Skip to main content Skip to main navigation menu Skip to site footer
Type: Article
Published: 2021-08-24
Page range: 140–158
Abstract views: 28
PDF downloaded: 1

Passiflora coelestis, a new species of Passiflora section Dysosmia (Passifloraceae sensu stricto) from Southern Brazil

Laboratório de Botânica Estrutural, Universidade Estadual do Centro-Oeste-UNICENTRO, Guarapuava, 85040-080, Paraná, Brasil
Laboratório de Botânica Estrutural, Universidade Estadual do Centro-Oeste-UNICENTRO, Guarapuava, 85040-080, Paraná, Brasil
Laboratório de Botânica Estrutural, Universidade Estadual do Centro-Oeste-UNICENTRO, Guarapuava, 85040-080, Paraná, Brasil
Laboratório de Botânica Estrutural, Universidade Estadual do Centro-Oeste-UNICENTRO, Guarapuava, 85040-080, Paraná, Brasil
Laboratório de Botânica Estrutural, Universidade Estadual do Centro-Oeste-UNICENTRO, Guarapuava, 85040-080, Paraná, Brasil
Eudicots flower histology species complex trichome

Abstract

Passiflora coelestis is morphologically and anatomically described from living material as a new species belonging to the section Dysosmia, supersection Stipulata and subgenus and genus Passiflora. The species occurs in Araucaria Moist Forest, a phytophysiognomy of the Atlantic Forest biome. The section has been characterized as one of the most taxonomically complex groups within Passiflora. Passiflora coelestis is related to species within the Dysosmioides group and is similar to P. campanulata, differing mainly in the stipules, petiole, bracts, and corona filaments. The new species is morphologically compared with taxa of the section; moreover, additional anatomic, palynological and molecular data are also discussed with regard to taxonomic classification.

References

<p>Banchi, E., Ametrano, C.G., Tordoni, E., Stanković, D., Ongaro, S., Tretiach, M., Pallavicini, A., Muggia, L., Verardo, P., Tassan, F., Trobiani, N., Moretti, O., Borney, M.F. &amp; Lazzarin, S. (2020) Environmental DNA assessment of airborne plant and fungal seasonal diversity. <em>Science of the Total Environment</em> 738: 140249.&nbsp; https://doi.org/10.1016/j.scitotenv.2020.140249</p>
<p>Barrios A.L. (2005) <em>Estudios de la diversidad de Passifloraceae en los Departamentos de Caldas, Chocó, Nariño, Quindío, Risaralda y Valle del Cauca (Colombia), apoyados en los análisis ecogeográficos, palinológicos y citogenéticos</em>. Tesis (M. Sc.). Palmira, CO: Universidad Nacional de Colombia, 65 pp.</p>
<p>Batygina, T.B. (2002) <em>Embryology of flowering plants, terminology and concepts I: Generative organs of flowers</em>. Enfield, Science Publishers. https://doi.org/10.1201/9781482279917</p>
<p>Behling, H. &amp; Pillar V.D.P. (2007) Late Quaternary vegetation, biodiversity and fire dynamics on the southern Brazilian highland and their implication for conservation and management of modern Araucaria forest and grassland ecosystems.&nbsp;<em>Philosophical</em> <em>Transactions of the Royal Society B: Biological Sciences</em> 362, 1478: 243–251. https://doi.org/10.1098/rstb.2006.1984</p>
<p>Bernacci, L.C., Cervi, A.C., Milward-de-Azevedo, M.A., Nunes, T.S., Imig, D.C. &amp; Mezzonato, A.C. (2020) <em>Passifloraceae in Lista de Espécies da Flora do Brasil</em>. Jardim Botânico do Rio de Janeiro. Available from: http://floradobrasil.jbrj.gov.br/jabot/floradobrasil/FB12506 (accessed 24 January 2021)</p>
<p>Carlucci, M,B., Jarenkow, J.A., da Silva Duarte, L. &amp; De Patta Pillar, V. (2011) Conservação da Floresta com araucária no extremo sul do Brasil.&nbsp;<em>Natureza &amp; Conservação</em> 9 (1): 111–114. https://doi.org/10.4322/natcon.2011.015</p>
<p>Cervi, A.C. (2006) A new species of <em>Passiflora</em> (Passifloraceae) from Minas Gerais, Brasil. <em>Brittonia </em>58 (4): 385–387. https://doi.org/10.1663/0007-196X(2006)58[385:ANSOPP]2.0.CO;2</p>
<p>Chodat, R.H. (1899) <em>Dysosmia. In: Bulletin de l’Herbier Boissier</em> 7 (app. 1): 75. [https://www.biodiversitylibrary.org/page/33639769#page/1153/mode/1up]</p>
<p>De Candolle, A.P.&nbsp;(1822)&nbsp;<em>Mémoires de la Société de Physique et d’Histoire Naturelle de Geneve&nbsp;</em>1: 434–436.&nbsp;</p>
<p>De Lemos, R.C.C, Delmira, C.S. &amp; Gladys, F.A.M. (2017) A structural review of foliar glands in <em>Passiflora</em> L. (Passifloraceae).&nbsp;<em>PloS one</em>&nbsp;12: 11.&nbsp; https://doi.org/10.1371/journal.pone.0187905</p>
<p>Dettke, G.A. &amp; Santos, R.P. (2011) Morfologia externa, anatomia e histoquímica da antera e grãos de pólen de Passifloraceae do Rio Grande do Sul, Brasil.&nbsp;<em>Revista Brasileira de Biociências</em> 9: S1.</p>
<p>Evaldt, A.C.P., Bauermann, S.G., Cancelli, R.R., Acioli, M. &amp; das Neves, P.C.P. (2011) Morfologia polínica de Passifloraceae Juss. ex Kunth. no Rio Grande do Sul, Brasil. <em>Revista Brasileira de Biociências</em> 9 (1): 75–87.</p>
<p>Feder, N.E.D &amp; O’brien, T.P. (1968) Plant microtechnique: some principles and new methods.&nbsp;<em>American Journal of Botany </em>55 (1): 123–142.&nbsp; https://doi.org/10.1002/j.1537-2197.1968.tb06952.x</p>
<p>Felsenstein, J. (1985) Confidence limits on phylogenies: an approach using the bootstrap.&nbsp;<em>Evolution&nbsp;</em>39 (4): 783–791. https://doi.org/10.1111/j.1558-5646.1985.tb00420.x</p>
<p>Feuillet, C. &amp; MacDougal, J.M. (2003) Uma nova classificação infragenérica de&nbsp;<em>Passiflora</em>&nbsp;L (Passifloraceae).&nbsp;<em>Passiflora</em>&nbsp;13: 34–38. https://doi.org/10.2307/3393379</p>
<p>Feuillet, C. &amp; MacDougal, J. (2007) Passifloraceae. <em>In</em>: Kubitzki, K. (Ed.) <em>The families and genera of vascular plants</em>, vol. 9, Springer-Verlag, Berlin, pp. 270–280. https://doi.org/10.1007/978-3-540-32219-1_35</p>
<p>García, A.M.T., Galati, B.G. &amp; Anton, A.M. (2002) Microsporogenesis, microgametogenesis and pollen morphology of <em>Passiflora</em> spp. (Passifloraceae<em>).&nbsp;Botanical Journal of the Linnean Society </em>139 (4): 383–394. &nbsp;https://doi.org/10.1046/j.1095-8339.2002.00072.x</p>
<p>Gardner, G. (1845) Contributions towards a Flora of Brazil. <em>London Journal of Botany</em> 4: 97–136.</p>
<p>Gerrits, P.O. &amp; Smid, L. (1983) A new, less toxic polymerization system for the embedding of soft tissues in glycol methacrylate and subsequent preparing of serial sections.&nbsp;<em>Journal of Microscopy</em>&nbsp;132 (1): 81–85.&nbsp; https://doi.org/10.1111/j.1365-2818.1983.tb04711.x</p>
<p>Giudicelli, G.C., Mäder, G. &amp; Brandão de Freitas, L. (2015) Efficiency of ITS sequences for DNA barcoding in <em>Passiflora</em> (Passifloraceae).&nbsp;<em>International Journal of Molecular Sciences</em>&nbsp;16 (4): 7289–7303. &nbsp;https://doi.org/10.3390/ijms16047289</p>
<p>Green, P.S. (1972) <em>Passiflora</em> in Australasia and the Pacific . <em>Kew Bulletin</em> 26: 539–558. https://doi.org/10.2307/4120317</p>
<p>Hall, T. (2004) BioEdit version 7.0.0.&nbsp;Distributed by the author. Available from: www.mbio.ncsu.edu/BioEdit/bioedit.html (accessed 4 October 2019)</p>
<p>Harms, H. (1922) <em>Repertorium novarum specierum regni vegetabilis</em> 18: 296.</p>
<p>Harms, H. (1923) Beiträge zur Kenntnis der amerikanischen Passifloraceen. I. <em>Repertorium novarum specierum regni vegetabilis</em> 19 (4–7): 56–60. https://doi.org/10.1002/fedr.19230190404</p>
<p>Harms, H. (1925) <em>Die natürlichen Pflanzenfamilien</em> 21. pp. 470–507.</p>
<p>Hooker, W.J. (1843) <em>Botanical Magazine</em> 69: t.&nbsp;4009. [https://www.biodiversitylibrary.org/page/433768#page/141/mode/1up]</p>
<p>Huelsenbeck, J.P. &amp; Ronquist, F. (2005) <em>MrBayes: a Program for the Bayesian Inference of Phylogeny</em>. v. 3.1. 2.&nbsp;Rochester: New York.</p>
<p>Imig, C.D., Milward-de-Azevedo, M.A. &amp; Cervi A. C. (2018) Passifloraceae sensu stricto de Minas Gerais, Brasil.&nbsp;<em>Rodriguésia</em>&nbsp;69: 4.&nbsp; https://doi.org/10.1590/2175-7860201869415</p>
<p>Johansen, D.A. (1940)&nbsp;<em>Plant microtechnique</em>. McGraw-Hill Book Company, Inc: London, 530 pp.</p>
<p>Johri, B.M., Ambergaokar, K.B. &amp; Srivastava, O.S. (1992) <em>Comparative Embryology of Angiosperms</em>, 1. Berlin Heidelberg, Springer-Verlag., 614 pp.</p>
<p>Keijzer, C.J. (1987) <em>The processes of anther dehiscence and pollen dispersal</em>. II. <em>The formation and the transfer mechanism of pollenkitt, cell-wall development of the loculus tissues and a function of orbicules in pollen dispersal</em>.&nbsp;New Phytologist, pp. 499–507.&nbsp; https://doi.org/10.1111/j.1469-8137.1987.tb00887.x</p>
<p>Killip, E.P. (1922) <em>Journal of the Washington Academy of Sciences</em> 12 (11): 256. [https://www.biodiversitylibrary.org/page/5440284#page/264/mode/1up]</p>
<p>Killip, E.P. (1938) The American species of Passifloraceae. <em>Publication Field Museum of Natural History—Botanical Series</em> 19 (1–2): 1–613. [https://www.biodiversitylibrary.org/page/2396469#page/7/mode/1up]</p>
<p>Krosnick, S.E., Porter-Utley, K.E., MacDougal, J.M., Jørgensen, P.M. &amp; McDade, L.A. (2013) New insights into the evolution of <em>Passiflora</em> subgenus <em>Decaloba</em> (Passifloraceae): phylogenetic relationships and morphological synapomorphies. <em>Systematic Botany</em>&nbsp;38 (3): 692–713. https://doi.org/10.1600/036364413X670359</p>
<p>Kunt, C.S. Humboldt, F.W.H.A., Bonpland, A.J. &amp; Kunth, C.S. (1817) Passifloreae.&nbsp;<em>Nova genera et species plantarum</em> 2: 126–144.</p>
<p>Lamark, J.B.P.A.M. (1789) <em>Granadille</em>, <em>Passiflora. In: Encyclopédie méthodique. Botânica</em> 3 (1): 39. [https://www.biodiversitylibrary.org/page/721474#page/46/mode/1up]</p>
<p>Linnaeus, C.V. (1753) <em>Species Plantarum</em> vol. 2. Imprensis Laurentii Salvii, pp. 955–959.</p>
<p>Lorenz-Lemke, A.P., Muschner, V.C., Bonatto, S.L., Cervi, A.C., Salzano, F.M. &amp; Freitas, L.B. (2005) Phylogeographic inferences concerning evolution of Brazilian <em>Passiflora actinia</em> and <em>P. elegans</em> (Passifloraceae) based on ITS (nrDNA) variation.&nbsp;<em>Annals of Botany</em> 95 (5): 799–806.&nbsp; https://doi.org/10.1093/aob/mci079</p>
<p>MacDougal, J.M. (1994) Revision of <em>Passiflora</em> subgenus <em>Decaloba</em> section <em>Pseudodysosmia</em> (Passifloraceae).&nbsp;<em>Systematic Botany Monographs</em>: 1–146.&nbsp; https://doi.org/10.2307/25027834</p>
<p>Masters, M.T. (1871) <em>Transactions of the Linnean Society of London</em> 27: 629. https://doi.org/10.1111/j.1096-3642.1871.tb00221.x</p>
<p>Masters, M.T. (1872) Passifloraceae.&nbsp;<em>Flora Brasiliensis</em> 13 (1): 574–621. [https://www.biodiversitylibrary.org/page/143449#page/408/mode/1up]</p>
<p>Mcdowell, E.M. &amp; Trump, B.F. (1976) Histologic fixatives suitable for diagnostic light and electron microscopy.&nbsp;<em>Archives of pathology &amp; laboratory medicine</em> 100 (8): 405–414.</p>
<p>Meruvia, M.Y.L., Bona, C. &amp; Cervi, A.C. (1993) Anatomia foliar de <em>Passiflora campanulata</em> Maters (Passifloraceae). <em>Acta Biológica Paranaense</em>&nbsp;22 (1,2,3,4): 45–62.&nbsp; https://doi.org/10.5380/abpr.v22i0.721</p>
<p>Milward-de-Azevedo, M.A. (2008) <em>Análise da valoração dos impactos ambientais e da demanda de fitoterápicos oriundos do maracujá no Brasil</em>, 11. Rev. FAE, Curitiba, pp. 19–32.</p>
<p>Milward-de-Azevedo, M.A., Baumgratz, J.F.A. &amp; Gonçalves-Esteves, V. (2012) A taxonomic revision of <em>Passiflora</em> subgenus <em>Decaloba</em> (Passifloraceae) in Brazil.&nbsp;<em>Phytotaxa</em>&nbsp;53 (1): 1–68. https://doi.org/10.11646/phytotaxa.53.1.1</p>
<p>Morales, M.M.B., Morales, A.C.A. &amp; Varela, O.M.A. (2015) Morfología de <em>Passiflora</em>: una guía para la descripción de sus especies. <em>Revista de Investigación Agraria y Ambiental</em>&nbsp;6 (1): 91–109. https://doi.org/10.22490/21456453.1266</p>
<p>Mort, M.E., Archibald, J.K., Randle, C.P., Levsen, N.D.O’Leary, T.R., Topalov Katarina, Wiegand C.M. &amp; Crawford, D.J. (2007) Inferring phylogeny at low taxonomic levels: utility of rapidly evolving cpDNA and nuclear ITS loci. <em>American Journal of Botany</em>&nbsp;94 (2): 173–183. https://doi.org/10.3732/ajb.94.2.173</p>
<p>Muschner, V.C. (2005) <em>Filogenia molecular, taxas evolutivas, tempo de divergência e herança organelar em Passiflora L. (Passifloraceae)</em>. Tese (doutourado)—Universidade Federal do Rio Grande do Sul. Curso de Pós-Graduação em Genética e Biologia Molecular, Porto Alegre, 162 pp.</p>
<p>Muschner, V.C., Lorenz, A.P., Cervi, A.C., Bonatto, S.L., Souza-Chies, T.T., Salzano, F.M. &amp; Freitas, L.B. (2003) A first molecular phylogenetic analysis of <em>Passiflora </em>(Passifloraceae).&nbsp;<em>American Journal of Botany</em> 90 (8): 1229–1238.&nbsp; https://doi.org/10.3732/ajb.90.8.1229</p>
<p>Myers, N. Mittermeier, R.A., Mittermeier, C.G., Da Fonseca, G.A. &amp; Kent, J. (2000) Biodiversity hotspots for conservation priorities. <em>Nature</em> 403: 853–858.&nbsp; https://doi.org/10.1038/35002501</p>
<p>Padhye, M.D. &amp; Deshpande, B.G. (1960) The male and female gametophytes of <em>Passiflora foetida</em> L.<em>&nbsp;Proceedings of the Indian Academy of Sciences-Section B</em> 52 (4): 124–130. https://doi.org/10.1007/BF03047273</p>
<p>Pérez, J.O. &amp; D’Eeckenbrugge, G.C. (2017) Morphological characterization in the genus <em>Passiflora</em> L.: an approach to understanding its complex variability.<em>&nbsp;Plant Systematics and Evolution</em> 303 (4): 531–558. https://doi.org/10.1007/s00606-017-1390-2</p>
<p>Pourcel, L., Routaboul, J.M., Cheynier, V., Lepiniec, L. &amp; Debeaujon, I. (2007) Flavonoid oxidation in plants: from biochemical properties to physiological functions.&nbsp;<em>Trends in plant science</em>&nbsp;12 (1): 29–36. https://doi.org/10.1016/j.tplants.2006.11.006</p>
<p>Ramaiya, S.D., Bujang, J.S. &amp; Zakaria, M.H. (2014) Genetic diversity in <em>Passiflora</em> species assessed by morphological and ITS sequence analysis. <em>The Scientific World Journal</em> 2014. https://doi.org/10.1155/2014/598313</p>
<p>Radford, A.E. (1974) <em>Vascular plants systematic</em>. Harper &amp; Row, New York, 891 pp.</p>
<p>Reichenbach, H.G.L. (1828) Conspectus Regni Vegetabilis per gradus naturalis evoluti. <em>Carl Cnobloch, Leipzig</em>, 584 pp. https://doi.org/10.5962/bhl.title.127418</p>
<p>Roussel, H.F.A (1806) <em>Flore du Calvados</em> (ed. 2), 334 pp.</p>
<p>Sharma, K., Mishra, A.K. &amp; Misra R.S. (2008) A simple and efficient method for extraction of genomic DNA from tropical tuber crops.&nbsp;<em>African Journal of Biotechnology</em>&nbsp;7: 8.</p>
<p>Silvério, A. (2009) <em>Aspectos embriológicos de espécies do gênero Passiflora, com ênfase no potencial de herança organelar</em>. Tese (doutourado)—Universidade Federal do Rio Grande do Sul, Setor de Botânica. Curso de Pós-Graduação em Botânica, Porto Alegre. 131 pp.</p>
<p>Silvério, A. &amp; Mariath, J.E.A. (2010) The formation of the stigmatic surface in <em>Passiflora elegans</em> (Passifloraceae).&nbsp;<em>Rodriguésia</em> 61 (3): 569–574.&nbsp; https://doi.org/10.1590/2175-7860201061316</p>
<p>Sims, M.D.J. (1818) <em>Curtis’s Botanical Magazine</em> 45: pl. 1989. [https://www.biodiversitylibrary.org/page/483292#page/134/mode/1up]</p>
<p>Svoboda, H.T. (2019) Sobre el reconocimiento de <em>Passiflora hibiscifolia</em> (Passifloraceae, sección <em>Dysosmia</em>).&nbsp;<em>Acta botánica mexicana</em>: 126. https://doi.org/10.21829/abm126.2019.1391</p>
<p>Svoboda, H.T. &amp; Ballard, H.E. (2018) Phenetic and cladistic studies help clarify species assemblages in <em>Passiflora</em> section <em>Dysosmia</em> (Passifloraceae).&nbsp;<em>Brittonia</em> 70 (1): 15<strong>–</strong>24.&nbsp; https://doi.org/10.1007/s12228-017-9495-z</p>
<p>Svoboda, H.T., MacDougal, J.M. &amp; Ballard, J.H.E. (2016) Typifications and nomenclatural notes in <em>Passiflora</em> section <em>Dysosmia</em> (Passifloraceae).&nbsp;<em>Phytotaxa</em> 288 (2): 101<strong>–</strong>119.&nbsp; https://doi.org/10.11646/phytotaxa.288.2.1</p>
<p>Tamura, K., Stecher, G., Peterson, D., Filipski, A. &amp; Kumar, S. (2013) MEGA6: molecular evolutionary genetics analysis version 6.0.&nbsp;<em>Molecular Biology and Evolution</em> 30 (12): 2725–2729. https://doi.org/10.1093/molbev/mst197</p>
<p>Thiers, B. (2021 [continuously updated])&nbsp;<em>Index Herbariorum: A global directory of public herbaria and associated Staff</em>. New York Botanical Garden’s Virtual Herbarium. Available from: http://sweetgum.nybg.org/ih/ (accessed 24 January 2021)</p>
<p>Thompson, J.D., Higgins, D.G. &amp; Gibson, T.J. (1994) CLUSTAL W: improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position-specific gap penalties and weight matrix choice. <em>Nucleic acids research</em> 22: 4673–4680.&nbsp; https://doi.org/10.1093/nar/22.22.4673</p>
<p>Ulmer, T. &amp; MacDougal, J.M. (2004)&nbsp;<em>Passiflora: passionflowers of the world</em>. Timber Press (OR).</p>
<p>Vanderplank, J. (2013) A revision of <em>Passiflora</em> section <em>Dysosmia</em>: Passifloraceae.&nbsp;<em>Curtis’s botanical magazine</em> 30 (4): 318–387.&nbsp; https://doi.org/10.1111/curt.12050</p>
<p>Vellozo, J.M.C. (1831 (1927)) <em>Passiflora</em>. <em>In: Florae Fluminensis Icones</em> 9: t. 87.</p>
<p>Vermerris, W. &amp; Nicholson, R. (2008) Families of phenolic compounds and means of classification. <em>In:&nbsp;Phenolic compound biochemistry</em>. Springer, Dordrecht, pp. 1–34. https://doi.org/10.1007/978-1-4020-5164-7_1</p>
<p>White, T.J., Bruns, T., Lee, S. &amp; Taylor, J. (1990) Amplification and direct sequencing of fungal ribosomal RNA genes for phylogenetics. <em>PCR protocols: A Guide to Methods and Applications</em>&nbsp;18 (1): 315–322. https://doi.org/10.1016/B978-0-12-372180-8.50042-1</p>