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The pathway of auxin biosynthesis in plants

Journal of Experimental Botany · 2012 · Vol. 63(8) · pp. 2853–2872
Yuji ManoKeiichirou Nemoto

Abstract

The plant hormone auxin, which is predominantly represented by indole-3-acetic acid (IAA), is involved in the regulation of plant growth and development. Although IAA was the first plant hormone identified, the biosynthetic pathway at the genetic level has remained unclear. Two major pathways for IAA biosynthesis have been proposed: the tryptophan (Trp)-independent and Trp-dependent pathways. In Trp-dependent IAA biosynthesis, four pathways have been postulated in plants: (i) the indole-3-acetamide (IAM) pathway; (ii) the indole-3-pyruvic acid (IPA) pathway; (iii) the tryptamine (TAM) pathway; and (iv) the indole-3-acetaldoxime (IAOX) pathway. Although different plant species may have unique strategies and modifications to optimize their metabolic pathways, plants would be expected to share evolutionarily conserved core mechanisms for auxin biosynthesis because IAA is a fundamental substance in the plant life cycle. In this review, the genes now known to be involved in auxin biosynthesis are summarized and the major IAA biosynthetic pathway distributed widely in the plant kingdom is discussed on the basis of biochemical and molecular biological findings and bioinformatics studies. Based on evolutionarily conserved core mechanisms, it is thought that the pathway via IAM or IPA is the major route(s) to IAA in plants.

Plant Molecular Biology ResearchPlant Parasitism and ResistancePlant Reproductive BiologyAuxinBiosynthesisMetabolic pathwayPlant hormoneTryptamineBiochemistryBiologyIndole-3-acetic acidTryptophanGene

MeSH terms

ChloroplastsIndoleacetic AcidsPlantsTryptophanGenes, PlantBiosynthetic Pathways
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References
Role of <i>Pseudomonas putida</i> Indoleacetic Acid in Development of the Host Plant Root System
Applied and Environmental Microbiology · 2002 · 1,774 citations
Auxin: Regulation, Action, and Interaction
Annals of Botany · 2005 · 2,329 citations
Plant salt tolerance
Trends in Plant Science · 2001 · 3,478 citations
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