Literature DB >> 20610407

Control of Arabidopsis leaf morphogenesis through regulation of the YABBY and KNOX families of transcription factors.

Chan Man Ha1, Ji Hyung Jun, Jennifer C Fletcher.   

Abstract

The patterning of initiating organs along specific axes of polarity is critical for the proper development of all higher organisms. Plant lateral organs, such as leaves, are derived from the shoot apical meristems located at the growing tips. After initiation, the leaf primordia of species such as Arabidopsis thaliana differentiate into a polarized structure consisting of a proximal petiole and a distal blade, but the molecular mechanisms that control proximal-distal pattern formation are poorly understood. The transcriptional activators BLADE-ON-PETIOLE1 (BOP1) and BOP2 are known to control Arabidopsis lateral organ differentiation by regulating gene expression along the adaxial-abaxial (dorsal-ventral) and proximal-distal polarity axes. Here, we demonstrate that the development of ectopic blade tissue along bop1 bop2 leaf petioles is strongly suppressed in a dosage-dependant manner by mutations in either of two closely related YABBY (YAB) genes, FILAMENTOUS FLOWER (FIL) and YAB3. Three KNOTTED-LIKE HOMEOBOX (KNOX1) genes also make lesser, and partially redundant, contributions to ectopic blade development in bop1 bop2 leaves. Mutation of these YAB and KNOX1 genes together causes nearly complete suppression of bop1 bop2 ectopic organ outgrowth at the morphological and cellular levels. Our data demonstrate that BOP1 and BOP2 regulate leaf patterning by controlling YAB and KNOX1 gene activity in the developing petiole.

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Year:  2010        PMID: 20610407      PMCID: PMC2940287          DOI: 10.1534/genetics.110.118703

Source DB:  PubMed          Journal:  Genetics        ISSN: 0016-6731            Impact factor:   4.562


  35 in total

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3.  The homeobox gene BREVIPEDICELLUS is a key regulator of inflorescence architecture in Arabidopsis.

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4.  KNAT2: evidence for a link between knotted-like genes and carpel development.

Authors:  V Pautot; J Dockx; O Hamant; J Kronenberger; O Grandjean; D Jublot; J Traas
Journal:  Plant Cell       Date:  2001-08       Impact factor: 11.277

5.  Asymmetric leaves1 mediates leaf patterning and stem cell function in Arabidopsis.

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6.  Genetic analysis of incurvata mutants reveals three independent genetic operations at work in Arabidopsis leaf morphogenesis.

Authors:  J Serrano-Cartagena; H Candela; P Robles; M R Ponce; J M Pérez-Pérez; P Piqueras; J L Micol
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9.  Mechanisms that control knox gene expression in the Arabidopsis shoot.

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Journal:  Development       Date:  2000-12       Impact factor: 6.868

10.  ASYMMETRIC LEAVES1 reveals knox gene redundancy in Arabidopsis.

Authors:  Mary E Byrne; Joseph Simorowski; Robert A Martienssen
Journal:  Development       Date:  2002-04       Impact factor: 6.868

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  21 in total

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3.  EMF1 and PRC2 cooperate to repress key regulators of Arabidopsis development.

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Review 8.  Behavior of Leaf Meristems and Their Modification.

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9.  A systems-wide comparison of red rice (Oryza longistaminata) tissues identifies rhizome specific genes and proteins that are targets for cultivated rice improvement.

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Review 10.  The Leaf Adaxial-Abaxial Boundary and Lamina Growth.

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