Publications (total 18) Less... | - Zhu T et al., "Optical maps refine the bread wheat Triticum aestivum cv. Chinese Spring genome assembly.", Plant J, 2021 Jul;107(1):303-314
More...- Zhu T et al., "Optical maps refine the bread wheat Triticum aestivum cv. Chinese Spring genome assembly.", Plant J, 2021 Jul;107(1):303-314
- Xia C et al., "A TRIM insertion in the promoter of Ms2 causes male sterility in wheat.", Nat Commun, 2017 May 12;8:15407
- Bi H et al., "Wheat drought-responsive WXPL transcription factors regulate cuticle biosynthesis genes.", Plant Mol Biol, 2017 May;94(1-2):15-32
- Li Q et al., "Transcriptome analysis of genes related to resistance against powdery mildew in wheat-Thinopyrum alien addition disomic line germplasm SN6306.", Gene, 2016 Sep 15;590(1):5-17
- Seifert F et al., "Analysis of wheat microspore embryogenesis induction by transcriptome and small RNA sequencing using the highly responsive cultivar "Svilena".", BMC Plant Biol, 2016 Apr 21;16:97
- Yadav IS et al., "Comparative Temporal Transcriptome Profiling of Wheat near Isogenic Line Carrying Lr57 under Compatible and Incompatible Interactions.", Front Plant Sci, 2016;7:1943
- Schreiber AW et al., "Transcriptome-scale homoeolog-specific transcript assemblies of bread wheat.", BMC Genomics, 2012 Sep 19;13:492
- Duan J et al., "Optimizing de novo common wheat transcriptome assembly using short-read RNA-Seq data.", BMC Genomics, 2012 Aug 14;13:392
- Cantu D et al., "Effect of the down-regulation of the high Grain Protein Content (GPC) genes on the wheat transcriptome during monocarpic senescence.", BMC Genomics, 2011 Oct 7;12:492
- Dionisio G et al., "Cloning and characterization of purple acid phosphatase phytases from wheat, barley, maize, and rice.", Plant Physiol, 2011 Jul;156(3):1087-100
- Pont C et al., "RNA-seq in grain unveils fate of neo- and paleopolyploidization events in bread wheat (Triticum aestivum L.).", Genome Biol, 2011 Dec 2;12(12):R119
- Kawaura K et al., "Assessment of adaptive evolution between wheat and rice as deduced from full-length common wheat cDNA sequence data and expression patterns.", BMC Genomics, 2009 Jun 18;10:271
- Cui P et al., "A complete mitochondrial genome of wheat (Triticum aestivum cv. Chinese Yumai), and fast evolving mitochondrial genes in higher plants.", J Genet, 2009 Dec;88(3):299-307
- Shitsukawa N et al., "Genetic and epigenetic alteration among three homoeologous genes of a class E MADS box gene in hexaploid wheat.", Plant Cell, 2007 Jun;19(6):1723-37
- Rasmussen SK et al., "A recombinant wheat serpin with inhibitory activity.", Plant Mol Biol, 1996 Feb;30(3):673-7
- Rosenkrands I et al., "Serpins from wheat grain.", FEBS Lett, 1994 Apr 18;343(1):75-80
- Houde M et al., "Cloning, characterization, and expression of a cDNA encoding a 50-kilodalton protein specifically induced by cold acclimation in wheat.", Plant Physiol, 1992 Aug;99(4):1381-7
- Raines CA et al., "A novel proline-rich protein from wheat.", Plant Mol Biol, 1991 Apr;16(4):663-70
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