TAA1-mediated auxin biosynthesis is essential for hormone crosstalk and plant development.

Stepanova, Anna N; Robertson-Hoyt, Joyce; Yun, Jeonga; Benavente, Larissa M; Xie, De-Yu; Dolezal, Karel; Schlereth, Alexandra; Jürgens, Gerd et al. · Cell · 2008

basic_science · Level V

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Abstract

Plants have evolved a tremendous ability to respond to environmental changes by adapting their growth and development. The interaction between hormonal and developmental signals is a critical mechanism in the generation of this enormous plasticity. A good example is the response to the hormone ethylene that depends on tissue type, developmental stage, and environmental conditions. By characterizing the Arabidopsis wei8 mutant, we have found that a small family of genes mediates tissue-specific responses to ethylene. Biochemical studies revealed that WEI8 encodes a long-anticipated tryptophan aminotransferase, TAA1, in the essential, yet genetically uncharacterized, indole-3-pyruvic acid (IPA) branch of the auxin biosynthetic pathway. Analysis of TAA1 and its paralogues revealed a link between local auxin production, tissue-specific ethylene effects, and organ development. Thus, the IPA route of auxin production is key to generating robust auxin gradients in response to environmental and developmental cues.

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