Genome-wide survey and expression analysis of the OSCA gene family in rice
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Z. Pei | F. Wang | Tao Zhu | Yi-Heng Li | Yingdian Wang | Heping Zhao | Shengcheng Han | Zhaohong Wen | Yunshuang Li | F. Yuan | Xi Jin | Wenqing Zhuo
[1] Z. Pei,et al. OSCA1 mediates osmotic-stress-evoked Ca2+ increases vital for osmosensing in Arabidopsis , 2014, Nature.
[2] K. Yamaguchi-Shinozaki,et al. ABA-dependent and ABA-independent signaling in response to osmotic stress in plants. , 2014, Current opinion in plant biology.
[3] S. Luan,et al. DUF221 proteins are a family of osmosensitive calcium-permeable cation channels conserved across eukaryotes , 2014, Cell Research.
[4] R. Finkelstein,et al. Abscisic Acid Synthesis and Response , 2013, The arabidopsis book.
[5] J. R. Holt,et al. TMC1 and TMC2 Are Components of the Mechanotransduction Channel in Hair Cells of the Mammalian Inner Ear , 2013, Neuron.
[6] Qi-yi Tang,et al. Data Processing System (DPS) software with experimental design, statistical analysis and data mining developed for use in entomological research , 2013, Insect science.
[7] W. Schafer,et al. tmc-1 encodes a sodium-sensitive channel required for salt chemosensation in C. elegans , 2013, Nature.
[8] Y. Fujita,et al. Pivotal role of the AREB/ABF-SnRK2 pathway in ABRE-mediated transcription in response to osmotic stress in plants. , 2013, Physiologia plantarum.
[9] Y. Shavrukov. Salt stress or salt shock: which genes are we studying? , 2013, Journal of experimental botany.
[10] S. F. D’souza,et al. Membrane Topology and Predicted RNA-Binding Function of the ‘Early Responsive to Dehydration (ERD4)’ Plant Protein , 2012, PloS one.
[11] H. Kong,et al. Divergence of duplicate genes in exon–intron structure , 2012, Proceedings of the National Academy of Sciences.
[12] M. Nei,et al. MEGA5: molecular evolutionary genetics analysis using maximum likelihood, evolutionary distance, and maximum parsimony methods. , 2011, Molecular biology and evolution.
[13] H. Xue,et al. Rice ABI5-Like1 Regulates Abscisic Acid and Auxin Responses by Affecting the Expression of ABRE-Containing Genes1[W][OA] , 2011, Plant Physiology.
[14] K. Shinozaki,et al. ABA-mediated transcriptional regulation in response to osmotic stress in plants , 2011, Journal of Plant Research.
[15] L. Xiong,et al. Characterization of the β-Carotene Hydroxylase Gene DSM2 Conferring Drought and Oxidative Stress Resistance by Increasing Xanthophylls and Abscisic Acid Synthesis in Rice1[C][W][OA] , 2010, Plant Physiology.
[16] M. Chalfie,et al. Eukaryotic mechanosensitive channels. , 2010, Annual review of biophysics.
[17] Haoli Ma,et al. Genome-wide identification, classification, and expression analysis of the arabinogalactan protein gene family in rice (Oryza sativa L.) , 2010, Journal of experimental botany.
[18] D. Chao,et al. A previously unknown zinc finger protein, DST, regulates drought and salt tolerance in rice via stomatal aperture control. , 2009, Genes & development.
[19] Yu Li,et al. A Maize Early Responsive to Dehydration Gene, ZmERD4, Provides Enhanced Drought and Salt Tolerance in Arabidopsis , 2009, Plant Molecular Biology Reporter.
[20] Mukesh Jain. Genome-wide identification of novel internal control genes for normalization of gene expression during various stages of development in rice , 2009 .
[21] J. Pittman,et al. Shaping the calcium signature. , 2009, The New phytologist.
[22] J. Bennetzen,et al. Dynamic Evolution of Oryza Genomes Is Revealed by Comparative Genomic Analysis of a Genus-Wide Vertical Data Set[W][OA] , 2008, The Plant Cell Online.
[23] Yuh Nung Jan,et al. Expression Cloning of TMEM16A as a Calcium-Activated Chloride Channel Subunit , 2008, Cell.
[24] E. Ulian,et al. Identification of genes responsive to the application of ethanol on sugarcane leaves , 2007, Plant Cell Reports.
[25] I. Booth,et al. Mechanosensitive channels in bacteria: signs of closure? , 2007, Nature Reviews Microbiology.
[26] Todd E. Woerner,et al. Coupling Diurnal Cytosolic Ca2+ Oscillations to the CAS-IP3 Pathway in Arabidopsis , 2007, Science.
[27] Kazuo Shinozaki,et al. Transcriptional regulatory networks in cellular responses and tolerance to dehydration and cold stresses. , 2006, Annual review of plant biology.
[28] R. Sunkar,et al. Drought and Salt Tolerance in Plants , 2005 .
[29] K. Shinozaki,et al. Characterization of the gene for Δ1-pyrroline-5-carboxylate synthetase and correlation between the expression of the gene and salt tolerance in Oryza sativa L. , 1997, Plant Molecular Biology.
[30] K. Shinozaki,et al. Cloning of cDNAs for genes that are early-responsive to dehydration stress (ERDs) inArabidopsis thaliana L.: identification of three ERDs as HSP cognate genes , 1994, Plant Molecular Biology.
[31] T. Dawson. Hydraulic lift and water use by plants: implications for water balance, performance and plant-plant interactions , 1993, Oecologia.
[32] Alex A R Webb,et al. The physiology of circadian rhythms in plants. , 2003, The New phytologist.
[33] A. Altman,et al. Plant responses to drought, salinity and extreme temperatures: towards genetic engineering for stress tolerance , 2003, Planta.
[34] Todd E. Woerner,et al. A cell surface receptor mediates extracellular Ca2+ sensing in guard cells , 2003, Nature.
[35] Rodrigo Lopez,et al. Multiple sequence alignment with the Clustal series of programs , 2003, Nucleic Acids Res..
[36] K. Kadowaki,et al. Diversity in the Oryza genus. , 2003, Current opinion in plant biology.
[37] M. Yano,et al. Phytochrome mediates the external light signal to repress FT orthologs in photoperiodic flowering of rice. , 2002, Genes & development.
[38] Jian-Kang Zhu,et al. Salt and drought stress signal transduction in plants. , 2002, Annual review of plant biology.
[39] F. Speleman,et al. Accurate normalization of real-time quantitative RT-PCR data by geometric averaging of multiple internal control genes , 2002, Genome Biology.
[40] Thomas D. Schmittgen,et al. Analysis of relative gene expression data using real-time quantitative PCR and the 2(-Delta Delta C(T)) Method. , 2001, Methods.
[41] K. Shinozaki,et al. Molecular responses to dehydration and low temperature: differences and cross-talk between two stress signaling pathways. , 2000, Current opinion in plant biology.
[42] A. Trewavas,et al. Calcium signalling in Arabidopsis thaliana responding to drought and salinity. , 1997, The Plant journal : for cell and molecular biology.
[43] J. Ingram,et al. THE MOLECULAR BASIS OF DEHYDRATION TOLERANCE IN PLANTS. , 1996, Annual review of plant physiology and plant molecular biology.
[44] K. Bradford. Water Stress and the Water Relations of Seed Development: A Critical Review , 1994 .
[45] Thomas D. Schmittgen,et al. Analysis of Relative Gene Expression Data Using Real-Time Quantitative PCR and the 2 2 DD C T Method , 2022 .