Transcript profiling of native Korean grapevine species Vitis flexuosa exposed to dehydration and rehydration treatment
暂无分享,去创建一个
[1] Yali Zhang,et al. Comparative transcriptome analysis reveals defense-related genes and pathways against downy mildew in Vitis amurensis grapevine. , 2015, Plant physiology and biochemistry : PPB.
[2] Md. Zaherul Islam,et al. Identification of six transcripts encoding putative receptor-like protein kinase (RLK) and their expression profiles in Vitis flexuosa infected with pathogens , 2015 .
[3] L. Cadle-Davidson,et al. Vitis rupestris B38 Confers Isolate-Specific Quantitative Resistance to Penetration by Erysiphe necator. , 2015, Phytopathology.
[4] Jinyu Wei,et al. Molecular Sciences Molecular Characteristics and Biochemical Functions of Vppr10s from Vitis Pseudoreticulata Associated with Biotic and Abiotic Stresses , 2022 .
[5] Weirong Xu,et al. Transcriptome profiling of Vitis amurensis, an extremely cold-tolerant Chinese wild Vitis species, reveals candidate genes and events that potentially connected to cold stress , 2014, Plant Molecular Biology.
[6] Sung-Hwan Jo,et al. De novo transcriptome assembly of Vitis flexuosa grapevines inoculated with Elsinoe ampelina , 2014, Plant Genetic Resources.
[7] Tetsuya Mori,et al. Alternation of flavonoid accumulation under drought stress in Arabidopsis thaliana , 2014, Plant signaling & behavior.
[8] L. Carvalho,et al. Heat and water stress induce unique transcriptional signatures of heat-shock proteins and transcription factors in grapevine , 2014, Functional & Integrative Genomics.
[9] C. Testerink,et al. Phosphatidic acid, a versatile water-stress signal in roots , 2013, Front. Plant Sci..
[10] H. Yun,et al. Transcriptional analysis of Dehydrin1 genes responsive to dehydrating stress in grapevines , 2013, Horticulture, Environment, and Biotechnology.
[11] Z. Dai,et al. Transcriptomic analysis of grape (Vitis vinifera L.) leaves during and after recovery from heat stress , 2012, BMC Plant Biology.
[12] Q. Ma,et al. CCCH-Type Zinc Finger Family in Maize: Genome-Wide Identification, Classification and Expression Profiling under Abscisic Acid and Drought Treatments , 2012, PloS one.
[13] C. Lovisolo,et al. Recovery from water stress affects grape leaf petiole transcriptome , 2012, Planta.
[14] David M. Goodstein,et al. Phytozome: a comparative platform for green plant genomics , 2011, Nucleic Acids Res..
[15] Gokare A. Ravishankar,et al. Influence of abiotic stress signals on secondary metabolites in plants , 2011, Plant signaling & behavior.
[16] Chuan-Yun Li,et al. KOBAS 2.0: a web server for annotation and identification of enriched pathways and diseases , 2011, Nucleic Acids Res..
[17] E. Blumwald,et al. Hormone balance and abiotic stress tolerance in crop plants. , 2011, Current opinion in plant biology.
[18] J. Spring,et al. Diurnal cycles of embolism formation and repair in petioles of grapevine (Vitis vinifera cv. Chasselas) , 2011, Journal of experimental botany.
[19] S. S. Hussain,et al. Transcription factors as tools to engineer enhanced drought stress tolerance in plants , 2011, Biotechnology progress.
[20] J. Cushman,et al. Water Deficit Increases Stilbene Metabolism in Cabernet Sauvignon Berries , 2010, Journal of agricultural and food chemistry.
[21] K. Folta,et al. Whole genome wide expression profiles of Vitis amurensis grape responding to downy mildew by using Solexa sequencing technology , 2010, BMC Plant Biology.
[22] G. Malerba,et al. Characterization of Transcriptional Complexity during Berry Development in Vitis vinifera Using RNA-Seq1[W] , 2010, Plant Physiology.
[23] C. Ford,et al. Regulation of Malate Metabolism in Grape Berry and Other Developing Fruits , 2009 .
[24] R. Sowdhamini,et al. STIFDB—Arabidopsis Stress Responsive Transcription Factor DataBase , 2009, International journal of plant genomics.
[25] J. Flexas,et al. Photosynthesis limitations during water stress acclimation and recovery in the drought-adapted Vitis hybrid Richter-110 (V. berlandierixV. rupestris). , 2009, Journal of experimental botany.
[26] D. Galbraith,et al. Transcript profiling in Vitis riparia during chilling requirement fulfillment reveals coordination of gene expression patterns with optimized bud break , 2009, Functional & Integrative Genomics.
[27] Brad T. Sherman,et al. Bioinformatics enrichment tools: paths toward the comprehensive functional analysis of large gene lists , 2008, Nucleic acids research.
[28] W. Hartung,et al. An abscisic acid-related reduced transpiration promotes gradual embolism repair when grapevines are rehydrated after drought. , 2008, The New phytologist.
[29] Guodong Yang,et al. Genome-wide analysis of CCCH zinc finger family in Arabidopsis and rice , 2008, BMC Genomics.
[30] J. Cushman,et al. Transcriptomic and metabolite analyses of Cabernet Sauvignon grape berry development , 2007, BMC Genomics.
[31] J. Poulain,et al. The grapevine genome sequence suggests ancestral hexaploidization in major angiosperm phyla , 2007, Nature.
[32] C. Vazzana,et al. Amino acid pattern and glutamate metabolism during dehydration stress in the 'resurrection' plant Sporobolus stapfianus: a comparison between desiccation-sensitive and desiccation-tolerant leaves. , 2007, Journal of experimental botany.
[33] J. Cushman,et al. Transcript abundance profiles reveal larger and more complex responses of grapevine to chilling compared to osmotic and salinity stress , 2007, Functional & Integrative Genomics.
[34] J. Cushman,et al. Water and salinity stress in grapevines: early and late changes in transcript and metabolite profiles , 2007, Functional & Integrative Genomics.
[35] T. Lacombe,et al. Wine grape (Vitis vinifera L.) color associates with allelic variation in the domestication gene VvmybA1 , 2007, Theoretical and Applied Genetics.
[36] K. Shinozaki,et al. Gene networks involved in drought stress response and tolerance. , 2006, Journal of experimental botany.
[37] K. Yazaki. ABC transporters involved in the transport of plant secondary metabolites , 2006, FEBS letters.
[38] R. Sunkar,et al. Drought and Salt Tolerance in Plants , 2005 .
[39] K. Shinozaki,et al. Organization of cis-acting regulatory elements in osmotic- and cold-stress-responsive promoters. , 2005, Trends in plant science.
[40] J. Bousquet,et al. Molecular genetic diversity of the French-American grapevine hybrids cultivated in North America. , 2003, Genome.
[41] K. Shinozaki,et al. Regulatory network of gene expression in the drought and cold stress responses. , 2003, Current opinion in plant biology.
[42] K. Akiyama,et al. Monitoring expression profiles of Arabidopsis gene expression during rehydration process after dehydration using ca 7000 full-length cDNA microarray. , 2003, The Plant journal : for cell and molecular biology.
[43] K. Shinozaki,et al. Important roles of drought- and cold-inducible genes for galactinol synthase in stress tolerance in Arabidopsis thaliana. , 2002, The Plant journal : for cell and molecular biology.
[44] J. Cairney,et al. A simple and efficient method for isolating RNA from pine trees , 1993, Plant Molecular Biology Reporter.
[45] M. Kirschbaum. Recovery of photosynthesis from water stress in Eucalyptus pauciflora: a process in two stages , 1988 .
[46] T. Lumley,et al. gplots: Various R Programming Tools for Plotting Data , 2015 .
[47] D. Lawlor. Genetic engineering to improve plant performance under drought: physiological evaluation of achievements, limitations, and possibilities. , 2013, Journal of experimental botany.
[48] J. Cushman,et al. The Vitis vinifera C-repeat binding protein 4 (VvCBF4) transcriptional factor enhances freezing tolerance in wine grape. , 2012, Plant biotechnology journal.
[49] P. Heino,et al. ERD15--an attenuator of plant ABA responses and stomatal aperture. , 2012, Plant science : an international journal of experimental plant biology.
[50] Bingru Huang,et al. Membrane Fatty Acid Composition and Saturation Levels Associated with Leaf Dehydration Tolerance and Post‐Drought Rehydration in Kentucky Bluegrass , 2011 .
[51] Brad T. Sherman,et al. Systematic and integrative analysis of large gene lists using DAVID bioinformatics resources , 2008, Nature Protocols.
[52] 太治 輝昭,et al. Important roles of drought-and cold-inducible genes for galactinol synthase in stress tolerance in Arabidopsis thaliana , 2002 .