Register      Login
Australian Systematic Botany Australian Systematic Botany Society
Taxonomy, biogeography and evolution of plants

Articles citing this paper

A molecular phylogeny of the grass family (Poaceae) based on the sequences of nuclear ribosomal DNA (ITS)

C. Hsiao, S. W. L. Jacobs, N. J. Chatterton and K. H. Asay
11(6) pp.667 - 688


66 articles found in Crossref database.

A classification of the Chloridoideae (Poaceae) based on multi-gene phylogenetic trees
Peterson Paul M., Romaschenko Konstantin, Johnson Gabriel
Molecular Phylogenetics and Evolution. 2010 55(2). p.580
Phylogeny of the Grass Family (Poaceae) from rpl16 Intron Sequence Data
Zhang Weiping
Molecular Phylogenetics and Evolution. 2000 15(1). p.135
The Grasses: A Case Study in Macroevolution
Kellogg Elizabeth A.
Annual Review of Ecology and Systematics. 2000 31(1). p.217
Inference of phylogenetic relationships among the subfamilies of grasses (Poaceae: Poales) using meso-scale exemplar-based sampling of the plastid genome
Saarela Jeffery M., Graham Sean W.
Botany. 2010 88(1). p.65
Hybridization, polyploidy and speciation inSpartina(Poaceae)
Ainouche Malika L., Baumel Alex, Salmon Armel, Yannic Glenn
New Phytologist. 2004 161(1). p.165
Genomic profiling reveals intraspecific divergence and interspecific diversity in Allium cepa L.
Packia Lekshmi Narayana Chellaiya Johnson, Brindha Johnson Raja, Mahamuni Duraisamy, Rajesh Ramasamy
Genetic Resources and Crop Evolution. 2024
Phylogenetic analysis of Hordeum (Poaceae) as inferred by nuclear rDNA ITS sequences
Blattner Frank R.
Molecular Phylogenetics and Evolution. 2004 33(2). p.289
BERRIOCHLOA GABELI AND BERRIOCHLOA HULETTI (GRAMINEAE: STIPEAE), TWO NEW GRASS SPECIES FROM THE LATE MIOCENE ASH HOLLOW FORMATION OF NEBRASKA AND KANSAS
THOMASSON JOSEPH R.
Journal of Paleontology. 2005 79(1). p.185
Evolutionary dynamics of Waxy and the origin of hexaploid Spartina species (Poaceae)
Fortune P.M., Schierenbeck K.A., Ainouche A.K., Jacquemin J., Wendel J.F., Ainouche M.L.
Molecular Phylogenetics and Evolution. 2007 43(3). p.1040
Molecular and Morphological Evidence for an Origin of the Aberrant Genus Milula within Himalayan Species of Allium (Alliacae)
Friesen Nikolai, Fritsch Reinhard M, Pollner Sven, Blattner Frank R
Molecular Phylogenetics and Evolution. 2000 17(2). p.209
The Bamboo Fire Cycle Hypothesis: A Comment
Saha Sonali, Howe Henry F.
The American Naturalist. 2001 158(6). p.659
Phylogenetic implications of nuclear rRNA IGS variation in Stipa L. (Poaceae)
Krawczyk Katarzyna, Nobis Marcin, Nowak Arkadiusz, Szczecińska Monika, Sawicki Jakub
Scientific Reports. 2017 7(1).
Cuscuta spp. populations as potential reservoirs and vectors of four plant viruses
Teofanova Denitsa, Lozanova Yana, Lambovska Kosara, Pachedjieva Kalina, Tosheva Anita, Odjakova Mariela, Zagorchev Lyuben
Phytoparasitica. 2022 50(3). p.555
Clavicipitalean Fungi (2003)
Ryley Malcolm
Phylogenetic structure of the grass subfamily Pooideae based on comparison of plastid matK gene–3′trnK exon and nuclear ITS sequences
Schneider Julia, Döring Elke, Hilu Khidir W., Röser Martin
TAXON. 2009 58(2). p.405
Chromosome studies in the grass subfamily Chloridoideae. II. An analysis of polyploidy
Roodt Rouvay, Spies Johan J.
TAXON. 2003 52(4). p.736
A Rice Gene of De Novo Origin Negatively Regulates Pathogen-Induced Defense Response
Xiao Wenfei, Liu Hongbo, Li Yu, Li Xianghua, Xu Caiguo, Long Manyuan, Wang Shiping, El-Shemy Hany A.
PLoS ONE. 2009 4(2). p.e4603
Acetolactate Synthase–Inhibitor Resistance in Yellow Nutsedge (Cyperus esculentus): II—Physiognomy and Photoperiodic Response
Tehranchian Parsa, Norsworthy Jason K., Bagavathiannan Muthukumar V., Riar Dilpreet S.
Weed Science. 2015 63(4). p.819
Review of the phytogeography of Cape York Peninsula: a flora that illustrates the development of the Australian sclerophyll biota
Wannan Bruce
Australian Journal of Botany. 2014 62(2). p.85
Inflorescence structure in species of Spartina Schreb. (Poaceae: Chloridoideae: Cynodonteae)
Kern Verónica Guadalupe, Guarise Nicolás Javier, Vegetti Abelardo Carlos
Plant Systematics and Evolution. 2008 273(1-2). p.51
Evolutionary history of tall fescue morphotypes inferred from molecular phylogenetics of the Lolium-Festucaspecies complex
Hand Melanie L, Cogan Noel OI, Stewart Alan V, Forster John W
BMC Evolutionary Biology. 2010 10(1).
Grass Evolution Inferred from Chromosomal Rearrangements and Geometrical and Statistical Features in RNA Structure
Caetano-Anollés Gustavo
Journal of Molecular Evolution. 2005 60(5). p.635
Characterizing homologues of crop domestication genes in poorly described wild relatives by high‐throughput sequencing of whole genomes
Malory Sylvia, Shapter Frances M., Elphinstone Martin S., Chivers Ian H., Henry Robert J.
Plant Biotechnology Journal. 2011 9(9). p.1131
Flowering Plants (2009)
Phylogenetic Studies on the Thamnocalamus Group and Its Allies (Gramineae: Bambusoideae) Based on ITS Sequence Data
Guo Zhen-Hua, Chen Yong-Yan, Li De-Zhu
Molecular Phylogenetics and Evolution. 2002 22(1). p.20
Multiple intercontinental dispersals shaped the distribution area of Hordeum (Poaceae)
Blattner Frank R.
New Phytologist. 2006 169(3). p.603
Systematics and evolution of the needle grasses (Poaceae: Pooideae: Stipeae) based on analysis of multiple chloroplast loci, ITS, and lemma micromorphology
Romaschenko Konstantin, Peterson Paul M., Soreng Robert J., Garcia-Jacas Nuria, Futorna Oksana, Susanna Alfonso
TAXON. 2012 61(1). p.18
C3 photosynthesis in Aristida longifolia: Implication for photosynthetic diversification in Aristidoideae (Poaceae)
Cerros‐Tlatilpa Rosa, Columbus J. Travis
American Journal of Botany. 2009 96(8). p.1379
Large multi-gene phylogenetic trees of the grasses (Poaceae): Progress towards complete tribal and generic level sampling
Bouchenak-Khelladi Yanis, Salamin Nicolas, Savolainen Vincent, Forest Felix, Bank Michelle van der, Chase Mark W., Hodkinson Trevor R.
Molecular Phylogenetics and Evolution. 2008 47(2). p.488
PHYLOGENETICS OF THE GRASS GENUS EHRHARTA: EVIDENCE FOR RADIATION IN THE SUMMER-ARID ZONE OF THE SOUTH AFRICAN CAPE
Verboom G. Anthony, Linder H. Peter, Stock William D.
Evolution. 2003 57(5). p.1008
Progress in Botany (2001)
Sytsma Kenneth J., Hahn William J.
Correlated evolution of fig size and color supports the dispersal syndromes hypothesis
Lomáscolo Silvia B., Speranza Pablo, Kimball Rebecca T.
Oecologia. 2008 156(4). p.783
A multi-locus analysis of phylogenetic relationships within grass subfamily Pooideae (Poaceae) inferred from sequences of nuclear single copy gene regions compared with plastid DNA
Hochbach Anne, Schneider Julia, Röser Martin
Molecular Phylogenetics and Evolution. 2015 87 p.14
Gene Capture from across the Grass Family in the Allohexaploid Elymus repens (L.) Gould (Poaceae, Triticeae) as Evidenced by ITS, GBSSI, and Molecular Cytogenetics
Mahelka Václav, Kopecký David
Molecular Biology and Evolution. 2010 27(6). p.1370
Diversification rates in the Australasian endemic grass Austrostipa: 15 million years of constant evolution
Syme Anna E.
Plant Systematics and Evolution. 2012 298(1). p.221
Phylogeography based on the nuclear ribosomal DNA internal transcribed spacer region of native Miscanthus sinensis (Poaceae) populations in Japan
Hayakawa Hiroshi, Akasaka Maiko, Shimono Yoshiko, Kurokawa Shunji, Nishida Tomoko, Ikeda Hiroaki, Wakamatsu Toru
Weed Biology and Management. 2014 14(4). p.251
On Jarava, or putting the cart before the horse
Chiapella Jorge
TAXON. 2008 57(3). p.695
Encyclopedia of Life Sciences (2003)
Jacobs Surrey WL, Wilson Karen L
Phylogenetic relationships of Deschampsia antarctica (Poaceae): Insights from nuclear ribosomal ITS
Souto D. P. Fernández, Catalano S. A., Tosto D., Bernasconi P., Sala A., Wagner M., Corach D.
Plant Systematics and Evolution. 2006 261(1-4). p.1
Retrotransposons and Genomic Stability in Populations of the Young Allopolyploid Species Spartina anglica C.E. Hubbard (Poaceae)
Baumel Alex, Ainouche Malika, Kalendar Ruslan, Schulman Alan H.
Molecular Biology and Evolution. 2002 19(8). p.1218
Plastid phylogenomics of the cool-season grass subfamily: clarification of relationships among early-diverging tribes
Saarela Jeffery M., Wysocki William P., Barrett Craig F., Soreng Robert J., Davis Jerrold I., Clark Lynn G., Kelchner Scot A., Pires J. Chris, Edger Patrick P., Mayfield Dustin R., Duvall Melvin R.
AoB Plants. 2015 7 p.plv046
Evidence that C4 species in genus Stipagrostis, family Poaceae, are NADP-malic enzyme subtype with nonclassical type of Kranz anatomy (Stipagrostoid)
Voznesenskaya Elena V., Chuong Simon D.X., Kiirats Olavi, Franceschi Vincent R., Edwards Gerald E.
Plant Science. 2005 168(3). p.731
Biotechnological Advances in Bamboo (2021)
Ganie Irfan Bashir, Liana Alin, Ahmad Zishan, Shahzad Anwar
Evolutionary History of the Grasses
Kellogg Elizabeth A.
Plant Physiology. 2001 125(3). p.1198
PHYLOGENETICS OF THE GRASS GENUS EHRHARTA: EVIDENCE FOR RADIATION IN THE SUMMER-ARID ZONE OF THE SOUTH AFRICAN CAPE
Verboom G. Anthony, Linder H. Peter, Stock William D.
Evolution. 2003 57(5). p.1008
Museomics resolve the systematics of an endangered grass lineage endemic to north-western Madagascar
Silva Christian, Besnard Guillaume, Piot Anthony, Razanatsoa Jacqueline, Oliveira Reyjane P., Vorontsova Maria S.
Annals of Botany. 2017 119(3). p.339
Molecular Phylogenetics and Micromorphology of Australasian Stipeae (Poaceae, Subfamily Pooideae), and the Interrelation of Whole-Genome Duplication and Evolutionary Radiations in This Grass Tribe
Tkach Natalia, Nobis Marcin, Schneider Julia, Becher Hannes, Winterfeld Grit, Jacobs Surrey W. L., Röser Martin
Frontiers in Plant Science. 2021 11
New grass phylogeny resolves deep evolutionary relationships and discovers C4 origins
New Phytologist. 2012 193(2). p.304
Molecular systematics of Poaceae based on eight chloroplast markers, emphasizing the phylogenetic positions of Korean taxa
LEE Jung-Hoon, KIM Ki-Joong, KIM Bo-Yun, KIM Young-Dong
Korean Journal of Plant Taxonomy. 2022 52(3). p.127
Spartina alterniflora Loisel., a halophyte grass model to dissect salt stress tolerance
Subudhi Prasanta K, Baisakh Niranjan
In Vitro Cellular & Developmental Biology - Plant. 2011 47(4). p.441
Phylogenetic relationships of Aristida and relatives (Poaceae, Aristidoideae) based on noncoding chloroplast (trnL‐F, rpl16) and nuclear (ITS) DNA sequences
Cerros‐Tlatilpa Rosa, Columbus J. Travis, Barker Nigel P.
American Journal of Botany. 2011 98(11). p.1868
Taxonomic revision of Stipa section Smirnovia and section Subsmirnovia (Poaceae)
GONZALO RAÚL, AEDO CARLOS, GARCÍA MIGUEL ÁNGEL
Botanical Journal of the Linnean Society. 2011 167(4). p.394
Phylogeny of New World Stipeae (Poaceae): an evaluation of the monophyly of Aciachne and Amelichloa
Cialdella Ana M., Salariato Diego L., Aagesen Lone, Giussani Liliana M., Zuloaga Fernando O., Morrone Osvaldo
Cladistics. 2010 26(6). p.563
Nuclear genes, matK and the phylogeny of the Poales
Hochbach Anne, Linder H. Peter, Röser Martin
TAXON. 2018 67(3). p.521
Karyosystematics of the Australasian stipoid grass Austrostipa and related genera: chromosome sizes, ploidy, chromosome base numbers and phylogeny
Winterfeld Grit, Schneider Julia, Becher Hannes, Dickie John, Röser Martin
Australian Systematic Botany. 2015 28(3). p.145
Cleaning up the grasses dustbin: systematics of the Arundinoideae subfamily (Poaceae)
Hardion Laurent, Verlaque Régine, Haan-Archipoff Gisèle, Cahen Daniel, Hoff Michel, Vila Bruno
Plant Systematics and Evolution. 2017 303(10). p.1331
Phylogenetic relationships in Southern African chloridoid grasses (Poaceae) based on nuclear and chloroplast sequence data
Roodt‐Wilding Rouvay, Spies Johan J.
Systematics and Biodiversity. 2006 4(4). p.401
Molecular Phylogeny of Hybridizing Species from the Genus Spartina Schreb. (Poaceae)
Baumel A., Ainouche M.L., Bayer R.J., Ainouche A.K., Misset M.T.
Molecular Phylogenetics and Evolution. 2002 22(2). p.303
Phylogenetic analysis of the Briza Complex (Poaceae)
Essi Liliana, Longhi-Wagner Hilda Maria, de Souza-Chies Tatiana Teixeira
Molecular Phylogenetics and Evolution. 2008 47(3). p.1018
The use of dna sequencing (ITS and trnL‐F), AFLP, and fluorescent in situ hybridization to study allopolyploid Miscanthus (Poaceae)
Hodkinson Trevor R., Chase Mark W., Takahashi Chigusa, Leitch Ilia J., Bennett Michael D., Renvoize Stephen A.
American Journal of Botany. 2002 89(2). p.279
Fungal Symbionts Alter Plant Drought Response
Worchel Elise R., Giauque Hannah E., Kivlin Stephanie N.
Microbial Ecology. 2013 65(3). p.671
Systematics and management of natural resources: the case of Spartina species on European shores
Prieto José Antonio Fernández, Cires Eduardo, Sánchez Corominas Teresa, Vázquez Víctor M.
Biologia. 2011 66(6). p.1011
An expanded phylogenetic analysis of Austrostipa (Poaceae: Stipeae) to test infrageneric relationships
Syme Anna E., Murphy Daniel J., Holmes Gareth D., Gardner Stuart, Fowler Rachael, Cantrill David J.
Australian Systematic Botany. 2012 25(1). p.1
Neopolyploidy in Spartina pectinata Link: 1. Morphological analysis of tetraploid and hexaploid plants in a mixed natural population
Kim Sumin, Rayburn A. L., Boe Arvid, Lee D. K.
Plant Systematics and Evolution. 2012 298(6). p.1073
Decoupled taxonomic radiation and ecological expansion of open-habitat grasses in the Cenozoic of North America
Strömberg Caroline A. E.
Proceedings of the National Academy of Sciences. 2005 102(34). p.11980
Phylogeny of Eleusine (Poaceae: Chloridoideae) based on nuclear ITS and plastid trnT–trnF sequences
Neves Susana S., Swire-Clark Ginger, Hilu Khidir W., Baird Wm. Vance
Molecular Phylogenetics and Evolution. 2005 35(2). p.395

Committee on Publication Ethics


Abstract Export Citation Get Permission