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August 1, 2002The Plant Cell546 citationsOpen Access

The Short-Chain Alcohol Dehydrogenase ABA2 Catalyzes the Conversion of Xanthoxin to Abscisic AldehydeW

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MGMiguel González‐GuzmánNANadezda ApostolovaJBJosé Marı́a Bellés

Key Points

  • This research aims to explore the function of the ABA2 gene in the conversion of xanthoxin to abscisic aldehyde.
  • Identified salt resistant mutants through screenings;
  • Conducted complementation analyses on mutants to confirm ABA2 gene alleles;
  • Utilized HPLC-mass spectrometry to assess enzymatic conversion of xanthoxin.
  • Identified four new aba2 alleles in mutants;
  • Recombinant ABA2 showed a Km of 19 μM for xanthoxin, effectively converting it to abscisic aldehyde;
  • ABA2 mRNA is constitutively expressed and unaffected by osmotic stress.

Abstract

Mutants able to germinate and perform early growth in medium containing a high NaCl concentration were identified during the course of two independent screenings and named salt resistant (sre) and salobreño (sañ). The sre and sañ mutants also were able to germinate in high-osmoticum medium, indicating that they are osmotolerant in a germination assay. Complementation analyses revealed that sre1-1, sre1-2, sañ3-1, and sañ3-2 were alleles of the abscisic acid (ABA) biosynthesis ABA2 gene. A map-based cloning strategy allowed the identification of the ABA2 gene and molecular characterization of four new aba2 alleles. The ABA2 gene product belongs to the family of short-chain dehydrogenases/reductases, which are known to be NAD- or NADP-dependent oxidoreductases. Recombinant ABA2 protein produced in Escherichia coli exhibits a K(m) value for xanthoxin of 19 micro M and catalyzes in a NAD-dependent manner the conversion of xanthoxin to abscisic aldehyde, as determined by HPLC-mass spectrometry. The ABA2 mRNA is expressed constitutively in all plant organs examined and is not upregulated in response to osmotic stress. The results of this work are discussed in the context of previous genetic and biochemical evidence regarding ABA biosynthesis, confirming the xanthoxin-->abscisic aldehyde-->ABA transition as the last steps of the major ABA biosynthetic pathway.

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Cite This Study

González‐Guzmán et al. (2002) studied this question.

synapsesocial.com/papers/69dcb23ef72978188635916ahttps://doi.org/10.1105/tpc.002477
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