Pages that link to "Q34775427"
Jump to navigation
Jump to search
The following pages link to Switching between the two action modes of the dual-affinity nitrate transporter CHL1 by phosphorylation (Q34775427):
Displaying 50 items.
- The Thermodynamic Flow-Force Interpretation of Root Nutrient Uptake Kinetics: A Powerful Formalism for Agronomic and Phytoplanktonic Models (Q26738314) (← links)
- Molecular Mechanism Underlying the Plant NRT1.1 Dual-Affinity Nitrate Transporter (Q26770723) (← links)
- The Calcium Sensor CBL-CIPK Is Involved in Plant's Response to Abiotic Stresses (Q26780149) (← links)
- Crystal structure of the plant dual-affinity nitrate transporter NRT1.1 (Q27681919) (← links)
- Molecular basis of nitrate uptake by the plant nitrate transporter NRT1.1 (Q27681921) (← links)
- pH-Responsive, posttranslational regulation of the Trk1 potassium transporter by the type 1-related Ppz1 phosphatase (Q27937656) (← links)
- Mechanisms and Physiological Roles of the CBL-CIPK Networking System in Arabidopsis thaliana (Q28069588) (← links)
- Recent advances in understanding proton coupled peptide transport via the POT family (Q28073606) (← links)
- Transporter oligomerization: form and function (Q28078606) (← links)
- Transporters Involved in Root Nitrate Uptake and Sensing by Arabidopsis (Q28078938) (← links)
- An updated model for nitrate uptake modelling in plants. I. Functional component: cross-combination of flow-force interpretation of nitrate uptake isotherms, and environmental and in planta regulation of nitrate influx (Q28658417) (← links)
- Expression of two maize putative nitrate transporters in response to nitrate and sugar availability. (Q30370014) (← links)
- Npr1 Ser/Thr protein kinase links nitrogen source quality and carbon availability with the yeast nitrate transporter (Ynt1) levels (Q30503210) (← links)
- Identification of an abscisic acid transporter by functional screening using the receptor complex as a sensor (Q30519182) (← links)
- Transcriptomic network analyses of leaf dehydration responses identify highly connected ABA and ethylene signaling hubs in three grapevine species differing in drought tolerance (Q31100144) (← links)
- Transcript profiling in the chl1-5 mutant of Arabidopsis reveals a role of the nitrate transporter NRT1.1 in the regulation of another nitrate transporter, NRT2.1. (Q31107005) (← links)
- Nitrate and Nitrogen Oxides: Sources, Health Effects and Their Remediation (Q31136323) (← links)
- Genomic survey, characterization and expression profile analysis of the peptide transporter family in rice (Oryza sativa L.). (Q33582797) (← links)
- Dichotomy in the NRT gene families of dicots and grass species (Q33769374) (← links)
- Root morphological and proteomic responses to growth restriction in maize plants supplied with sufficient N (Q33830346) (← links)
- Binding of cysteine synthase to the STAS domain of sulfate transporter and its regulatory consequences (Q34042841) (← links)
- The mixed lineage nature of nitrogen transport and assimilation in marine eukaryotic phytoplankton: a case study of micromonas (Q34148369) (← links)
- Nitrate transport in cucumber leaves is an inducible process involving an increase in plasma membrane H -ATPase activity and abundance (Q34263593) (← links)
- Fluxomics: mass spectrometry versus quantitative imaging (Q34353897) (← links)
- Evolutionary classification of ammonium, nitrate, and peptide transporters in land plants (Q34398611) (← links)
- Shoot chloride exclusion and salt tolerance in grapevine is associated with differential ion transporter expression in roots (Q34453453) (← links)
- NO₃⁻/H⁺ antiport in the tonoplast of cucumber root cells is stimulated by nitrate supply: evidence for a reversible nitrate-induced phosphorylation of vacuolar NO₃⁻/H⁺ antiport (Q34989556) (← links)
- Global transcriptome analysis of AtPAP2--overexpressing Arabidopsis thaliana with elevated ATP (Q35030185) (← links)
- The jasmonate-responsive GTR1 transporter is required for gibberellin-mediated stamen development in Arabidopsis (Q35139927) (← links)
- Nucleobase Transport by Human Equilibrative Nucleoside Transporter 1 (hENT1) (Q35213302) (← links)
- The Arabidopsis NRT1.1 transporter participates in the signaling pathway triggering root colonization of nitrate-rich patches (Q35539868) (← links)
- Breaking conceptual locks in modelling root absorption of nutrients: reopening the thermodynamic viewpoint of ion transport across the root. (Q35558861) (← links)
- Regulatory levels for the transport of ammonium in plant roots. (Q35767367) (← links)
- Coexpression Network Analysis of Macronutrient Deficiency Response Genes in Rice (Q35883648) (← links)
- Substrate specificity and transport mechanism of amino-acid transceptor Slimfast from Aedes aegypti (Q36169740) (← links)
- Insights into the acclimation of Chlamydomonas reinhardtii to sulfur deprivation (Q36321899) (← links)
- Nitrate transporters and peptide transporters (Q36811703) (← links)
- Plant Nitrogen Acquisition Under Low Availability: Regulation of Uptake and Root Architecture (Q36812320) (← links)
- Prochlorococcus can use the Pro1404 transporter to take up glucose at nanomolar concentrations in the Atlantic Ocean. (Q36883939) (← links)
- Putting the N in dinoflagellates (Q37361924) (← links)
- AtSWEET13 and AtSWEET14 regulate gibberellin-mediated physiological processes (Q37393196) (← links)
- Effects of high CO2 on growth and metabolism of Arabidopsis seedlings during growth with a constantly limited supply of nitrogen. (Q37553746) (← links)
- Fluorescent sensors for activity and regulation of the nitrate transceptor CHL1/NRT1.1 and oligopeptide transporters. (Q37632340) (← links)
- Using membrane transporters to improve crops for sustainable food production. (Q37637051) (← links)
- Gene networks for nitrogen sensing, signaling, and response in Arabidopsis thaliana (Q37796736) (← links)
- From the soil to the seeds: the long journey of nitrate in plants (Q37824781) (← links)
- A holistic view of nitrogen acquisition in plants (Q37829119) (← links)
- Nitrate transceptor(s) in plants (Q37829122) (← links)
- The CBL-CIPK network mediates different signaling pathways in plants (Q38149807) (← links)
- LCIB in the Chlamydomonas CO2-concentrating mechanism (Q38168806) (← links)