldonline.org/ (accessed January 2024)
  34. Prabhugaonkar, A., Yadav, U.S. & Janarthanam, M.K. (2009 [publ. 2010]) Dipcadi goaense (Hyacinthaceae), a new species from the foothills of the Western Ghats, India. Kew Bulletin 64: 743–746.
  35. Rambaut, A., Suchard, M.A., Xie, D. & Drummond, A.J. (2014) Tracer v1.6. Available from: http://beast.bio.ed.ac.uk/Tracer (accessed 18 June 2024)
  36. Rao, B.R.P., Prasad, K., Veeranjaneyulu, D., Naik, M.C., Salamma, S. & Narayanaswamy, A. (2016) Dipcadi krishnadevarayae (Asparagaceae), a new plant species from Andhra Pradesh, India. Journal of Threatened Taxa 8: 9562–9567. http://dx.doi.org/10.11609/jott.3039.8.13.9562-9567
  37. Ravichandran, V., Singh, R. Kr. & Murugan, C. (2020) Dipcadi coimbatorensis (Asparagaceae), is a new species from the Nilgiri Biosphere Reserve, India. Kew Bulletin 75: 16. https://doi.org/10.1007/s12225-020-9873-7
  38. Rodrigues, H., Dutta, S.R. & Chakral, K. (2024) Resolving the taxonomic complexities of Dipcadi (Asparagacaeae) from India. Phytotaxa 645 (1): 1–17
  39. Savi, G. (1824) Nuovo Giornale dei Letterati. Pisa, 113 pp.
  40. Stamatakis, A. (2006) RAxML-VI-HPC: maximum likelihood-based phylogenetic analyses with thousands of taxa and mixed models. Bioinformatics 22 (21): 2688–2690. https://doi.org/10.1093/bioinformatics/btl446
  41. Talavera, G. & Castresana, J. (2007) Improvement of phylogenies after removing divergent & ambiguously aligned blocks from protein sequence alignments. Systematic Biology 56: 564–577.
  42. Webb, P.B. & Berthelot, S. (1848) Histoire Naturelle des Iles Canaries. Phytographia Canariensis 2 (3): 341.
  43. Wight, R. & Arnott, G.A.W. (1834) Prodromus Florae Peninsulae Indiae Orientalis. Vol. 1. Prabury Allen & Co., London. pp. 217–218.