Diverged subpopulations in tropical Urochloa (Brachiaria) forage species indicate a role for facultative apomixis and varying ploidy in their population structure and evolution
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J. Higgins | J. Tohme | J. Heslop-Harrison | R. Mitchell | T. Schwarzacher | V. Castiblanco | P. Tomaszewska | T. Pellny | J. Arango | J. De Vega
[1] D. Hojsgaard,et al. Variation of Residual Sexuality Rates along Reproductive Development in Apomictic Tetraploids of Paspalum , 2022, Plants.
[2] P. Eastmond,et al. Allele Mining in Diverse Accessions of Tropical Grasses to Improve Forage Quality and Reduce Environmental Impact. , 2021, Annals of botany.
[3] P. Heslop-Harrison,et al. Flow cytometry-based determination of ploidy from dried leaf specimens in genomically complex collections of the tropical forage grass Urochloa s. l , 2021, bioRxiv.
[4] S. Renvoize,et al. Complex polyploid and hybrid species in an apomictic and sexual tropical forage grass group: genomic composition and evolution in Urochloa (Brachiaria) species , 2021, bioRxiv.
[5] Paul D. Shaw,et al. Mobilizing Crop Biodiversity. , 2020, Molecular plant.
[6] I. Rao,et al. Biological Nitrification Inhibition (BNI): Phenotyping of a Core Germplasm Collection of the Tropical Forage Grass Megathyrsus maximus Under Greenhouse Conditions , 2020, Frontiers in Plant Science.
[7] F. Di Palma,et al. A new genome allows the identification of genes associated with natural variation in aluminium tolerance in Brachiaria grasses , 2019, Journal of experimental botany.
[8] G. Barcaccia,et al. Did apomixis evolve from sex or was it the other way around? , 2019, Journal of experimental botany.
[9] S. Dellaporta,et al. Translocation of a parthenogenesis gene candidate to an alternate carrier chromosome in apomictic Brachiaria humidicola , 2019, BMC Genomics.
[10] Marco Pessoa-Filho,et al. Molecular dating of phylogenetic divergence between Urochloa species based on complete chloroplast genomes , 2017, BMC Genomics.
[11] M. Ishitani,et al. Genetic Diversity and Population Structure of Brachiaria Species and Breeding Populations , 2017 .
[12] R. Francis,et al. pophelper: an R package and web app to analyse and visualize population structure , 2017, Molecular ecology resources.
[13] R. Graybosch,et al. Introgression of chromosome segments from multiple alien species in wheat breeding lines with wheat streak mosaic virus resistance , 2016, Heredity.
[14] S. Dellaporta,et al. A Parthenogenesis Gene Candidate and Evidence for Segmental Allopolyploidy in Apomictic Brachiaria decumbens , 2016, Genetics.
[15] A. P. Souza,et al. Evidence of Allopolyploidy in Urochloa humidicola Based on Cytological Analysis and Genetic Linkage Mapping , 2016, PloS one.
[16] L. J. Cançado,et al. Microsatellite loci for Urochloa decumbens (Stapf) R.D. Webster and cross-amplification in other Urochloa species , 2016, BMC Research Notes.
[17] A. B. Mendes-Bonato,et al. Meiotic behavior of Brachiaria decumbens hybrids. , 2015, Genetics and molecular research : GMR.
[18] R. Tandon,et al. Facultative apomixis and development of fruit in a deciduous shrub with medicinal and nutritional uses , 2015, AoB PLANTS.
[19] E. Kellogg. Flowering Plants. Monocots: Poaceae , 2015 .
[20] M. Ebina,et al. The Present Status of C 4 Tropical Grasses Breeding and Molecular Approaches , 2015 .
[21] B. Maass,et al. Homecoming of Brachiaria: Improved Hybrids Prove Useful for African Animal Agriculture , 2015 .
[22] M. Worthington,et al. Reciprocal Full-sib Recurrent Selection and Tools for Accelerating Genetic Gain in Apomictic Brachiaria , 2015 .
[23] D. Hojsgaard,et al. Apomixis as a Facilitator of Range Expansion and Diversification in Plants , 2015 .
[24] L. Jank,et al. The value of improved pastures to Brazilian beef production , 2014, Crop and Pasture Science.
[25] H. Louvandini,et al. Performance of sheep grazing in pastures of Brachiaria decumbens, Brachiaria brizantha, Panicum maximum, and Andropogon gayanus with different protodioscin concentrations , 2014, Tropical Animal Health and Production.
[26] Mauricio O. Carneiro,et al. From FastQ Data to High‐Confidence Variant Calls: The Genome Analysis Toolkit Best Practices Pipeline , 2013, Current protocols in bioinformatics.
[27] L. Jank,et al. Reciprocal recurrent selection in the breeding of Brachiaria decumbens , 2013 .
[28] S. Pessino,et al. Harnessing apomictic reproduction in grasses: what we have learned from Paspalum. , 2013, Annals of botany.
[29] Thomas R. Gingeras,et al. STAR: ultrafast universal RNA-seq aligner , 2013, Bioinform..
[30] D. Hojsgaard,et al. The evolution of apomixis in angiosperms: A reappraisal , 2012 .
[31] B. Simon,et al. Updating classifications to reflect monophyly: 10 to 20 percent of species names change in Poaceae , 2012 .
[32] Jan Suda,et al. The more the better? The role of polyploidy in facilitating plant invasions. , 2012, Annals of botany.
[33] A. P. de Souza,et al. New microsatellite markers developed from Urochloa humidicola (Poaceae) and cross amplification in different Urochloa species , 2011, BMC Research Notes.
[34] Anete P. Souza,et al. Genetic Diversity and Population Structure of the Brachiaria brizantha Germplasm , 2011, Tropical Plant Biology.
[35] Kenneth Lange,et al. Enhancements to the ADMIXTURE algorithm for individual ancestry estimation , 2011, BMC Bioinformatics.
[36] C. Valle,et al. Meiotic analysis in induced tetraploids of Brachiaria decumbens Stapf , 2011 .
[37] M. Zucchi,et al. Genetic diversity and population structure analysis of the tropical pasture grass Brachiaria humidicola based on microsatellites, cytogenetics, morphological traits, and geographical origin. , 2010, Genome.
[38] M. Alves-Ferreira,et al. Selection of reference genes for quantitative real-time PCR expression studies in the apomictic and sexual grass Brachiaria brizantha , 2009, BMC Plant Biology.
[39] L. M. Guaberto,et al. Agrupamento de acessos e cultivares de três espécies de Brachiaria por RAPD - DOI: 10.4025/actasciagron.v30i4.5298 , 2008 .
[40] J. Miles. Apomixis for Cultivar Development in Tropical Forage Grasses , 2007 .
[41] Edward S. Buckler,et al. TASSEL: software for association mapping of complex traits in diverse samples , 2007, Bioinform..
[42] Peer Bork,et al. Interactive Tree Of Life (iTOL): an online tool for phylogenetic tree display and annotation , 2007, Bioinform..
[43] C. Cardona,et al. Recurrent Selection in a Synthetic Brachiariagrass Population Improves Resistance to Three Spittlebug Species , 2006 .
[44] C. Morton,et al. Molecular and morphological phylogenetic analysis of Brachiaria and Urochloa (Poaceae). , 2005, Molecular phylogenetics and evolution.
[45] W. Burton,et al. Assessment of genetic diversity in selected breeding lines and cultivars of canola quality Brassica juncea and their implications for canola breeding , 2004, Euphytica.
[46] D. Rigden,et al. Identification of differentially expressed cDNA sequences in ovaries of sexual and apomictic plants of Brachiaria brizantha , 2003, Plant Molecular Biology.
[47] S. Lutts,et al. Fertility of Brachiaria ruziziensis in interspecific crosses with Brachiaria decumbens and Brachiaria brizantha: meiotic behaviour, pollen viability and seed set , 1991, Euphytica.
[48] C. B. do Valle,et al. Duplication of the chromosome number of diploid Brachiaria brizantha plants using colchicine , 2000, Plant Cell Reports.
[49] S. Otto,et al. Polyploid incidence and evolution. , 2000, Annual review of genetics.
[50] B. Maass,et al. Natural variation in Brachiaria and existing germplasm collections , 1996 .
[51] W. D. Clayton,et al. Morphology, taxonomy, and natural distribution of Brachiaria (Trin.) Griseb , 1996 .
[52] C. Valle,et al. Genetics, cytogenetics, and reproductive biology of Brachiaria , 1996 .
[53] T. E. Miller,et al. The introduction of alien genetic variation in wheat , 1987 .
[54] M. Dujardin,et al. Induction par la colchicine de formes autotetraploides chez Brachiaria ruziziensis Germain et Evrard (Graminee) , 1981 .