Monitoring Transcriptomic Changes in Soil-Grown Roots and Shoots of Arabidopsis thaliana Subjected to a Progressive Drought Stress.
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M. Seki | Kei Iida | Maho Tanaka | A. Matsui | K. Bashir | S. Rasheed | K. Iida | Khurram Bashir
[1] M. Seki,et al. Drought stress differentially regulates the expression of small open reading frames (sORFs) in Arabidopsis roots and shoots , 2016, Plant signaling & behavior.
[2] M. Seki,et al. Transcriptomic Analysis of Soil-Grown Arabidopsis thaliana Roots and Shoots in Response to a Drought Stress , 2016, Front. Plant Sci..
[3] M. Seki,et al. Loss of Arabidopsis 5'-3' Exoribonuclease AtXRN4 Function Enhances Heat Stress Tolerance of Plants Subjected to Severe Heat Stress. , 2015, Plant & cell physiology.
[4] Matthew E. Ritchie,et al. limma powers differential expression analyses for RNA-sequencing and microarray studies , 2015, Nucleic acids research.
[5] K. Shinozaki,et al. Gene expression profiling using DNA microarrays. , 2014, Methods in molecular biology.
[6] Anushya Muruganujan,et al. PANTHER in 2013: modeling the evolution of gene function, and other gene attributes, in the context of phylogenetic trees , 2012, Nucleic Acids Res..
[7] N. Baisakh,et al. Overexpression of Arabidopsis and rice stress genes' inducible transcription factor confers drought and salinity tolerance to rice. , 2012, Plant biotechnology journal.
[8] L. Lepiniec,et al. Transcriptional Regulation of Arabidopsis LEAFY COTYLEDON2 Involves RLE, a cis-Element That Regulates Trimethylation of Histone H3 at Lysine-27[W] , 2011, Plant Cell.
[9] Arjun Krishnan,et al. Molecular and Physiological Analysis of Drought Stress in Arabidopsis Reveals Early Responses Leading to Acclimation in Plant Growth1[C][W][OA] , 2010, Plant Physiology.
[10] Kazuo Shinozaki,et al. Regulatory metabolic networks in drought stress responses. , 2007, Current opinion in plant biology.
[11] E. Bornberg-Bauer,et al. The AtGenExpress global stress expression data set: protocols, evaluation and model data analysis of UV-B light, drought and cold stress responses. , 2007, The Plant journal : for cell and molecular biology.
[12] R. E. Sharp,et al. Root growth maintenance during water deficits: physiology to functional genomics. , 2004, Journal of experimental botany.
[13] S. Rhee,et al. MAPMAN: a user-driven tool to display genomics data sets onto diagrams of metabolic pathways and other biological processes. , 2004, The Plant journal : for cell and molecular biology.
[14] K. Akiyama,et al. Monitoring the expression profiles of 7000 Arabidopsis genes under drought, cold and high-salinity stresses using a full-length cDNA microarray. , 2002, The Plant journal : for cell and molecular biology.
[15] Y. Benjamini,et al. Controlling the false discovery rate: a practical and powerful approach to multiple testing , 1995 .
[16] J. Boyer. Plant Productivity and Environment , 1982, Science.