4.7 Article

Identification of new adventitious rooting mutants amongst suppressors of the Arabidopsis thaliana superroot2 mutation

期刊

JOURNAL OF EXPERIMENTAL BOTANY
卷 65, 期 6, 页码 1605-1618

出版社

OXFORD UNIV PRESS
DOI: 10.1093/jxb/eru026

关键词

Adventitious roots; Arabidopsis; auxin; ethylene; superroot; suppressors

资金

  1. Swedish Foundation for Strategic Research (SSF)
  2. Swedish Research Council for Research and Innovation for Sustainable Growth (VINNOVA)
  3. Swedish Research Council (VR) [VR 621-2007-4692, VR 621-2010-4359]
  4. K. & A. Wallenberg Foundation
  5. Carl Trygger Foundation [CTS08:298]
  6. Kempe Foundation [SMK-2937]
  7. Brazilian agencies CNPq (National Council for Scientific and Technological Development)
  8. CAPES (National Committee for Graduate Programs Evaluation)
  9. French ANR [ANR-09-BLANC-0007-01]
  10. Regional Council of Picardie

向作者/读者索取更多资源

Auxin is a major regulator of adventitious rooting and, to better understand its role, we identified suppressor mutants of superroot2-1. This provides new resources for the discovery of genetic players involved in auxin signalling or auxin crosstalk with other hormones.The plant hormone auxin plays a central role in adventitious rooting and is routinely used with many economically important, vegetatively propagated plant species to promote adventitious root initiation and development on cuttings. Nevertheless the molecular mechanisms through which it acts are only starting to emerge. The Arabidopsis superroot2-1 (sur2-1) mutant overproduces auxin and, as a consequence, develops excessive adventitious roots in the hypocotyl. In order to increase the knowledge of adventitious rooting and of auxin signalling pathways and crosstalk, this study performed a screen for suppressors of superroot2-1 phenotype. These suppressors provide a new resource for discovery of genetic players involved in auxin signalling pathways or at the crosstalk of auxin and other hormones or environmental signals. This study reports the identification and characterization of 26 sur2-1 suppressor mutants, several of which were identified as mutations in candidate genes involved in either auxin biosynthesis or signalling. In addition to confirming the role of auxin as a central regulator of adventitious rooting, superroot2 suppressors indicated possible crosstalk with ethylene signalling in this process.

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