AI Article Synopsis

  • The ALDH3H1 gene in Arabidopsis thaliana encodes a protein involved in stress responses and shows significant expression in plant roots, particularly under stress conditions like dehydration and salt treatment.
  • The study found that ALDH3H1 produces at least five alternative transcript variants, which vary in expression levels depending on the plant's developmental stage and tissue type.
  • These findings suggest that alternative splicing and promoter usage play a crucial role in regulating the expression of functional protein variants, which may help the plant adapt to various environmental stresses.

Article Abstract

The Arabidopsis thaliana aldehyde dehydrogenase 3H1 gene (ALDH3H1; AT1G44170) belongs to family 3 of the plant aldehyde dehydrogenase superfamily. The full-length transcript of the corresponding gene comprises an open reading frame of 1583 bp and encodes a protein of 484 amino acid residues. Gene expression studies have shown that this transcript accumulates mainly in the roots of 4-week-old plants following abscisic acid, dehydration, and NaCl treatments. The current study provided experimental data that the ALDH3H1 locus generates at least five alternative transcript variants in addition to the previously described ALDH3H1 mRNA. The alternative transcripts accumulated in wild-type plants at a low level but were upregulated in a mutant that carried a T-DNA insertion in the first exon of the gene. Expression of the transcript isoforms involved alternative gene splicing combined with an alternative promoter. The transcript isoforms were differentially expressed in the roots and shoots and showed developmental stage- and tissue-specific expression patterns. These data support the hypothesis that alternative isoforms produced by gene splicing or alternative promoters regulate the abundance of the constitutively spliced and functional variants.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3388822PMC
http://dx.doi.org/10.1093/jxb/ers081DOI Listing

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