scholarly article | Q13442814 |
P819 | ADS bibcode | 2014PLoSO...991721H |
P356 | DOI | 10.1371/JOURNAL.PONE.0091721 |
P932 | PMC publication ID | 3968010 |
P698 | PubMed publication ID | 24675968 |
P5875 | ResearchGate publication ID | 261186845 |
P50 | author | Soon-Chun Jeong | Q54630924 |
P2093 | author name string | Douglas R Cook | |
Young-Su Seo | |||
Chaeyoung Lee | |||
Ki-Hong Jung | |||
Daejin Hyung | |||
Dongwoon Yoo | |||
Hong-Kyu Choi | |||
Jai-Heon Lee | |||
Jin-Hyun Kim | |||
Youngsoo Chung | |||
P2860 | cites work | Genome structure of the legume, Lotus japonicus | Q22066059 |
Draft genome sequence of pigeonpea (Cajanus cajan), an orphan legume crop of resource-poor farmers | Q22122116 | ||
The Medicago genome provides insight into the evolution of rhizobial symbioses | Q22122164 | ||
Genome sequence of the palaeopolyploid soybean | Q22122200 | ||
The grapevine genome sequence suggests ancestral hexaploidization in major angiosperm phyla | Q22122214 | ||
Inparanoid: a comprehensive database of eukaryotic orthologs | Q24558576 | ||
InParanoid 7: new algorithms and tools for eukaryotic orthology analysis | Q24643054 | ||
EnsemblCompara GeneTrees: Complete, duplication-aware phylogenetic trees in vertebrates | Q24644266 | ||
Palaeogenomics of plants: synteny-based modelling of extinct ancestors | Q42668568 | ||
The in vivo toxicity of hydroxyurea depends on its direct target catalase | Q42737452 | ||
Calcineurin B‐like protein CBL10 directly interacts with AKT1 and modulates K+ homeostasis in Arabidopsis | Q44254462 | ||
A small plant-specific protein family of ABI five binding proteins (AFPs) regulates stress response in germinating Arabidopsis seeds and seedlings | Q44264366 | ||
Development of nuclear gene-derived molecular markers linked to legume genetic maps. | Q45996054 | ||
Finding and comparing syntenic regions among Arabidopsis and the outgroups papaya, poplar, and grape: CoGe with rosids | Q46064782 | ||
Identification of two protein kinases required for abscisic acid regulation of seed germination, root growth, and gene expression in Arabidopsis | Q46100192 | ||
Inward rectification of the AKT2 channel abolished by voltage-dependent phosphorylation. | Q46810983 | ||
Arabidopsis calcium-dependent protein kinase AtCPK32 interacts with ABF4, a transcriptional regulator of abscisic acid-responsive gene expression, and modulates its activity | Q46813365 | ||
Role of abscisic acid (ABA) and Arabidopsis thaliana ABA-insensitive loci in low water potential-induced ABA and proline accumulation | Q46844210 | ||
Syntenic relationships between Medicago truncatula and Arabidopsis reveal extensive divergence of genome organization | Q48255295 | ||
Comparative network analysis reveals that tissue specificity and gene function are important factors influencing the mode of expression evolution in Arabidopsis and rice | Q49060437 | ||
ABI3 affects plastid differentiation in dark-grown Arabidopsis seedlings | Q49169462 | ||
Early effects of salinity on water transport in Arabidopsis roots. Molecular and cellular features of aquaporin expression | Q50753366 | ||
CIPK6, a CBL-interacting protein kinase is required for development and salt tolerance in plants | Q51941368 | ||
Importance of the B2 domain of the Arabidopsis ABI3 protein for Em and 2S albumin gene regulation | Q52173897 | ||
HONSU, a protein phosphatase 2C, regulates seed dormancy by inhibiting ABA signaling in Arabidopsis | Q53342654 | ||
Comparative genomics of Brassica oleracea and Arabidopsis thaliana reveal gene loss, fragmentation, and dispersal after polyploidy | Q57007961 | ||
Molecular characterization of functional domains in the protein kinase SOS2 that is required for plant salt tolerance | Q74009868 | ||
Phylogeny and genomic organization of the TIR and non-tIR NBS-LRR resistance gene family in Medicago truncatula | Q74274841 | ||
ABI4 mediates the effects of exogenous trehalose on Arabidopsis growth and starch breakdown | Q79217712 | ||
Conditional oxidative stress responses in the Arabidopsis photorespiratory mutant cat2 demonstrate that redox state is a key modulator of daylength-dependent gene expression, and define photoperiod as a crucial factor in the regulation of H2O2-induc | Q81315014 | ||
GreenPhylDB: a database for plant comparative genomics | Q24649789 | ||
The rest of the iceberg. Legume diversity and evolution in a phylogenetic context | Q24678903 | ||
Comparative genomics of Arabidopsis and maize: prospects and limitations | Q24791057 | ||
Integration of biological networks and gene expression data using Cytoscape | Q28681323 | ||
Three sequenced legume genomes and many crop species: rich opportunities for translational genomics | Q28750277 | ||
Functional annotation of the Arabidopsis genome using controlled vocabularies | Q28770139 | ||
Phytozome: a comparative platform for green plant genomics | Q29616763 | ||
Abscisic acid inhibits type 2C protein phosphatases via the PYR/PYL family of START proteins | Q29616860 | ||
The Arabidopsis thaliana NAC transcription factor family: structure-function relationships and determinants of ANAC019 stress signalling | Q33348305 | ||
Rational association of genes with traits using a genome-scale gene network for Arabidopsis thaliana | Q33801141 | ||
Integration of linkage maps for the Amphidiploid Brassica napus and comparative mapping with Arabidopsis and Brassica rapa. | Q33816337 | ||
Comparative functional genomics of salt stress in related model and cultivated plants identifies and overcomes limitations to translational genomics | Q33828388 | ||
What Makes the Rhizobia-Legume Symbiosis So Special? | Q34462909 | ||
Plant stomata function in innate immunity against bacterial invasion | Q34564415 | ||
Translational Genomics in Legumes Allowed Placing In Silico 5460 Unigenes on the Pea Functional Map and Identified Candidate Genes in Pisum sativum L | Q35746720 | ||
ICE1: a regulator of cold-induced transcriptome and freezing tolerance in Arabidopsis | Q35964795 | ||
A novel domain in the protein kinase SOS2 mediates interaction with the protein phosphatase 2C ABI2 | Q36161641 | ||
Type 2C protein phosphatases directly regulate abscisic acid-activated protein kinases in Arabidopsis. | Q37368434 | ||
Translating Medicago truncatula genomics to crop legumes | Q37375430 | ||
Identification of transferred DNA insertions within Arabidopsis genes involved in signal transduction and ion transport. | Q37467066 | ||
Estimating genome conservation between crop and model legume species | Q37593183 | ||
Research on plant abiotic stress responses in the post-genome era: past, present and future | Q37735378 | ||
Molecular basis of the core regulatory network in ABA responses: sensing, signaling and transport | Q37803468 | ||
Potassium Transport and Signaling in Higher Plants | Q38075013 | ||
Independently evolved virulence effectors converge onto hubs in a plant immune system network | Q38367812 | ||
Evidence for Network Evolution in an Arabidopsis Interactome Map | Q38367823 | ||
Two calcineurin B-like calcium sensors, interacting with protein kinase CIPK23, regulate leaf transpiration and root potassium uptake in Arabidopsis. | Q38943283 | ||
CBL1, a calcium sensor that differentially regulates salt, drought, and cold responses in Arabidopsis | Q38943286 | ||
Water deficit modulates the response of Vitis vinifera to the Pierce's disease pathogen Xylella fastidiosa | Q38945514 | ||
Plant comparative genetics after 10 years | Q39015792 | ||
Regulators of PP2C phosphatase activity function as abscisic acid sensors. | Q39198475 | ||
Arabidopsis OST1 protein kinase mediates the regulation of stomatal aperture by abscisic acid and acts upstream of reactive oxygen species production | Q39284356 | ||
Protein phosphatases 2C regulate the activation of the Snf1-related kinase OST1 by abscisic acid in Arabidopsis | Q39563501 | ||
Cis-regulatory element based targeted gene finding: genome-wide identification of abscisic acid- and abiotic stress-responsive genes in Arabidopsis thaliana | Q39627223 | ||
Comparative Genomics Between Rice and Arabidopsis Shows Scant Collinearity in Gene Order | Q40415860 | ||
P275 | copyright license | Creative Commons Attribution 4.0 International | Q20007257 |
P6216 | copyright status | copyrighted | Q50423863 |
P4510 | describes a project that uses | Cytoscape | Q3699942 |
P433 | issue | 3 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | abiotic stress | Q4667893 |
Medicago truncatula | Q136894 | ||
genomics | Q222046 | ||
P304 | page(s) | e91721 | |
P577 | publication date | 2014-03-27 | |
P1433 | published in | PLOS One | Q564954 |
P1476 | title | Cross-family translational genomics of abiotic stress-responsive genes between Arabidopsis and Medicago truncatula | |
P478 | volume | 9 |
Q35531171 | CSGM Designer: a platform for designing cross-species intron-spanning genic markers linked with genome information of legumes |
Q55128748 | Dataset of the first transcriptome assembly of the tree crop "yerba mate" (Ilex paraguariensis) and systematic characterization of protein coding genes. |
Q39544299 | Genome-wide identification and expression analysis of sulfate transporter (SULTR) genes in potato (Solanum tuberosum L.). |
Q46809498 | Identification and molecular characterization of Medicago truncatula NRT2 and NAR2 families |
Q26859143 | Sulfate transporters in the plant's response to drought and salinity: regulation and possible functions |
Q90208991 | Tailoring Plant-Associated Microbial Inoculants in Agriculture - A Roadmap for Successful Application |
Q48118488 | The phosphate transporters LjPT4 and MtPT4 mediate early root responses to phosphate status in non mycorrhizal roots. |
Q34456994 | The role of ROS signaling in cross-tolerance: from model to crop |
Search more.