Auxin EvoDevo: Conservation and Diversification of Genes Regulating Auxin Biosynthesis, Transport, and Signaling

Michaela Sylvia Matthes, Norman Bradley Best, Janlo M. Robil, Simon Malcomber, Andrea Gallavotti, Paula McSteen

Research output: Contribution to journalReview article

2 Citations (Scopus)

Abstract

This article comprehensively reviews recent auxin research in maize and rice compared with Arabidopsis and highlights conservation and diversification of function. Our analysis is illustrated by phylogenetic and expression data across these three species and identifies potential co-orthologs to aid in future functional studies.

Original languageEnglish (US)
Pages (from-to)298-320
Number of pages23
JournalMolecular Plant
Volume12
Issue number3
DOIs
StatePublished - Mar 4 2019

Fingerprint

Indoleacetic Acids
Arabidopsis
Zea mays
auxins
biosynthesis
rice
corn
phylogeny
Research
Genes
genes
Oryza

All Science Journal Classification (ASJC) codes

  • Molecular Biology
  • Plant Science

Keywords

  • Arabidopsis
  • auxin
  • maize
  • rice

Cite this

Matthes, Michaela Sylvia ; Best, Norman Bradley ; Robil, Janlo M. ; Malcomber, Simon ; Gallavotti, Andrea ; McSteen, Paula. / Auxin EvoDevo : Conservation and Diversification of Genes Regulating Auxin Biosynthesis, Transport, and Signaling. In: Molecular Plant. 2019 ; Vol. 12, No. 3. pp. 298-320.
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Auxin EvoDevo : Conservation and Diversification of Genes Regulating Auxin Biosynthesis, Transport, and Signaling. / Matthes, Michaela Sylvia; Best, Norman Bradley; Robil, Janlo M.; Malcomber, Simon; Gallavotti, Andrea; McSteen, Paula.

In: Molecular Plant, Vol. 12, No. 3, 04.03.2019, p. 298-320.

Research output: Contribution to journalReview article

TY - JOUR

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T2 - Conservation and Diversification of Genes Regulating Auxin Biosynthesis, Transport, and Signaling

AU - Matthes, Michaela Sylvia

AU - Best, Norman Bradley

AU - Robil, Janlo M.

AU - Malcomber, Simon

AU - Gallavotti, Andrea

AU - McSteen, Paula

PY - 2019/3/4

Y1 - 2019/3/4

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AB - This article comprehensively reviews recent auxin research in maize and rice compared with Arabidopsis and highlights conservation and diversification of function. Our analysis is illustrated by phylogenetic and expression data across these three species and identifies potential co-orthologs to aid in future functional studies.

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KW - maize

KW - rice

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