Plant cation/H+ exchangers (CAXs): biological functions and genetic manipulations.
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CAX-ing a wide net: Cation/H(+) transporters in metal remediation and abiotic stress signallingOn the track of transfer cell formation by specialized plant-parasitic nematodesKnockout of multiple Arabidopsis cation/H(+) exchangers suggests isoform-specific roles in metal stress response, germination and seed mineral nutrition.GhCAX3 gene, a novel Ca(2+)/H(+) exchanger from cotton, confers regulation of cold response and ABA induced signal transductionOrganellar channels and transporters.Protein Phylogenetic Analysis of Ca(2+)/cation Antiporters and Insights into their Evolution in Plants.Genome-Wide Analysis of MicroRNA Responses to the Phytohormone Abscisic Acid in Populus euphratica.Plant calcium content: ready to remodel.A Na+/Ca2+ exchanger-like protein (AtNCL) involved in salt stress in ArabidopsisCalcium Signals from the Vacuole.Ca2+/Cation Antiporters (CaCA): Identification, Characterization and Expression Profiling in Bread Wheat (Triticum aestivum L.).Calcium efflux systems in stress signaling and adaptation in plants.ABA control of plant macroelement membrane transport systems in response to water deficit and high salinity.Closing gaps: linking elements that control stomatal movement.CATION EXCHANGER1 Cosegregates with Cadmium Tolerance in the Metal Hyperaccumulator Arabidopsis halleri and Plays a Role in Limiting Oxidative Stress in Arabidopsis Spp.Multiple Transport Pathways for Mediating Intracellular pH Homeostasis: The Contribution of H(+)/ion Exchangers.Tissue-specific root ion profiling reveals essential roles of the CAX and ACA calcium transport systems in response to hypoxia in Arabidopsis.Transcriptomic Profiling and Physiological Analysis of Haloxylon ammodendron in Response to Osmotic Stress.The SlCBL10 calcineurin B-like protein ensures plant growth under salt stress by regulating Na+ and Ca2+ homeostasis.Advances and current challenges in calcium signaling.The grapevine VvCAX3 is a cation/H+ exchanger involved in vacuolar Ca2+ homeostasis.Comparative transcriptome analysis of nodules of two Mesorhizobium-chickpea associations with differential symbiotic efficiency under phosphate deficiency.CNGC2 Is a Ca2+ Influx Channel That Prevents Accumulation of Apoplastic Ca2+ in the Leaf.Vcx1-D1 (M383I), the Vcx1 mutant with a calcineurin-independent vacuolar Ca(2+)/H(+) exchanger activity, confers calcineurin-independent Mn(2+) tolerance in Saccharomyces cerevisiae.Heterodimerization of Arabidopsis calcium/proton exchangers contributes to regulation of guard cell dynamics and plant defense responses.Vacuolar CAX1 and CAX3 influence auxin transport in guard cells via regulation of apoplastic pH.
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P2860
Plant cation/H+ exchangers (CAXs): biological functions and genetic manipulations.
description
article científic
@ca
article scientifique
@fr
articolo scientifico
@it
artigo científico
@pt
bilimsel makale
@tr
scientific article published on 12 May 2011
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
Plant cation/H+ exchangers (CAXs): biological functions and genetic manipulations.
@en
Plant cation/H+ exchangers
@nl
type
label
Plant cation/H+ exchangers (CAXs): biological functions and genetic manipulations.
@en
Plant cation/H+ exchangers
@nl
prefLabel
Plant cation/H+ exchangers (CAXs): biological functions and genetic manipulations.
@en
Plant cation/H+ exchangers
@nl
P2093
P2860
P1433
P1476
Plant cation/H+ exchangers (CAXs): biological functions and genetic manipulations.
@en
P2093
P2860
P304
P356
10.1111/J.1438-8677.2011.00466.X
P577
2011-05-12T00:00:00Z