2002
DOI: 10.1046/j.1365-313x.2002.01309.x
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Differential expression and function of Arabidopsis thaliana NHX Na+/H+ antiporters in the salt stress response

Abstract: SummaryThe Arabidopsis thaliana vacuolar Na + /H + antiporter AtNHX1 is a salt tolerance determinant. Predicted amino acid sequence similarity, protein topology and the presence of functional domains conserved in AtNHX1 and prototypical mammalian NHE Na + /H + exchangers led to the identi®cation of ®ve additional AtNHX genes (AtNHX2±6). The AtNHX1 and AtNHX2 mRNAs are the most prevalent transcripts among this family of genes in seedling shoots and roots. A lower-abundance AtNHX5 mRNA is present in both shoots … Show more

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Cited by 498 publications
(429 citation statements)
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“…At the end of each assay, fresh weight measurements of seedlings statistically confirmed the ion sensitivity phenotypes of cbl2 cbl3 double mutant ( Figure 6H). Interestingly, despite the earlier finding that Na + sequestration into vacuole depends on Na + /H + antiporters [42,43], cbl2 cbl3 double mutant did not show hypersensitive response to 60 mM NaCl ( Figure 6B). Consistent with the results from above V-ATPase activity assays, cbl2 or cbl3 single mutants did not show any discernible difference as compared to the wild-type plants under these ionic stress conditions (Supplementary information, Figure S10).…”
Section: Cbl2 Cbl3 Double Mutant Plants Are Hypersensitive To Excessicontrasting
confidence: 75%
“…At the end of each assay, fresh weight measurements of seedlings statistically confirmed the ion sensitivity phenotypes of cbl2 cbl3 double mutant ( Figure 6H). Interestingly, despite the earlier finding that Na + sequestration into vacuole depends on Na + /H + antiporters [42,43], cbl2 cbl3 double mutant did not show hypersensitive response to 60 mM NaCl ( Figure 6B). Consistent with the results from above V-ATPase activity assays, cbl2 or cbl3 single mutants did not show any discernible difference as compared to the wild-type plants under these ionic stress conditions (Supplementary information, Figure S10).…”
Section: Cbl2 Cbl3 Double Mutant Plants Are Hypersensitive To Excessicontrasting
confidence: 75%
“…A conserved amino acid sequence, EPLLS, was found in this particular region of SULTR4;1, SULTR4;2, and homologous ESTs from soybean (Glycine max) (accession number BE800569) and alfalfa (Medicago sativa) (accession number BF003985). Furthermore, pattern matching (http://www.arabidopsis.org/cgi-bin/patmatch/nph-patmatch.pl) indicated existence of this sequence within the C-and N-terminal hydrophilic regions of the NHX3 sodium/proton antiporter (At3g06370) (Yokoi et al, 2002) and an MRP-like ABC transporter (At3g13090) similar to the AtMRP4 vacuolar-localizing glutathione-conjugate transporter (Sá nchez-Ferná ndez et al, 2001;Martinoia et al, 2002), respectively.…”
Section: Identification Of Tonoplast-localizing Sulfate Transportersmentioning
confidence: 99%
“…VHA subunits A, B, C, D, E, F, G, and H make up the V 1 sector, and subunits a, b, c, d, and e compose the V o sector (Cipriano et al, 2008). In both salt-tolerant halophytes and salt-sensitive glycophytes, sodium regulates the expression at the transcript and protein levels for the tonoplast NHXs (Shi and Zhu, 2002;Yokoi et al, 2002) and different subunits of the V-ATPase Tsiantis et al, 1996;Dietz et al, 2001;Vera-Estrella et al, 2005). In addition, their transport activity has been shown to increase under salt stress (Reuveni et al, 1990;Barkla et al, 1995;Qiu et al, 2004;Vera-Estrella et al, 2004).…”
Section: Introductionmentioning
confidence: 99%