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In Arabidopsis, it has been demonstrated that the hybrid Histidine-aspartate Kinase, AHK1, is a positive regulator of osmotic stress signaling and that AHK1 gene expression is regulated by salt stress and dehydration [ 13, 14].
Recently, overexpression of the plasma membrane Na+/H+ antiporter SOS1 was shown to increase salt tolerance of Arabidopsis and revealed that levels of SOS1 mRNA are post-transcriptionally regulated by salt stress.
Transcriptomic analysis revealed specific gene clusters preferentially regulated by salt in root apices of TN1.11, notably those related to the auxin pathway and to changes in histone variant isoforms.
It is shown that both miR394 and LCR are independently regulated by salt and drought stresses.
Among 56 IMMs in rice, a significant number are regulated by salt and/or desiccation stress.
Both miR394 and LCR transcripts are regulated by salt and drought stresses and ABA treatment.
Similar(31)
Given that plant growth and development including bolting and flowering were usually adversely-influenced under stress conditions, it might indicate the involvement of these miRNA-target transcripts in the network of genes regulated by salt-responsive miRNAs in radish.
The LhSorP5CS transcript level was significantly up-regulated by salt, drought, and ABA stress.
Expression analysis reveals that OsAPX2 is up-regulated by salt [168].
On the other hand, BnaCPK29 was down-regulated by salt, heat, MV, ABA and LK treatments.
These 515 UniTags represented 23.3% of the root transcripts >3-fold up-regulated by salt.
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