Keywords: نمک بیش از حد حساس است; Alfalfa; Non-uniform salinity; Split-root system; Na+ efflux; Antioxidant defense; CAT; catalase; Chl; chlorophyll; DW; dry weight; HKT1; high-affinity potassium transporter; H2O2; hydrogen peroxide; MDA; malondialdehyde; NMT; non-invasive micro-test tech
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Metabolite profiling and gene expression of Na/K transporter analyses reveal mechanisms of the difference in salt tolerance between barley and rice
Keywords: نمک بیش از حد حساس است; Salt stress; Barley; Rice; Ionic responses; Metabolomics; Gene expression; HKT; High affinity potassium transporter; NHX; Na+/H+ antiporter; PCA; Principal component analysis; PC1; The first principal component; PC2; The second principal component; SOS; S
Molecular cloning and functional characterization of MdNHX1 reveals its involvement in salt tolerance in apple calli and Arabidopsis
Keywords: نمک بیش از حد حساس است; CPA1; Cation/proton Antiporter 1; MDA; Malondialdehyde; NHX; Na+-H+ exchanger; ORF; Open reading frame; PCR; Polymerase chain reaction; PBS; Phosphate buffered saline; SOS; Salt Overly Sensitive; TBA; Thiobarbituric acid; UV-2450; UV-vis spectrophotomet
The transcription factor SlDof22 involved in ascorbate accumulation and salinity stress in tomato
Keywords: نمک بیش از حد حساس است; Ascorbic acid; Dof protein; Salt overly sensitive; Tomato; Transcription factor;
Conserved vacuolar H+-ATPase subunit B1 improves salt stress tolerance in apple calli and tomato plants
Keywords: نمک بیش از حد حساس است; MdVHA-B1; apple vacuolar H+-ATPase subunit B1; Y2H; yeast two-hybrid; BiFC; bimolecular fluorescence complementation; SOS signal pathway; salt overly sensitive; MdVHA-B1; Salt tolerance; Apple; V-ATPase; SOS signal pathway;
The Arabidopsis Ca2Â +-dependent protein kinase CPK27 is required for plant response to salt-stress
Keywords: نمک بیش از حد حساس است; ABA; abscisic acid; CDPK; Ca2Â +-dependent protein kinases; SOS; salt overly sensitive; ROS; reactive oxygen species; GFP; green fluorescent protein; qRT-PCR; quantitative reverse transcription PCR; H2DCF-DA; 2â², 7â²-dichlorodihydrofluorescein diacetat
Overexpression of tomato enhancer of SOS3-1 (LeENH1) in tobacco enhanced salinity tolerance by excluding Na+ from the cytosol
Keywords: نمک بیش از حد حساس است; Salt stress; LeENH1; Ion homeostasis; Reactive oxygen species; CPS; carrier phase shifted; DAB; 3,3-diaminobenzidine; EDTA; ethylene diamine tetraacetic acid; Fv/Fm; the maximal photochemical efficiency of PSII; H2O2; hydrogen peroxide; MDA; malondialdehy
Differential expression of salt overly sensitive pathway genes determines salinity stress tolerance in Brassica genotypes
Keywords: نمک بیش از حد حساس است; Brassica; Gene expression; Potassium; Salinity stress; Salt overly sensitive pathway; Sodium; Vacuolar antiporter; Chl; chlorophyll; DAA; days after anthesis; DAS; days after sowing; ECe; electrical conductivity of extract; K; potassium; MSI; membrane sta
NKS1, Na+- and K+-sensitive 1, regulates ion homeostasis in an SOS-independent pathway in Arabidopsis
Keywords: نمک بیش از حد حساس است; T-DNA; transfer DNA; SOS; salt overly sensitive; UTR; untranslated region; ER; endoplasmic reticulum; GFP; green fluorescent protein; RFP; red fluorescent protein; GUS; beta-glucuronidase; Arabidopsis thaliana; Cruciferae; Salt stress; NaCl stress; Ion ho
The polyamine spermine protects against high salt stress in Arabidopsis thaliana
Keywords: نمک بیش از حد حساس است; ADC; Arg decarboxylase; Arg; arginine; CAX; calcium exchanger; CDPK; calcium dependent protein kinase; CLC; chloride channel; GluR; glutamate receptor; MPK; mitogen-activated protein kinase; PA; polyamine; PAO; polyamine oxidase; PCR; polymerase chain rea