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Taxonomy, biogeography and evolution of plants

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Molecular systematics of subtribe Banksiinae (Banksia and Dryandra; Proteaceae) Based on cpDNA and nrDNA sequence data: Implications for taxonomy and biogeography

Austin R. Mast
11(4) pp.321 - 342


24 articles found in Crossref database.

Paraphyly, modern systematics and the transfer of Dryandra into Banksia (Proteaceae): a response to George
Thiele K. R., Weston P. H., Mast A. R.
Australian Systematic Botany. 2015 28(3). p.194
Plant bugs, plant interactions and the radiation of a species rich clade in south-western Australia: Naranjakotta, gen. nov. and eighteen new species (Insecta : Heteroptera : Miridae : Orthotylinae)
Cassis Gerasimos, Symonds Celia
Invertebrate Systematics. 2016 30(2). p.95
The transfer of Dryandra R.Br. to Banksia L.f. (Proteaceae)
Mast Austin R., Thiele Kevin
Australian Systematic Botany. 2007 20(1). p.63
South‐western Australia, Cinderella of the world's temperate floristic regions, 2
Hopper Stephen D.
Curtis's Botanical Magazine. 2004 21(2). p.132
Progress in Botany (2001)
Sytsma Kenneth J., Hahn William J.
Leaf fossils of Banksia (Proteaceae) from New Zealand: An Australian abroad
Carpenter Raymond J., Jordan Gregory J., Lee Daphne E., Hill Robert S.
American Journal of Botany. 2010 97(2). p.288
Molecular phylogenetics of the Meteoriaceae s. str.: focusing on the genera Meteorium and Papillaria
Quandt Dietmar, Huttunen Sanna, Streimann Heinar, Frahm Jan Peter, Frey Wolfgang
Molecular Phylogenetics and Evolution. 2004 32(2). p.435
A smaller Macadamia from a more vagile tribe: inference of phylogenetic relationships, divergence times, and diaspore evolution in Macadamia and relatives (tribe Macadamieae; Proteaceae)
Mast Austin R., Willis Crystal L., Jones Eric H., Downs Katherine M., Weston Peter H.
American Journal of Botany. 2008 95(7). p.843
Molecular relationship ofHymenophytonspecies (Metzgeriidae, Hepaticophytina) in New Zealand and Tasmania. Studies in austral temperate rain forest bryophytes 5
Pfeiffer Tanja
New Zealand Journal of Botany. 2000 38(3). p.415
Historical biogeography and the origin of stomatal distributions inBanksiaandDryandra(Proteaceae) based on their cpDNA phylogeny
Mast Austin R., Givnish Thomas J.
American Journal of Botany. 2002 89(8). p.1311
Early evidence of xeromorphy in angiosperms: Stomatal encryption in a new eocene species of Banksia (Proteaceae) from Western Australia
Carpenter Raymond J., McLoughlin Stephen, Hill Robert S., McNamara Kenneth J., Jordan Gregory John
American Journal of Botany. 2014 101(9). p.1486
Solar radiation as a factor in the evolution of scleromorphic leaf anatomy in Proteaceae
Jordan Gregory J., Dillon Rebecca A., Weston Peter H.
American Journal of Botany. 2005 92(5). p.789
Biogeography and speciation of terrestrial fauna in the south‐western Australian biodiversity hotspot
Rix Michael G., Edwards Danielle L., Byrne Margaret, Harvey Mark S., Joseph Leo, Roberts J. Dale
Biological Reviews. 2015 90(3). p.762
New species of xeromorphic Banksia (Proteaceae) foliage and Banksia-like pollen from the late Eocene of Western Australia
Carpenter Raymond J., Milne Lynne A.
Australian Journal of Botany. 2020 68(3). p.165
Molecular Plant Taxonomy (2014)
Weston Peter H.
The Evolutionary Ecology of Sprouting in Woody Plants
Bond William J., Midgley Jeremy J.
International Journal of Plant Sciences. 2003 164(S3). p.S103
Evidence for convergent evolution among phylogenetically distant rare species of Tetratheca (Elaeocarpaceae, formerly Tremandraceae) from Western Australia
Butcher Ryonen, Byrne Margaret, Crayn Darren M.
Australian Systematic Botany. 2007 20(2). p.126
Banksia born to burn
He Tianhua, Lamont Byron B., Downes Katherine S.
New Phytologist. 2011 191(1). p.184
An assessment of old and new DNA sequence evidence for the paraphyly of Banksia with respect to Dryandra (Proteaceae)
Mast Austin R., Jones Eric H., Havery Shawn P.
Australian Systematic Botany. 2005 18(1). p.75
Radiation of the Australian flora: what can comparisons of molecular phylogenies across multiple taxa tell us about the evolution of diversity in present–day communities?
Pennington P. T., Cronk Q. C. B., Richardson J. A., Crisp Mike, Cook Lyn, Steane Dorothy
Philosophical Transactions of the Royal Society of London. Series B: Biological Sciences. 2004 359(1450). p.1551
Late Quaternary climate change and spatial genetic structure in the shrubBanksia hookeriana
KRAUSS SIEGFRIED L., HE TIANHUA, LAMONT BYRON B., MILLER BEN P., ENRIGHT NEAL J.
Molecular Ecology. 2006 15(4). p.1125
The Case Against the Transfer ofDryandratoBanksia(Proteaceae)1
George Alex S.
Annals of the Missouri Botanical Garden. 2014 100(1-2). p.32
Phylogeny, biogeography, and the evolution of life-history traits in Leucadendron (Proteaceae)
Barker Nigel P., Vanderpoorten Alain, Morton Cynthia M., Rourke John P.
Molecular Phylogenetics and Evolution. 2004 33(3). p.845
Taxonomic patterns in the distribution of polyols within the Proteaceae
Bieleski R. L., Briggs B. G.
Australian Journal of Botany. 2005 53(3). p.205

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