A taxonomic reassessment of the Tanacetum aureum (Asteraceae, Anthemideae) species group: insights from morphological and molecular data

A taxonomic reassessment of the Tanacetum aureum (Lam.) Greuter, M.V.Agab. & Wagenitz (Asteraceae, Anthemideae) species group was performed. This group of species is distinguished by herbaceous perennial habit, (1-)2-10(-80) disciform capitula, with compact to lax corymbs and strongly to moderately convex receptacle. A multivariate statistical analysis of 58 morphological characters using Ward cluster, principal component analyses, and molecular phylogenetic analyses of nrDNA ITS and cpDNA rpL32-trnL(UAG) + ndhF-rpL32 spacer sequence datasets were conducted. Both datasets corroborated that T. aureum, T. oligocephalum (DC.) Sch.Bip., and T. heimerlii (Nabelek) Parsa could be differentiated as separate species. An identification key of the studied taxa and a description and conspectus of the species are presented.

A taxonomic reassessment of the Tanacetum aureum (Asteraceae, Anthemideae) species group: insights from morphological and molecular data

A taxonomic reassessment of the Tanacetum aureum (Lam.) Greuter, M.V.Agab. & Wagenitz (Asteraceae, Anthemideae) species group was performed. This group of species is distinguished by herbaceous perennial habit, (1-)2-10(-80) disciform capitula, with compact to lax corymbs and strongly to moderately convex receptacle. A multivariate statistical analysis of 58 morphological characters using Ward cluster, principal component analyses, and molecular phylogenetic analyses of nrDNA ITS and cpDNA rpL32-trnL(UAG) + ndhF-rpL32 spacer sequence datasets were conducted. Both datasets corroborated that T. aureum, T. oligocephalum (DC.) Sch.Bip., and T. heimerlii (Nabelek) Parsa could be differentiated as separate species. An identification key of the studied taxa and a description and conspectus of the species are presented.

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  • Boissier E (1875). Flora Orientalis, Vol. 3. Geneva, Switzerland: H. Georg (in Latin).
  • Bremer K, Humphries CJ (1993). Generic monograph of the Asteraceae–Anthemideae. Bull Nat Hist Mus Lond Bot 23: 71–177.
  • Carine MA, Lavinia R, Little R, Russell S, Guerra AS (2007). Molecular and morphological evidence for hybridization between endemic Canary Island Convolvolus. Bot J Linn Soc 154: 187–204.
  • Chehregani A, Hajisadeghian S (2009). New chromosome counts in some species of Asteraceae from Iran. Nord J Bot 27: 247–250.
  • De Candolle AP (1838). Prodromus Systematis Naturalis Regni Vegetabilis, Vol. 7. Paris, France: Treuttel et Würtz (in Latin).
  • Djavadi SB (2008). Three new records Tanacetum for the flora of Iran. Rostaniha 9: 23–32.
  • Farris JS, Källersjö M, Kluge AG, Bult C (1995). Testing signiŞcance of incongruence. Cladistics 10: 315–319.
  • Felsenstein J (1985). Confidence limits on phylogenies: an approach using the bootstrap. Evolution 39: 783–791.
  • Greuter W, Aghababian M, Wagenitz G (2005). Vaillant on Compositae—systematic concepts and nomenclatural impact. Taxon 54: 149–174.
  • Grierson AJC (1975). Tanacetum. In: Davis PH, editor. Flora of Turkey and the East Aegean Islands, Vol. 5. Edinburgh, UK: Edinburgh University Press, pp. 283–285.
  • Hall TA (1999). BioEdit: A user-friendly biological sequence alignment editor and analysis program for Windows 95/98/ NT. Nucl Acids Symp Ser 41: 95–98.
  • Kandemir A (2012). Checklist of Turkish flora (vascular plants). Türkiye Bitkileri Listesi 204. İstanbul, Turkey: Nezahat Gökyiğit Botanik Bahçesi Yayınları Flora Dizisi.
  • Kazemi M, Sonboli A, Zare Maivan H, Kazempour Osaloo S, Mozaffarian V (2014). Tanacetum tarighii sp. nov. (Asteraceae- Anthemideae) from northwest of Iran. Ann Bot Fenn (in press).
  • Khandjian NS (1975). New data on chromosome number in Tanacetum L. and Leucanthemum Mill. Biol Zhurn Armenii 28: 87–89.
  • McNeill J, Barrie FR, Buck WR, Demoulin V, Greuter W, Hawksworth DL, Herendeen S, Knapp S, Marhold K, Prado J et al. (2012). International Code of Nomenclature for algae, fungi, and plants (Melbourne Code) adopted by the Eighteenth International Botanical Congress Melbourne, Australia, July 2011. Regnum Vegetabile 154: 1–240.
  • Mozaffarian V (2005). Notes on the tribe Anthemideae (Compositae), new species, new records and new combinations for Iran. Iran J Bot 11: 115–127.
  • Mozaffarian V (2008). Flora of Iran. No. 59, Compositae: Anthemideae and Echinopeae. Tehran, Iran: Ministry of Agriculture, pp. 134–198.
  • Nábělek F (1925). Iter Turcico-Persicum, plantarum collectarum enumeration (Compositae), pars II. No. 52. 20. Brno, Czechoslovakia: Brno Přírodověd Fakulta (in Latin).
  • Oberprieler C (2001). Phylogenetic relationships in Anthemis L. (Compositae, Anthemideae) based on nrDNA ITS sequence variation. Taxon 50: 745–762.
  • Oberprieler C, Himmelreich S, Kallersjo M, Vallès J, Vogt R (2009). Anthemideae. In: Funk V, Susanna A, Stuessy TF, Bayer R, editors. Systematics Evolution and Biogeography of the Compositae. Vienna, Austria: IAPT, pp. 631–666.
  • Oberprieler C, Vogt R, Watson LE (2006). XVI. Tribe Anthemideae Cass. In: Kadereit JW, Jeffrey C, editors. The Families and Genera of Vascular Plants, Flowering Plants, Eudicots, Asterales, Vol. VIII. Berlin, Germany: Springer, pp. 342–374.
  • Olanj N, Sonboli A, Riahi H, Kazempour Osaloo S (2013). Karyomorphological study of nine Tanacetum taxa (Asteraceae, Anthemideae) from Iran. Caryologia 66: 321–332.
  • Page RDM (1996). TreeView: An application to display phylogenetic trees on personal computers. Computer Appl Biosci 12: 357– 358.
  • Parsa A (1949). Flore de l’Iran. Vol. III. Tehran, Iran: Ministry of Agriculture (in French).
  • Pelser PB, Kennedy AH, Tepe EJ, Shidler JB, Nordenstam B, Kadereit JW, Watson LE (2010). Patterns and causes of incongruence between plastid and nuclear senecioneae (Asteraceae) phylogenies. Am J Bot 97: 856–873.
  • Podlech D (1986). Tanacetum L. In: Rechinger KH, editor. Flora Iranica, No. 158. Graz: Austria, pp. 88–148.
  • Posada D, Buckley T (2004). Model selection and model averaging in phylogenetics: advantages of Akaike information criterion and Bayesian approaches over likelihood ratio tests. Syst Biol 53: 793–808.
  • Ronquist F, Huelsenbeck JP (2003). MrBayes 3: Bayesian phylogenetic inference under mixed models. Bioinformatics 19: 1572–1574.
  • Schultz CH (1844). Über die Tanaceteen. Neustadt an der Haardt, Germany: Trautmann (in German).
  • Shaw J, Lickey EB, Schilling EE, Small RL (2007). Comparison of whole chloroplast genome sequences to choose noncoding regions for phylogenetic studies in angiosperms: The tortoise and the hare III. Am J Bot 94: 275–288.
  • Simmons MP, Ochoterena H (2000). Gaps as characters in sequence- based phylogenetic analyses. Syst Biol 49: 369–381.
  • Sonboli A, Kazempour Osaloo S, Mozaffarian V, Naderi K, Larti M (2010a). Tanacetum zahlbruckneri (Compositae-Anthemideae), an enigmatic record from Iran and its phylogenetic position. Rostaniha 11: 175–181.
  • Sonboli A, Kazempour Osaloo S, Riahi H, Mozaffarian V (2010b). Tanacetum joharchii sp. nov. (Asteraceae–Anthemideae) from Iran, and its taxonomic position based on molecular data. Nord J Bot 28: 74–78.
  • Sonboli A, Kazempour Osaloo S, Vallès J, Oberprieler C (2011a). Systematic status and phylogenetic relationships of the enigmatic Tanacetum paradoxum Bornm. (Asteraceae, Anthemideae): evidences from nr DNA ITS, micromorphological, and cytological data. Plant Syst Evol 292: 85–93.
  • Sonboli A, Oberprieler C (2010). Phylogenetic relationship and taxonomic position of Xylanthemum tianschanicum (Krasch.) Muradyan (Compositae, Anthemideae) as inferred from nrDNA ITS data. Biochem Syst Ecol 38: 702–707.
  • Sonboli A, Oberprieler C (2012). Insights into the phylogenetic and taxonomic position of Tanacetum semenovii Herder (Compositae, Anthemideae) based on nrDNA ITS sequences data. Biochem Syst Ecol 45: 166–170.
  • Sonboli A, Olanj N, Pourmirzaei A (2011b). Biosystematics and phylogeny of Tanacetum fisherae, a new record from Iran. Rostaniha 12: 165–175.
  • Sonboli A, Olanj N, Gholipour A, Mozaffarian V (2013). Ajania semnanensis sp. nov. (Asteraceae – Anthemideae), from northeast Iran: insights from karyological and micromorphological data. Nord J Bot 31: 590–594.
  • Sonboli A, Stroka K, Kazempour Osaloo S, Oberprieler C (2012). Molecular phylogeny and taxonomy of Tanacetum L. (Compositae, Anthemideae) inferred from nrDNA ITS and cpDNA trnH–psbA sequence variation. Plant Syst Evol 298: 431–444.
  • Swofford DL (2002). PAUP*: Phylogenetic Analysis Using Parsimony (*And Other Methods), ver. 4.0b10. Sunderland, MA, USA: Sinauer Associates.
  • Thompson JD, Higgins DG, Gibson TJ (1994). Clustal W: Improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position, speciŞc gap penalties, and weight matrix choice. Nucleic Acids Res 22: 4673–4680.
  • Tzvelev NN (1995). Tanacetum. In: Shiskin BK, Bobrov EG, editors. Flora of the U.S.S.R., Vol. 26. Koenigstein, Germany: Bishen Singh Mahendra Pal Singh and Koeltz Scientific Books, pp. 367–418.
  • Vallès J, Garnatje T, Garcia S, Sanz M, Korobkov A (2005). Chromosome numbers in the tribes Anthemideae and Inuleae (Asteraceae). Bot J Linn Soc 148: 77–85.
  • Watanabe W (2013). Index to Chromosome Numbers in Asteraceae. Kobe, Japan: Kobe University Library. Available at http://www. lib.kobe-u.ac.jp/infolib/meta_pub/G0000003asteraceae_e.
  • Young ND, Healy J (2003). GapCoder automates the use of indel characters in phylogenetic analysis. BMC Bioinformatics 4: 6.
Turkish Journal of Botany-Cover
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  • Yayın Aralığı: Yılda 6 Sayı
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