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11 Records found.
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1.
Schäfer, N.* et al.: A tandem amino acid residue motif in guard cell SLAC1 anion channel of grasses allows for the control of stomatal aperture by nitrate. Curr. Biol. 28, 1370-U145 (2018)
2.
Thind, A.K.* et al.: Chromosome-scale comparative sequence analysis unravels molecular mechanisms of genome dynamics between two wheat cultivars. Genome Biol. 19:104 (2018)
3.
Mascher, M.* et al.: A chromosome conformation capture ordered sequence of the barley genome. Nature 544, 427-433 (2017)
4.
Beier, S.* et al.: Multiplex sequencing of bacterial artificial chromosomes for assembling complex plant genomes. Plant Biotechnol. J. 14, 1511-1522 (2016)
5.
Penselin, D.* et al.: Comparative genomics to explore phylogenetic relationship, cryptic sexual potential and host specificity of Rhynchosporium species on grasses. BMC Genomics 17:953 (2016)
6.
Ariyadasa, R.* et al.: A sequence-ready physical map of barley anchored genetically by two million single-nucleotide polymorphisms. Plant Physiol. 164, 412-423 (2014)
7.
Mayer, K.F.X. et al.: A physical, genetic and functional sequence assembly of the barley genome. Nature 491, 711-716 (2012)
8.
Mayer, K.F.X. et al.: Unlocking the barley genome by chromosomal and comparative genomics. Plant Cell 23, 1249-1263 (2011)
9.
Taudien, S.* et al.: Sequencing of BAC pools by different next generation sequencing platforms and strategies. BMC Res. Notes 4:411 (2011)
10.
Mayer, K.F.X. et al.: Gene content and virtual gene order of barley chromosome 1H. Plant Physiol. 151, 496-505 (2009)
11.
Steuernagel, B.* et al.: De novo 454 sequencing of barcoded BAC pools for comprehensive gene survey and genome analysis in the complex genome of barley. BMC Genomics 10:547 (2009)