Gene-based SNP identification and validation in soybean using next-generation transcriptome sequencing
暂无分享,去创建一个
[1] D. Alekel,et al. Soybean and the Prevention of Chronic Human Disease , 2016 .
[2] Saad M. Khan,et al. Evaluation of genetic variation among Brazilian soybean cultivars through genome resequencing , 2016, BMC Genomics.
[3] Y. Liu,et al. Geographical distribution of GmTfl1 alleles in Chinese soybean varieties , 2015 .
[4] H. Nguyen,et al. High-throughput and functional SNP detection assays for oleic and linolenic acids in soybean , 2015, Molecular Breeding.
[5] Liming Xu,et al. RNA-Seq Uncovers SNPs and Alternative Splicing Events in Asian Lotus (Nelumbo nucifera) , 2015, PloS one.
[6] K. Meksem,et al. SNP identification and marker assay development for high-throughput selection of soybean cyst nematode resistance , 2015, BMC Genomics.
[7] T. Joshi,et al. Whole-genome gene expression profiling revealed genes and pathways potentially involved in regulating interactions of soybean with cyst nematode (Heterodera glycines Ichinohe) , 2015, BMC Genomics.
[8] M. R. Baring,et al. Next-generation transcriptome sequencing, SNP discovery and validation in four market classes of peanut, Arachis hypogaea L. , 2015, Molecular Genetics and Genomics.
[9] Hui Xiang,et al. Erratum: Resequencing 302 wild and cultivated accessions identifies genes related to domestication and improvement in soybean , 2015, Nature Biotechnology.
[10] A. Pirani,et al. Development, validation and genetic analysis of a large soybean SNP genotyping array. , 2015, The Plant journal : for cell and molecular biology.
[11] R. O'Leary,et al. Waterlogging tolerance is associated with root porosity in barley (Hordeum vulgare L.) , 2015, Molecular Breeding.
[12] Ruiqiang Li,et al. De novo assembly of soybean wild relatives for pan-genome analysis of diversity and agronomic traits , 2014, Nature Biotechnology.
[13] J. Specht,et al. Dt2 Is a Gain-of-Function MADS-Domain Factor Gene That Specifies Semideterminacy in Soybean[C][W] , 2014, Plant Cell.
[14] S. Jackson,et al. Decreased Nucleotide and Expression Diversity and Modified Coexpression Patterns Characterize Domestication in the Common Bean[W][OPEN] , 2014, Plant Cell.
[15] Pengyin Chen,et al. Identification and characterization of transcript polymorphisms in soybean lines varying in oil composition and content , 2014, BMC Genomics.
[16] Zhixi Tian,et al. Global Dissection of Alternative Splicing in Paleopolyploid Soybean[W] , 2014, Plant Cell.
[17] Hong-Kyu Choi,et al. Population Structure and Domestication Revealed by High-Depth Resequencing of Korean Cultivated and Wild Soybean Genomes , 2013, DNA research : an international journal for rapid publication of reports on genes and genomes.
[18] Q. Song,et al. SNP-Based Genetic Linkage Map of Soybean Using the SoySNP6K Illumina Infinium BeadChip Genotyping Array , 2013 .
[19] Jun Wang,et al. Molecular footprints of domestication and improvement in soybean revealed by whole genome re-sequencing , 2013, BMC Genomics.
[20] Baohui Liu,et al. Genetic variation in four maturity genes affects photoperiod insensitivity and PHYA-regulated post-flowering responses of soybean , 2013, BMC Plant Biology.
[21] M. Boussaha,et al. Gene-based single nucleotide polymorphism discovery in bovine muscle using next-generation transcriptomic sequencing , 2013, BMC Genomics.
[22] L. Vodkin,et al. Using RNA-Seq to Profile Soybean Seed Development from Fertilization to Maturity , 2013, PloS one.
[23] J. Valkonen,et al. Advances in plant gene-targeted and functional markers: a review , 2013, Plant Methods.
[24] Randall L. Nelson,et al. Development and Evaluation of SoySNP50K, a High-Density Genotyping Array for Soybean , 2013, PloS one.
[25] S. Lee,et al. Ln Is a Key Regulator of Leaflet Shape and Number of Seeds per Pod in Soybean[W] , 2012, Plant Cell.
[26] Parijat S Juvale,et al. A soybean cyst nematode resistance gene points to a new mechanism of plant resistance to pathogens , 2012, Nature.
[27] M. Carazzolle,et al. Identification of SNPs in RNA-seq data of two cultivars of Glycine max (soybean) differing in drought resistance , 2012, Genetics and molecular biology.
[28] T. Yamazaki,et al. Positional cloning and characterization reveal the molecular basis for soybean maturity locus E1 that regulates photoperiodic flowering , 2012, Proceedings of the National Academy of Sciences.
[29] S. Tabata,et al. A Map-Based Cloning Strategy Employing a Residual Heterozygous Line Reveals that the GIGANTEA Gene Is Involved in Soybean Maturity and Flowering , 2011, Genetics.
[30] Jian Wang,et al. Addendum: Resequencing of 31 wild and cultivated soybean genomes identifies patterns of genetic diversity and selection , 2011, Nature Genetics.
[31] Steven J. M. Jones,et al. SNP discovery in black cottonwood (Populus trichocarpa) by population transcriptome resequencing , 2011, Molecular ecology resources.
[32] G. Hartman,et al. Crops that feed the World 2. Soybean—worldwide production, use, and constraints caused by pathogens and pests , 2011, Food Security.
[33] J. Schmutz,et al. Whole-genome sequencing and intensive analysis of the undomesticated soybean (Glycine soja Sieb. and Zucc.) genome , 2010, Proceedings of the National Academy of Sciences.
[34] J. Shannon,et al. Mutant alleles of FAD2-1A and FAD2-1B combine to produce soybeans with the high oleic acid seed oil trait , 2010, BMC Plant Biology.
[35] Guriqbal Singh,et al. The Soybean: Botany, Production and Uses , 2010 .
[36] Zhou Du,et al. agriGO: a GO analysis toolkit for the agricultural community , 2010, Nucleic Acids Res..
[37] J. Specht,et al. Artificial selection for determinate growth habit in soybean , 2010, Proceedings of the National Academy of Sciences.
[38] Trupti Joshi,et al. An integrated transcriptome atlas of the crop model Glycine max, and its use in comparative analyses in plants. , 2010, The Plant journal : for cell and molecular biology.
[39] T. Sakurai,et al. Genome sequence of the palaeopolyploid soybean , 2010, Nature.
[40] S. Tabata,et al. Map-Based Cloning of the Gene Associated With the Soybean Maturity Locus E3 , 2009, Genetics.
[41] Gonçalo R. Abecasis,et al. The Sequence Alignment/Map format and SAMtools , 2009, Bioinform..
[42] L. Pachter,et al. TopHat: discovering splice junctions with RNA-Seq , 2009, Bioinform..
[43] Liuda Ziaugra,et al. SNP Genotyping Using the Sequenom MassARRAY iPLEX Platform , 2009, Current protocols in human genetics.
[44] Eric T. Wang,et al. Alternative Isoform Regulation in Human Tissue Transcriptomes , 2008, Nature.
[45] Baohui Liu,et al. Genetic Redundancy in Soybean Photoresponses Associated With Duplication of the Phytochrome A Gene , 2008, Genetics.
[46] K. Chase,et al. A Soybean Transcript Map: Gene Distribution, Haplotype and Single-Nucleotide Polymorphism Analysis , 2007, Genetics.
[47] Kejun Liu,et al. PowerMarker: an integrated analysis environment for genetic marker analysis , 2005, Bioinform..
[48] Thomas Lübberstedt,et al. Functional markers in plants. , 2003, Trends in plant science.
[49] S. Dwivedi,et al. Primer premier: program for design of degenerate primers from a protein sequence. , 1998, BioTechniques.
[50] Bernard R. Baum,et al. Modification of a CTAB DNA extraction protocol for plants containing high polysaccharide and polyphenol components , 1997, Plant Molecular Biology Reporter.
[51] Henry D. Priest,et al. Genome-wide mapping of alternative splicing in Arabidopsis thaliana. , 2010, Genome research.
[52] T. A. Hall,et al. BIOEDIT: A USER-FRIENDLY BIOLOGICAL SEQUENCE ALIGNMENT EDITOR AND ANALYSIS PROGRAM FOR WINDOWS 95/98/ NT , 1999 .
[53] Pablo Cingolani,et al. © 2012 Landes Bioscience. Do not distribute. , 2022 .