Literature DB >> 16182153

A phylogeny of cycads (Cycadales) inferred from chloroplast matK gene, trnK intron, and nuclear rDNA ITS region.

Shu-Miaw Chaw1, Terrence W Walters, Chien-Chang Chang, Shu-Hsuan Hu, Shin-Hsiao Chen.   

Abstract

Phylogenetic relationships among the three families and 12 living genera of cycads were reconstructed by distance and parsimony criteria using three markers: the chloroplast matK gene, the chloroplast trnK intron and the nuclear ITS/5.8S rDNA sequence. All datasets indicate that Cycadaceae (including only the genus Cycas) is remotely related to other cycads, in which Dioon was resolved as the basal-most clade, followed by Bowenia and a clade containing the remaining nine genera. Encephalartos and Lepidozamia are closer to each other than to Macrozamia. The African genus Stangeria is embedded within the New World subfamily Zamiodeae. Therefore, Bowenia is an unlikely sister to Stangeria, contrary to the view that they form the Stangeriaceae. The generic status of Dyerocycas and Chigua is unsupportable as they are paraphyletic with Cycas and the Zamia, respectively. Nonsense mutations in the matK gene and indels in the other two datasets lend evidence to reinforce the above conclusions. According to the phylogenies, the past geography of the genera of cycads and the evolution of character states are hypothesized and discussed. Within the suborder Zamiieae, Stangeria, and the tribe Zamieae evolved significantly faster than other genera. The matK gene and ITS/5.8S region contain more useful information than the trnK intron in addressing phylogeny. Redelimitations of Zamiaceae, Stangeriaceae, subfamily Encephalartoideae and subtribe Macrozamiineae are necessary.

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Year:  2005        PMID: 16182153     DOI: 10.1016/j.ympev.2005.01.006

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


  16 in total

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Authors:  Paula J Rudall; Richard M Bateman
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Authors:  Da Cheng Hao; Shi Lin Chen; Pei Gen Xiao
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6.  Nuclear ribosomal ITS functional paralogs resolve the phylogenetic relationships of a late-Miocene radiation cycad Cycas (Cycadaceae).

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9.  Chloroplast phylogenomics indicates that Ginkgo biloba is sister to cycads.

Authors:  Chung-Shien Wu; Shu-Miaw Chaw; Ya-Yi Huang
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10.  DNA barcoding in the cycadales: testing the potential of proposed barcoding markers for species identification of cycads.

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