Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 105 checked references that resolve
resolves10.1104/pp.109.149815The Heat-Inducible Transcription Factor <i>HsfA2</i> Enhances Anoxia Tolerance in Arabidopsis
resolves10.1094/MPMI-19-0970Nitric Oxide Is Formed in <i>Medicago truncatula-Sinorhizobium meliloti</i> Functional Nodules
resolves10.1126/science.1071505RopGAP4-Dependent Rop GTPase Rheostat Control of
<i>Arabidopsis</i>
Oxygen Deprivation Tolerance
resolves10.1093/aob/mci217Genome-wide Analysis of Transcript Abundance and Translation in Arabidopsis Seedlings Subjected to Oxygen Deprivation
resolves10.1016/j.plantsci.2015.03.008Constitutively expressed ERF-VII transcription factors redundantly activate the core anaerobic response in Arabidopsis thaliana
resolves10.1007/s11103-011-9850-5Transient MPK6 activation in response to oxygen deprivation and reoxygenation is mediated by mitochondria and aids seedling survival in Arabidopsis
resolves10.1042/BJ20080625<i>Arabidopsis</i> MAPKs: a complex signalling network involved in multiple biological processes
resolves10.1111/j.1469-8137.2011.03693.xNitric oxide is required for an optimal establishment of the <i>Medicago truncatula–Sinorhizobium meliloti</i> symbiosis
resolves10.1094/MPMI-21-6-0781Expression of <i>Medicago truncatula</i> Genes Responsive to Nitric Oxide in Pathogenic and Symbiotic Conditions
resolves10.1105/tpc.110.080325The Submergence Tolerance Regulator SUB1A Mediates Crosstalk between Submergence and Drought Tolerance in Rice
resolves10.1104/pp.15.00338Group VII Ethylene Response Factors Coordinate Oxygen and Nitric Oxide Signal Transduction and Stress Responses in Plants
resolves10.1038/nature10534Homeostatic response to hypoxia is regulated by the N-end rule pathway in plants
resolves10.1016/j.molcel.2013.12.020Nitric Oxide Sensing in Plants Is Mediated by Proteolytic Control of Group VII ERF Transcription Factors
resolves10.1371/journal.pbio.1001950A Trihelix DNA Binding Protein Counterbalances Hypoxia-Responsive Transcriptional Activation in Arabidopsis
resolves10.1073/pnas.0906404106The N-end rule pathway controls multiple functions during
<i>Arabidopsis</i>
shoot and leaf development
resolves10.1093/pcp/pcq022Production and Scavenging of Nitric Oxide by Barley Root Mitochondria
resolves10.1093/jxb/eri252In higher plants, only root mitochondria, but not leaf mitochondria reduce nitrite to NO, in vitro and in situ
resolves10.1073/pnas.0810280106The N-end rule pathway promotes seed germination and establishment through removal of ABA sensitivity in
<i>Arabidopsis</i>
resolves10.1104/pp.110.166140Both Plant and Bacterial Nitrate Reductases Contribute to Nitric Oxide Production in <i>Medicago truncatula</i> Nitrogen-Fixing Nodules
resolves10.1038/nature04027The N-end rule pathway as a nitric oxide sensor controlling the levels of multiple regulators
resolves10.1007/s00425-005-0146-3Nitric oxide scavenging by barley hemoglobin is facilitated by a monodehydroascorbate reductase-mediated ascorbate reduction of methemoglobin
resolves10.1104/pp.109.152157The Submergence Tolerance Regulator <i>Sub1A</i> Mediates Stress-Responsive Expression of <i>AP2</i>/<i>ERF</i> Transcription Factors
resolves10.1046/j.1365-313X.2003.01864.xMass spectrometric approach for identifying putative plasma membrane proteins of <i>Arabidopsis</i> leaves associated with cold acclimation
resolves10.1111/pce.12493The stability and nuclear localization of the transcription factor <scp>RAP</scp>2.12 are dynamically regulated by oxygen concentration
resolves10.1016/S1016-8478(23)07356-9Combining In Silico Mapping and Arraying: an Approach to Identifying Common Candidate Genes for Submergence Tolerance and Resistance to Bacterial Leaf Blight in Rice
resolves10.1104/pp.126.2.670The Rop GTPase Switch Controls Multiple Developmental Processes in Arabidopsis
resolves10.1038/nature10536Oxygen sensing in plants is mediated by an N-end rule pathway for protein destabilization
resolves10.1104/pp.104.055475Global Transcription Profiling Reveals Comprehensive Insights into Hypoxic Response in Arabidopsis
resolves10.1104/pp.104.057299A Genome-Wide Analysis of the Effects of Sucrose on Gene Expression in Arabidopsis Seedlings under Anoxia
resolves10.1074/mcp.M700099-MCP200A High Content in Lipid-modified Peripheral Proteins and Integral Receptor Kinases Features in the Arabidopsis Plasma Membrane Proteome
resolves10.1111/pbi.12334Enhanced waterlogging tolerance in barley by manipulation of expression of the N‐end rule pathway E3 ligase <i><scp>PROTEOLYSIS</scp>6</i>
resolves10.1074/jbc.M800735200An Arabidopsis Protein Phosphorylated in Response to Microbial Elicitation, AtPHOS32, Is a Substrate of MAP Kinases 3 and 6
resolves10.1093/aob/mcl107Could Heat Shock Transcription Factors Function as Hydrogen Peroxide Sensors in Plants?
resolves10.1126/scisignal.2000448The Plant NADPH Oxidase RBOHD Mediates Rapid Systemic Signaling in Response to Diverse Stimuli
resolves10.1093/aob/mci212Underwater Photosynthesis in Flooded Terrestrial Plants: A Matter of Leaf Plasticity
resolves10.1105/tpc.106.048843Lysigenous Aerenchyma Formation in <i>Arabidopsis</i> Is Controlled by <i>LESION SIMULATING DISEASE1</i>
resolves10.1104/pp.109.151845Cross-Kingdom Comparison of Transcriptomic Adjustments to Low-Oxygen Stress Highlights Conserved and Plant-Specific Responses
resolves10.1073/pnas.0906131106Profiling translatomes of discrete cell populations resolves altered cellular priorities during hypoxia in
<i>Arabidopsis</i>
resolves10.1094/MPMI-21-9-1175Expression of a Class 1 Hemoglobin Gene and Production of Nitric Oxide in Response to Symbiotic and Pathogenic Bacteria in <i>Lotus japonicus</i>
resolves10.1111/tpj.12848The low oxygen, oxidative and osmotic stress responses synergistically act through the ethylene response factor<scp>VII</scp>genes<i><scp>RAP</scp>2.12</i>,<i><scp>RAP</scp>2.2</i>and<i><scp>RAP</scp>2.3</i>
resolves10.1093/aob/mcr086Distinct mechanisms for aerenchyma formation in leaf sheaths of rice genotypes displaying a quiescence or escape strategy for flooding tolerance
resolves10.1104/pp.111.191122Reactive Oxygen Species-Driven Transcription in Arabidopsis under Oxygen Deprivation
resolves10.1016/j.freeradbiomed.2008.06.012Hypoxia activates NADPH oxidase to increase [ROS]i and [Ca2+]i through the mitochondrial ROS-PKCɛ signaling axis in pulmonary artery smooth muscle cells
resolves10.1094/MPMI-23-5-0702Production of Nitric Oxide and Nitrosylleghemoglobin Complexes in Soybean Nodules in Response to Flooding
resolves10.1105/tpc.111.093880Plant Oxygen Sensing Is Mediated by the N-End Rule Pathway: A Milestone in Plant Anaerobiosis
resolves10.1093/jxb/erf096The novel ethylene-regulated gene OsUsp1 from rice encodes a member of a plant protein family related to prokaryotic universal stress proteins
resolves10.1093/pci/pci001Symbiotic Rhizobium and Nitric Oxide Induce Gene Expression of Non-symbiotic Hemoglobin in Lotus japonicus
resolves10.1111/pce.12312What happens to plant mitochondria under low oxygen? An omics review of the responses to low oxygen and reoxygenation
resolves10.1046/j.1365-313X.1997.00649.xOverexpression of light‐dependent PORA or PORB in plants depleted of endogenous POR by far‐red light enhances seedling survival in white light and protects against photooxidative damage
resolves10.4161/psb.4.3.7957Epidermal cells that undergo cell death differentially express cell identity genes
resolves10.1105/tpc.112.101790Emerging Roots Alter Epidermal Cell Fate through Mechanical and Reactive Oxygen Species Signaling
resolves10.1111/pce.12277Physiological and transcriptomic characterization of submergence and reoxygenation responses in soybean seedlings
resolves10.1073/pnas.012452499<i>Arabidopsis</i>
gp91
<sup>phox</sup>
homologues
<i>AtrbohD</i>
and
<i>AtrbohF</i>
are required for accumulation of reactive oxygen intermediates in the plant defense response
resolves10.1111/pce.12292Ethylene plays an essential role in the recovery of<scp>A</scp>rabidopsis during post‐anaerobiosis reoxygenation
resolves10.1093/aob/mcn126Transcript and metabolite profiling of the adaptive response to mild decreases in oxygen concentration in the roots of arabidopsis plants
resolves10.1093/molbev/msm276Hydrogen Peroxide-Induced Gene Expression across Kingdoms: A Comparative Analysis
resolves10.1105/tpc.106.048298Stomatal Development and Patterning Are Regulated by Environmentally Responsive Mitogen-Activated Protein Kinases in<i>Arabidopsis</i>
resolves10.1038/ncomms4425Plant cysteine oxidases control the oxygen-dependent branch of the N-end-rule pathway
resolves10.1038/nature04920Sub1A is an ethylene-response-factor-like gene that confers submergence tolerance to rice
resolves10.1016/S0014-5793(00)01203-5Simultaneous production of nitric oxide and peroxynitrite by plant nitrate reductase: in vitro evidence for the NR‐dependent formation of active nitrogen species
resolves10.1111/nph.12739Nitric oxide function in plant biology: a redox cue in deconvolution
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