Phylogenetic, cytogenetic and morphological evidences are critical for recognizing a new genus: Valdesiana, an Iberian intergeneric allopolyploid between Schenkia and Exaculum

Author:

Díaz Lifante ZoilaORCID,Escudero Marcial,Andrés Camacho Cristina,García Llamas Carmen,Loureiro Joao,Castro Sílvia

Abstract

AbstractThe present taxonomic status of Schenkia elegans, endemism recently described in the Iberian Peninsula, and its relationship with the sympatric and the nearest morphological species Schenkia spicata and Exaculum pusillum is revaluated. Different kinds of evidence based on plant morphology, ploidy estimation by flow cytometry, karyotype characterisation, and phylogenetic data have been analysed. Two maternally inherited plastid DNA regions (trnL intron and trnL-F spacer) and biparentally inherited nuclear ribosomal DNA sequence region (nrDNA ITS) have been used. Comparative multivariate analyses show an intermediate morphology of the S. elegans plants between the other two species studied. Flow cytometry and karyotype analyses in S. elegans point to an allopolyploid origin, with the latter constituted by a mixture of those of the diploids S. spicata and E. pusillum. Phylogenetic analyses based on plastid and nuclear DNA regions cluster S. elegans in two different clades, those of S. spicata and E. pusillum, suggesting a possible hybrid origin of S. elegans between both species, acting as maternal or paternal progenitors. In consequence, taking in consideration the taxonomic relationships among genera (Exaculum, Schenkia and the closely related genus Zeltnera found in America), a monotypic genus Valdesiana gen. nov. is proposed to accommodate the allopolyploid species, combined as V. elegans, for which immediate conservation measures must be evaluated.

Publisher

Springer Science and Business Media LLC

Subject

Plant Science,Ecology, Evolution, Behavior and Systematics

Reference131 articles.

1. Abbott RJ, Albach D, Ansell S, Arntzen JW, Baird SJE, Bierne N, Boughman J, Brelsford SA, Buerkle CA, Buggs R, Butlin RK, Dieckmann U, Eroukhmanoff F, Grill A, Cahan SH, Hermansen JS, Hewitt G, Hudson AG, Jiggins C, Jones J, Keller B, Marczewski T, Mallet J, Martínez-Rodríguez P, Möst M, Mullen S, Nichols R, Nolte AW, Parisod C, Pfennig K, Rice AM, Ritchie MG, Seifert B, Smadja CM, Stelkens R, Szymura JM, Väinölä R, Wolf JBW, Zinner D (2013) Hybridization and speciation. J Evol Biol 26:229–246. https://doi.org/10.1111/j.1420-9101.2012.02599.x

2. Adams KL, Wendel JF (2005) Polyploidy and genome evolution in plants. Curr Opin Pl Biol 8:135–141. https://doi.org/10.1016/j.pbi.2005.01.001

3. Alfaro M, Zoller S, Lutzoni F (2003) Bayes or bootstrap? A simulation study comparing the performance of Bayesian Markov chain Monte Carlo sampling and bootstrapping in assessing phylogenetic confidence. Molec Biol Evol 20:255–266. https://doi.org/10.1093/molbev/msg028

4. Alix K, Gérard PR, Schwarzacher T, Heslop-Harrison (2017) Polyploidy and interspecific hybridization: partners for adaptation, speciation and evolution in plants. Ann Bot (Oxford) 120:183–194. https://doi.org/10.1093/aob/mcx079

5. Anghelescu NEDG, Kertész H, Constantin N, Simon-Gruița A, Duță Cornescu G, Pojoga MD et al (2021) New intergeneric orchid hybrid found in Romania × Pseudorhiza nieschalkii (Senghas) P.F. Hunt nothosubsp. siculorum H. Kertész & N. Anghelescu, 2020. PLoS ONE 16:e0241733. https://doi.org/10.1371/journal.pone.0241733

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