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2 subtopics

 

  • Etodolac
  • Hydroxyindoleacetic Acid

Indoleacetic AcidsFollow by RSS 

You've reached a pubget topic page. Below are the latest papers on this topic, with subtopics on the left.

keywords > Heterocyclic Compounds > Acids, Heterocyclic > Indoleacetic Acids

Latest papers

Overexpression of the Arabidopsis gene UPRIGHT ROSETTE reveals a homeostatic control for indole-3-acetic acid.

Differential auxin-transporting activities of PIN-FORMED proteins in Arabidopsis root hair cells.

Modelling and experimental analysis of hormonal crosstalk in Arabidopsis

Arabidopsis PIS1 encodes the ABCG37 transporter of auxinic compounds including the auxin precursor indole-3-butyric acid.

Auxin polar transport is essential for the development of zygote and embryo in Nicotiana tabacum L. and correlated with ABP1 and PM H+-ATPase activities.

Putative Arabidopsis transcriptional adaptor protein (PROPORZ1) is required to modulate histone acetylation in response to auxin.

Regulation of two germin-like protein genes during plum fruit development.

The BUD2 mutation affects plant architecture through altering cytokinin and auxin responses in Arabidopsis.

Cellular responses to auxin: division versus expansion.

Recent progress in auxin biology.

Strigolactones, a novel class of plant hormone controlling shoot branching.

Plant development: a new old story.

Auxin: A major regulator of organogenesis

Auxin Biosynthesis and Its Role in Plant Development

Auxin biosynthesis inhibitors, identified by a genomics-based approach, provide insights into auxin biosynthesis.

Auxin and strigolactones in shoot branching: intimately connected?

Nitric oxide mediates humic acids-induced root development and plasma membrane H+-ATPase activation.

Gibberellins regulate lateral root formation in Populus through interactions with auxin and other hormones.

Rapid auxin-induced cell expansion and gene expression: a four-decade-old question revisited.

Gibberellin-auxin crosstalk modulates lateral root formation.

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