scholarly article | Q13442814 |
P356 | DOI | 10.1111/PPL.12058 |
P953 | full work available at URL | https://api.wiley.com/onlinelibrary/tdm/v1/articles/10.1111%2Fppl.12058 |
https://onlinelibrary.wiley.com/doi/pdf/10.1111/ppl.12058 | ||
P698 | PubMed publication ID | 23617399 |
P2093 | author name string | Sang Hoon Kim | |
Sun-Hee Kim | |||
Si-Yong Kang | |||
Dong Sub Kim | |||
Jung Eun Hwang | |||
Bo-Keun Ha | |||
Cheol Seong Jang | |||
Jin-Baek Kim | |||
Sun-Goo Hwang | |||
Vijayanand Velusamy | |||
P2860 | cites work | ARACNE: An Algorithm for the Reconstruction of Gene Regulatory Networks in a Mammalian Cellular Context | Q21284234 |
Genome hypermethylation in Pinus silvestris of Chernobyl—a mechanism for radiation adaptation? | Q30048821 | ||
Microarray analysis of developing Arabidopsis seeds | Q30633765 | ||
Monitoring expression profiles of rice genes under cold, drought, and high-salinity stresses and abscisic acid application using cDNA microarray and RNA gel-blot analyses | Q31029661 | ||
Novel genes are enriched in normalized cDNA libraries from drought-stressed seedlings of rice (Oryza sativa L. subsp. indica cv. Nagina 22). | Q32067262 | ||
From single genes to co-expression networks: extracting knowledge from barley functional genomics. | Q33223219 | ||
STARNET 2: a web-based tool for accelerating discovery of gene regulatory networks using microarray co-expression data | Q33510435 | ||
Arabidopsis gene co-expression network and its functional modules. | Q33511670 | ||
Gene expression profiles deciphering rice phenotypic variation between Nipponbare (Japonica) and 93-11 (Indica) during oxidative stress | Q33523807 | ||
A general co-expression network-based approach to gene expression analysis: comparison and applications | Q33528306 | ||
TobEA: an atlas of tobacco gene expression from seed to senescence | Q33534865 | ||
Rational association of genes with traits using a genome-scale gene network for Arabidopsis thaliana | Q33801141 | ||
Genomic approaches to plant stress tolerance | Q33860628 | ||
Molecular responses to dehydration and low temperature: differences and cross-talk between two stress signaling pathways | Q33932925 | ||
Gene expression profiling of plant responses to abiotic stress | Q35163092 | ||
Regulatory network of gene expression in the drought and cold stress responses. | Q35217896 | ||
Plant responses to drought, salinity and extreme temperatures: towards genetic engineering for stress tolerance | Q35545173 | ||
PLANT COLD ACCLIMATION: Freezing Tolerance Genes and Regulatory Mechanisms | Q35687158 | ||
Insight into the Molecular Evolution of Non-Specific Lipid Transfer Proteins via Comparative Analysis Between Rice and Sorghum | Q35885453 | ||
Engineering drought and salinity tolerance in plants: lessons from genome-wide expression profiling in Arabidopsis | Q36258418 | ||
Role of DREB transcription factors in abiotic and biotic stress tolerance in plants | Q36542843 | ||
Functional diversity of the plant glycine-rich proteins superfamily | Q37653884 | ||
Expression profile matrix of Arabidopsis transcription factor genes suggests their putative functions in response to environmental stresses. | Q38290951 | ||
RiceArrayNet: a database for correlating gene expression from transcriptome profiling, and its application to the analysis of coexpressed genes in rice | Q38352242 | ||
Transcriptomic profile of Arabidopsis rosette leaves during the reproductive stage after exposure to ionizing radiation | Q38504748 | ||
Assembly of an interactive correlation network for the Arabidopsis genome using a novel heuristic clustering algorithm | Q38508445 | ||
Global transcription profiling reveals comprehensive insights into hypoxic response in Arabidopsis | Q38520877 | ||
Improving plant drought, salt, and freezing tolerance by gene transfer of a single stress-inducible transcription factor | Q39123184 | ||
Transcriptome changes for Arabidopsis in response to salt, osmotic, and cold stress | Q39148226 | ||
Functional identification of a trehalose 6-phosphate phosphatase gene that is involved in transient induction of trehalose biosynthesis during chilling stress in rice | Q39366816 | ||
Accumulation of the common mitochondrial DNA deletion induced by ionizing radiation | Q40530947 | ||
Genome‐wide transcriptional changes and defence‐related chemical profiling of rice in response to infestation by the rice striped stem borer Chilo suppressalis | Q42017394 | ||
Abiotic stress signalling pathways: specificity and cross-talk | Q42045166 | ||
The association of multiple interacting genes with specific phenotypes in rice using gene coexpression networks | Q42953371 | ||
Modulation of transcription factor and metabolic pathway genes in response to water-deficit stress in rice | Q43512023 | ||
RopGAP4-dependent Rop GTPase rheostat control of Arabidopsis oxygen deprivation tolerance | Q44028996 | ||
Comparative transcriptional profiling of placenta and endosperm in developing maize kernels in response to water deficit | Q44315464 | ||
Growth of the maize primary root at low water potentials : I. Spatial distribution of expansive growth | Q46910709 | ||
Class-1 hemoglobins, nitrate and NO levels in anoxic maize cell-suspension cultures. | Q47205002 | ||
Comparative analysis of evolutionary dynamics of genes encoding leucine-rich repeat receptor-like kinase between rice and Arabidopsis | Q47270291 | ||
Differential gene expression in response to mechanical wounding and insect feeding in Arabidopsis | Q52579034 | ||
Microarray analysis of genes that respond to gamma-irradiation in Arabidopsis. | Q54367776 | ||
Gene coexpression network alignment and conservation of gene modules between two grass species: maize and rice | Q84179075 | ||
Genome-wide transcriptome profiling of ROS scavenging and signal transduction pathways in rice (Oryza sativa L.) in response to different types of ionizing radiation | Q85242753 | ||
P433 | issue | 4 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 554-570 | |
P577 | publication date | 2013-04-05 | |
2013-04-26 | |||
P1433 | published in | Physiologia Plantarum | Q7189709 |
P1476 | title | The identification of candidate radio marker genes using a coexpression network analysis in gamma-irradiated rice | |
The identification of candidate radio marker genes using a coexpression network analysis in gamma‐irradiated rice | |||
P478 | volume | 149 |
Q91645019 | Functional Characterization of a Rice Thioredoxin Protein OsTrxm and Its Cysteine Mutant Variant with Antifungal Activity |
Q36086999 | Linear Energy Transfer-Dependent Change in Rice Gene Expression Profile after Heavy-Ion Beam Irradiation |
Q41561289 | Rice RING E3 ligase may negatively regulate gamma-ray response to mediate the degradation of photosynthesis-related proteins |
Q47804852 | Transcriptome analysis of reproductive-stage Arabidopsis plants exposed gamma-ray irradiation at various doses |
Q38484061 | Transcriptome profiling in response to different types of ionizing radiation and identification of multiple radio marker genes in rice |
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