Literature DB >> 15019629

Preliminary phylogeny of Valerianaceae (Dipsacales) inferred from nuclear and chloroplast DNA sequence data.

Charles D Bell1.   

Abstract

Valerianaceae is a relatively small (ca. 350 species), but morphologically diverse angiosperm clade. Sequence data from the entire ndhF gene, the trnL-F intergenic spacer region, the trnL intron, the matK region, the rbcL-atpB intergenic spacer region and internal transcribed spacer (ITS) region of nuclear ribosomal DNA were collected for 21 taxa within Dipsacaceae and Valerianaceae (1 and 20, respectively). These data were included in several phylogenetic analyses with previously published sequences from Dipsacales. Results from these analyses (maximum parsimony, maximum likelihood, and Bayesian analysis) are in strong agreement with many of the conclusions from previous studies, most importantly: (1) Valerianaceae is sister to Dipsacaceae; (2) Triplostegia is more closely related to species of Dipsacaceae than to Valerianaceae; and (3) Valeriana appears not to be monophyletic, with Valeriana celtica falling outside the remainder of the species of Valeriana sampled here (with very strong support). With the exception of V. celtica, these data support two major clades within Valeriana; one that is exclusively New World and another that is distributed in both the Old and New World. Although the species of Valerianaceae and its sister group Dipsacaceae plus Triplostegia, are widely distributed in the Northern Hemisphere, and the data imply that Valerianaceae diversified initially in Asia (the Himalayan Patrinia and Nardostachys falling at the base of the clade), the center of modern species diversity for the group is in the Andes of South America with as many as 175 species restricted to that region. Although the exclusively South American taxa form a clade in the chloroplast and combined ITS and chloroplast analyses, support values tend to be low. Future studies will need to include additional data, in the form of both characters and taxa, before any strong conclusions about the character evolution, diversification, and biogeography of the South American valerians can be made.

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Year:  2004        PMID: 15019629     DOI: 10.1016/j.ympev.2003.07.006

Source DB:  PubMed          Journal:  Mol Phylogenet Evol        ISSN: 1055-7903            Impact factor:   4.286


  7 in total

1.  Molecular Systematics of Valerianella Mill. (Caprifoliaceae): Challenging the Taxonomic Value of Genetically Controlled Carpological Traits.

Authors:  Itziar Arnelas; Ernesto Pérez-Collazos; Josefa López-Martínez; Juan Antonio Devesa; Pilar Catalán
Journal:  Plants (Basel)       Date:  2022-05-10

2.  Identification of new cytotypes of Valeriana jatamansi Jones, 1970 (Valerianaceae) from North-Western Himalayan region of India.

Authors:  Savita Rani; Tilak Raj Sharma; Rakesh Kapila; Rakesh Kumar Chahota
Journal:  Comp Cytogenet       Date:  2015-08-07       Impact factor: 1.800

3.  Chemical analysis and biological activity of the essential oils of two valerianaceous species from China: Nardostachys chinensis and Valeriana officinalis.

Authors:  Jihua Wang; Jianglin Zhao; Hao Liu; Ligang Zhou; Zhilong Liu; Jingguo Wang; Jianguo Han; Zhu Yu; Fuyu Yang
Journal:  Molecules       Date:  2010-09-14       Impact factor: 4.411

Review 4.  Plant Species of Sub-Family Valerianaceae-A Review on Its Effect on the Central Nervous System.

Authors:  Gitishree Das; Han-Seung Shin; Rosa Tundis; Sandra Gonçalves; Ourlad Alzeus G Tantengco; Maria G Campos; Rosaria Acquaviva; Giuseppe Antonio Malfa; Anabela Romano; Joyce Ann H Robles; Mariel Q Clores; Jayanta-Kumar Patra
Journal:  Plants (Basel)       Date:  2021-04-22

5.  Valeriana pilosa Roots Essential Oil: Chemical Composition, Antioxidant Activities, and Molecular Docking Studies on Enzymes Involved in Redox Biological Processes.

Authors:  Patricia Minchán-Herrera; Roberto O Ybañez-Julca; Ivan M Quispe-Díaz; Edmundo A Venegas-Casanova; Rafael Jara-Aguilar; Felipe Salas; Liz Zevallos-Escobar; Osvaldo Yáñez; Ricardo Pino-Rios; Pedro Buc Calderon; Julio Benites
Journal:  Antioxidants (Basel)       Date:  2022-07-07

6.  Biotechnological Potential of Cephalaria uralensis (Murray) Roem. & Schult. and C. gigantea (Ledeb.) Bobrov-Comparative Analysis of Plant Anatomy and the Content of Biologically Active Substances.

Authors:  Małgorzata Chrząszcz; Katarzyna Szewczyk; Dorota Tchórzewska
Journal:  Plants (Basel)       Date:  2021-05-15

7.  Authentication of Herbal Medicines Dipsacus asper and Phlomoides umbrosa Using DNA Barcodes, Chloroplast Genome, and Sequence Characterized Amplified Region (SCAR) Marker.

Authors:  Inkyu Park; Sungyu Yang; Wook Jin Kim; Pureum Noh; Hyun Oh Lee; Byeong Cheol Moon
Journal:  Molecules       Date:  2018-07-17       Impact factor: 4.411

  7 in total

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