Genome size and cytomolecular diversification in two species of the South African endemic genus Tulbaghia L. (Allioideae, Amaryllidaceae)
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[1] M. Báez,et al. Does the chromosomal position of 35S rDNA sites influence their transcription? A survey on Nothoscordum species (Amaryllidaceae) , 2020, Genetics and molecular biology.
[2] M. Guerra,et al. Allopolyploidy and extensive rDNA site variation underlie rapid karyotype evolution in Nothoscordum section Nothoscordum (Amaryllidaceae) , 2019, Botanical Journal of the Linnean Society.
[3] M. Costea,et al. Allopolyploid origin and genome differentiation of the parasitic species Cuscuta veatchii (Convolvulaceae) revealed by genomic in situ hybridization. , 2019, Genome.
[4] B. Kolano,et al. Karyotype analysis of eight cultivated Allium species , 2018, Journal of Applied Genetics.
[5] I. Álvarez,et al. Inter- and intraspecific hypervariability in interstitial telomeric-like repeats (TTTAGGG)n in Anacyclus (Asteraceae) , 2018, Annals of botany.
[6] Tae-Jin Yang,et al. Rapid and Efficient FISH using Pre-Labeled Oligomer Probes , 2018, Scientific Reports.
[7] S. Vasconcelos,et al. Karyotype and genome size comparative analyses among six species of the oilseed-bearing genus Jatropha (Euphorbiaceae) , 2018, Genetics and molecular biology.
[8] Maumita Bandyopadhyay,et al. Characterization of Tulbaghia violacea (Tulbaghieae, Allioideae, Amaryllidaceae) from India: a cytogenetic and molecular approach , 2018, The Nucleus.
[9] J. Diniz‐Filho,et al. Heterochromatic and cytomolecular diversification in the Caesalpinia group (Leguminosae): relationships between phylogenetic and cytogeographical data. , 2017 .
[10] Gorm E. Shackelford,et al. Genome size dynamics in tribe Gilliesieae (Amaryllidaceae, subfamily Allioideae) in the context of polyploidy and unusual incidence of Robertsonian translocations , 2017 .
[11] L. Peruzzi,et al. Chromosome diversity and evolution in Allium (Allioideae, Amaryllidaceae) , 2017 .
[12] I. Leitch,et al. Cytogenetic insights into an oceanic island radiation: The dramatic evolution of pre‐existing traits in Cheirolophus (Asteraceae: Cardueae: Centaureinae) , 2017 .
[13] M. Guerra,et al. Phylogenetic relations in tribe Leucocoryneae (Amaryllidaceae, Allioideae) and the validation of Zoellnerallium based on DNA sequences and cytomolecular data , 2016 .
[14] M. Möller,et al. The first phylogenetic hypothesis for the southern African endemic genus Tulbaghia (Amaryllidaceae, Allioideae) based on plastid and nuclear DNA sequences , 2016 .
[15] L. Altschmied,et al. Plantago lagopus B Chromosome Is Enriched in 5S rDNA-Derived Satellite DNA , 2016, Cytogenetic and Genome Research.
[16] A. Vanzela,et al. Interstitial telomeric sites and Robertsonian translocations in species of Ipheion and Nothoscordum (Amaryllidaceae) , 2016, Genetica.
[17] Zdenka Sitova,et al. Allium telomeres unmasked: the unusual telomeric sequence (CTCGGTTATGGG)n is synthesized by telomerase. , 2016, The Plant journal : for cell and molecular biology.
[18] M. Guerra,et al. Karyological, morphological, and phylogenetic diversification in Leucocoryne Lindl (Allioideae, Amaryllidaceae) , 2015, Plant Systematics and Evolution.
[19] Hyun Hee Kim,et al. Phylogeny of Cucurbitaceae species in Korea based on 5S rDNA non-transcribed spacer , 2013, Genes & Genomics.
[20] M. L. Las Peñas,et al. Genome size and karyotype diversity in Solanum sect. Acanthophora (Solanaceae) , 2013, Plant Systematics and Evolution.
[21] G. Schneeweiss,et al. Karyotype Diversity and Evolutionary Trends in Angiosperms , 2013 .
[22] B. Murray. Karyotype Variation and Evolution in Gymnosperms , 2013 .
[23] M. Guerra. Cytotaxonomy: The end of childhood , 2012, Plant Biosystems - An International Journal Dealing with all Aspects of Plant Biology.
[24] M. Guerra,et al. Cytogenetic and molecular evidence suggest multiple origins and geographical parthenogenesis in Nothoscordum gracile (Alliaceae). , 2012, Annals of botany.
[25] James Leebens-Mack,et al. Quality and quantity of data recovered from massively parallel sequencing: Examples in Asparagales and Poaceae. , 2012, American journal of botany.
[26] S. Recco‐Pimentel,et al. Satellite DNA Derived from 5S rDNA in Physalaemus cuvieri (Anura, Leiuperidae) , 2011, Cytogenetic and Genome Research.
[27] S. Vasconcelos,et al. Heterochromatin and rDNA 5S and 45S sites as reliable cytogenetic markers for castor bean (Ricinus communis, Euphorbiaceae). , 2010, Micron.
[28] M. Guerra,et al. Karyological circumscription of Ipheion Rafinesque (Gilliesioideae, Alliaceae) , 2010, Plant Systematics and Evolution.
[29] N. Jouve,et al. Chromosomal detection of simple sequence repeats (SSRs) using nondenaturing FISH (ND-FISH) , 2010, Chromosoma.
[30] M. Guerra,et al. The meaning of DAPI bands observed after C-banding and FISH procedures , 2010 .
[31] Mark W. Chase,et al. A phylogenetic classification of the land plants to accompany APG III , 2009 .
[32] E. Rodriguez,et al. Two new nuclear isolation buffers for plant DNA flow cytometry: a test with 37 species. , 2007, Annals of botany.
[33] Vosa Canio Giuseppe. The annotated bibliography (1966–2006) of the genus Tulbaghia (Alliaceae) , 2007 .
[34] M. Chase,et al. Minisatellite telomeres occur in the family Alliaceae but are lost in Allium. , 2006, American journal of botany.
[35] J. Cabral,et al. Heterochromatin diversity and its co-localization with 5S and 45S rDNA sites in chromosomes of four Maxillaria species (Orchidaceae) , 2006 .
[36] P. M. Galetti,et al. A tandemly repetitive centromeric DNA sequence of the fish Hoplias malabaricus (Characiformes: Erythrinidae) is derived from 5S rDNA , 2006, Genetica.
[37] E. Nevo,et al. Quantum speciation in Aegilops: molecular cytogenetic evidence from rDNA cluster variability in natural populations. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[38] J. Greilhuber,et al. Quantitative analyses of C-banded karyotypes, and systematics in the cultivated species of theScilla siberica group (Liliaceae) , 1978, Plant Systematics and Evolution.
[39] C. Vosa. Heterochromatin recognition with fluorochromes , 1970, Chromosoma.
[40] A. Dyer. Allocyclic segments of chromosomes and the structural heterozygosity that they reveal , 1962, Chromosoma.
[41] B. Seo,et al. Chromosomal localization of 5S rRNA gene loci and the implications for relationships within the Allium complex , 2004, Chromosome Research.
[42] M. Chase,et al. Telomere variability in the monocotyledonous plant order Asparagales , 2003, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[43] J. Stougaard,et al. Chromosomal map of the model legume Lotus japonicus. , 2002, Genetics.
[44] M. Hizume,et al. Evolution of 5S rDNA units and their chromosomal localization in Allium cepa and Allium schoenoprasum revealed by microdissection and FISH , 2002, Theoretical and Applied Genetics.
[45] M. Guerra. Patterns of heterochromatin distribution in plant chromosomes. , 2000 .
[46] C. Persson. Phylogeny of the Neotropical Alibertia group (Rubiaceae), with emphasis on the genus Alibertia, inferred from ITS and 5S ribosomal DNA sequences. , 2000, American journal of botany.
[47] C. Vosa. A revised cytotaxonomy of the genus Tulbaghia (Alliaceae) , 2000 .
[48] M. Chase,et al. PHYLOGENETIC ANALYSIS OF DNA C-VALUES PROVIDES EVIDENCE FOR A SMALL ANCESTRAL GENOME SIZE IN FLOWERING PLANTS , 1998 .
[49] J. Doležel,et al. Comparison of three DNA fluorochromes for flow cytometric estimation of nuclear DNA content in plants , 1992 .
[50] A. Baldini,et al. Improved telomere detection using a telomere repeat probe (TTAGGG)n generated by PCR. , 1991, Nucleic acids research.
[51] M. Guerra. Reviewing the chromosome nomenclature of levan et al , 1986 .
[52] J. Sinclair,et al. The Relationship between Satellite Deoxyribonucleic Acid, Ribosomal Ribonucleic Acid Gene Redundancy, and Genome Size in Plants. , 1975, Plant physiology.
[53] Oxford,et al. The cytotaxonomy of the genus Tulbaghia , 1975 .
[54] C. Vosa,et al. Quinacrine fluorescence and Giemsa staining in plants. , 1972, Nature: New biology.
[55] M. Bennett,et al. Nuclear DNA content and minimum generation time in herbaceous plants , 1972, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[56] C. Vosa. Chromosome variation in Tulbaghia , 1966, Heredity.