Analysis of wild Taraxacum bicorne Dahlst. (Compositae–Crepidinae) as a potential alternative natural rubber crop
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P. V. van Dijk | T. Černý | J. Kotek | Vojtěch Zeisek | J. Kirschner | Peter Urbanovský | J. Štěpánek
[1] K. Cornish,et al. Colchicine-induced polyploidy has the potential to improve rubber yield in Taraxacum kok-saghyz , 2018 .
[2] J. Cardina,et al. Hybridization potential between the rubber dandelion Taraxacum kok‐saghyz and common dandelion Taraxacum officinale , 2018 .
[3] J. Schiemann,et al. Yield performance of Russian dandelion transplants (Taraxacum koksaghyz L. Rodin) in flat bed and ridge cultivation with different planting densities , 2018 .
[4] A. Itoh,et al. Hybridization rate and genotypic diversity of apomictic hybrids between native (Taraxacum japonicum) and introduced (T. officinale) dandelions in western Japan , 2018, Conservation Genetics.
[5] Z. Ye,et al. Cgl2 plays an essential role in cuticular wax biosynthesis in cabbage (Brassica oleracea L. var. capitata) , 2017, BMC Plant Biology.
[6] K. Hodgson-Kratky,et al. Recurrent Selection for Rubber Yield in Russian Dandelion , 2017 .
[7] T. Ezeji,et al. Thermomyces lanuginosus STm: A source of thermostable hydrolytic enzymes for novel application in extraction of high-quality natural rubber from Taraxacum kok-saghyz (Rubber dandelion) , 2017 .
[8] Vojtěch Zeisek,et al. Taraxacum sect. Orientalia (Compositae-Crepidinae) and the West Himalayan dandelions: A new interpretation , 2017 .
[9] K. Hodgson-Kratky,et al. Recurrent Selection for Improved Germination under Water Stress in Russian Dandelion , 2017 .
[10] J. Cardina,et al. Chloroplast genome resources and molecular markers differentiate rubber dandelion species from weedy relatives , 2017, BMC Plant Biology.
[11] E. Ritter,et al. How does water supply affect Taraxacum koksaghyz Rod. rubber, inulin and biomass production? , 2016 .
[12] J. Schiemann,et al. Seasonal pattern of biomass and rubber and inulin of wild Russian dandelion (Taraxacum koksaghyz L. Rodin) under experimental field conditions , 2016 .
[13] P. V. van Dijk,et al. First genetic linkage map of Taraxacum koksaghyz Rodin based on AFLP, SSR, COS and EST-SSR markers , 2016, Scientific Reports.
[14] Javier Herrero,et al. Evaluation of root biomass, rubber and inulincontents in nine Taraxacum koksaghyz Rodin populations , 2016 .
[15] J. Burke,et al. Population Genetics of the Rubber-Producing Russian Dandelion (Taraxacum kok-saghyz) , 2016, PloS one.
[16] S. Kawahara,et al. Analysis of damage in commercial natural rubber through NMR spectroscopy , 2016 .
[17] K. Verhoeven,et al. Identification of oligoclonal agamospermous microspecies: taxonomic specialists versus microsatellites. , 2016 .
[18] M. Gore,et al. Genomic diversity and phylogenetic relationships in the genus Parthenium (Asteraceae) , 2015 .
[19] W. Eisenreich,et al. A rubber transferase activator is necessary for natural rubber biosynthesis in dandelion , 2015, Nature Plants.
[20] Lenka Záveská Drábková,et al. Towards a better understanding of the Taraxacum evolution (Compositae–Cichorieae) on the basis of nrDNA of sexually reproducing species , 2015, Plant Systematics and Evolution.
[21] D. Ro,et al. A Lettuce (Lactuca sativa) Homolog of Human Nogo-B Receptor Interacts with cis-Prenyltransferase and Is Necessary for Natural Rubber Biosynthesis* , 2014, The Journal of Biological Chemistry.
[22] Zhian N. Kamvar,et al. Poppr: an R package for genetic analysis of populations with clonal, partially clonal, and/or sexual reproduction , 2014, PeerJ.
[23] P. Trávníček,et al. Substantial Genome Size Variation in Taraxacum stenocephalum (Asteraceae, Lactuceae) , 2013, Folia Geobotanica.
[24] P. Heer,et al. Available exsitu germplasm of the potential rubber crop Taraxacum koksaghyz belongs to a poor rubber producer, T. brevicorniculatum (Compositae–Crepidinae) , 2013, Genetic Resources and Crop Evolution.
[25] W. Eisenreich,et al. Laticifer-Specific cis-Prenyltransferase Silencing Affects the Rubber, Triterpene, and Inulin Content of Taraxacum brevicorniculatum12[C][W] , 2012, Plant Physiology.
[26] M. A. Foster,et al. Guayule: culture, breeding and rubber production. , 2010 .
[27] Emmanuel Paradis,et al. pegas: an R package for population genetics with an integrated-modular approach , 2010, Bioinform..
[28] A. Hillebrand,et al. Molecular Cloning and Characterization of Rubber Biosynthetic Genes from Taraxacum koksaghyz , 2010, Plant Molecular Biology Reporter.
[29] Č. Vlček,et al. Analysis of nrDNA polymorphism in closely related diploid sexual, tetraploid sexual and polyploid agamospermous species , 2009, Plant Systematics and Evolution.
[30] Thibaut Jombart,et al. adegenet: a R package for the multivariate analysis of genetic markers , 2008, Bioinform..
[31] Jan Kirschner,et al. New sections inTaraxacum , 2004, Folia Geobotanica.
[32] J. Kirschner,et al. Modes of speciation and evolution of the sections inTaraxacum , 1996, Folia Geobotanica.
[33] J. Kirschner,et al. Clonality as a part of the evolution process inTaraxacum , 1994, Folia Geobotanica.
[34] J. Kirschner,et al. The genusTaraxacum in the Caucasus 1. Introduction, 2. The sectionPorphyrantha , 1993, Folia Geobotanica et Phytotaxonomica.
[35] J. Kirschner,et al. The Most Common Dandelions in Middle Asia : The Problem of Taraxacum sect. Macrocornuta, T. sect. Ceratoidea sect. nova, and the Identity of T. halophilum , 2008 .
[36] J. B. van Beilen,et al. Establishment of new crops for the production of natural rubber. , 2007, Trends in biotechnology.
[37] Anne-Béatrice Dufour,et al. The ade4 Package: Implementing the Duality Diagram for Ecologists , 2007 .
[38] J. B. van Beilen,et al. Guayule and Russian Dandelion as Alternative Sources of Natural Rubber , 2007, Critical reviews in biotechnology.
[39] V. Jarolímová,et al. Nuclear DNA content variation within the genusTaraxacum (Asteraceae) , 2005, Folia Geobotanica.
[40] D. Huson,et al. Application of phylogenetic networks in evolutionary studies. , 2006, Molecular biology and evolution.
[41] L. Klimeš,et al. Dandelions in Central Asia: a taxonomic revision of Taraxacum section Leucantha. , 2006 .
[42] J. L. Angulo-Sánchez,et al. Recent data on guayule from natural stands in Mexico , 2005 .
[43] A. Kashin,et al. Studying allozyme variation in sexual and apomictic Taraxacum and Pilosella (Asteraceae) populations , 2005, Russian Journal of Genetics.
[44] M. Falque,et al. Development and characterization of nine new microsatellite markers in Taraxacum (Asteraceae) , 2004 .
[45] Korbinian Strimmer,et al. APE: Analyses of Phylogenetics and Evolution in R language , 2004, Bioinform..
[46] H. Štorchová,et al. Principal features of the cpDNA evolution in Taraxacum (Asteraceae, Lactuceae): a conflict with taxonomy , 2003, Plant Systematics and Evolution.
[47] H. Mooibroek,et al. Alternative sources of natural rubber , 2000, Applied Microbiology and Biotechnology.
[48] H. Wittzell. Chloroplast DNA variation and reticulate evolution in sexual and apomictic sections of dandelions , 1999, Molecular ecology.
[49] J. Keurentjes,et al. Development and characterization of microsatellite markers in the sexual-apomictic complex Taraxacum officinale (dandelion) , 1998, Theoretical and Applied Genetics.
[50] P. Jarne,et al. Microsatellites, from molecules to populations and back. , 1996, Trends in ecology & evolution.
[51] H. D. Neuwinger. African Ethnobotany: Poisons and Drugs: Chemistry, Pharmacology, Toxicology , 1996 .
[52] J. Hughes,et al. The genetic structure of populations of sexual and asexual Taraxacum (dandelions) , 1988, Heredity.
[53] J. Waines,et al. Guayule a source of natural rubber and its relatives , 1987 .
[54] C. A. Thomas,et al. Molecular cloning. , 1977, Advances in pathobiology.
[55] A. Richards. The origin of Taraxacum agamospecies , 1973 .
[56] H. Suomela. On the possibilities of growing Taraxacum Koksaghyz in Finland : on basis of the investigations conducted in the years 1943-1948 , 1950 .
[57] H. E. Warmke. Experimental Polyploidy and Rubber Content in Taraxacum kok-saghyz , 1945, Botanical Gazette.