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Buijs, G.

Publications and source records attributed to Buijs, G..

2 recordsLinked to original sources

Arabidopsis thaliana rosette growth habit is a photomorphogenic trait controlled by the TALE homeodomain protein ATH1 and involves TOR kinase

Here, we demonstrate that Arabidopsis rosette habit is a bona fide photomorphogenic trait controlled by the homeodomain protein ATH1. In light, ATH1 expression at the SAM is induced by broad wavelengths, mediated through multiple photoreceptors, and requires inactivation of COP1 and PIF photomorphogenesis inhibitors. Such induced ATH1 prevents elongation of rosette internodes by maintaining the rib zone area of the SAM in an inactive state. In the absence of light, Arabidopsis plants cannot complete seedling establishment after germination due to inactivity of the shoot apical meristem (SAM). Light requirement for SAM activation can be overcome by availability to the meristem of metabolizable sugars, such as sucrose. However, under these conditions plants fail to establish a typical compact rosette and display a caulescent growth habit. We show that this is due to insufficient expression of ATH1 at the SAM. ATH1 induction restores rosette habit in dark-grown plants through inhibition of PIF gene expression. Together, this suggests that a SAM-specific, double-negative ATH1-PIF feedback loop is at the basis of Arabidopsis rosette habit. Induction of ATH1 expression and restoration of rosette habit in darkness also occurs at increased levels of sucrose. Both sugar and light signals that induce ATH1 are mediated by TOR kinase. Overall, these results support a fundamental role for ATH1 in Arabidopsis rosette habit and further strengthen a role for TOR kinase as a central hub for integration of energy and light signals controlling organogenesis at the SAM.

plant biology↗

DELAY OF GERMINATION 6, encoding the ANAC060 transcription factor, inhibits seed dormancy

The timing of seed germination is regulated by seed dormancy. There is ample natural variation for seed dormancy among as well as within plant species. In Arabidopsis several DELAY OF GERMINATION quantitative trait loci have been identified, of which DOG1 is best studied. Here we report the identification of DOG6, a quantitative trait locus with a similar strong effect on seed dormancy as DOG1. DOG6 affects the timing of germination both in laboratory as well as in field conditions. Complementation cloning revealed that DOG6 encodes the membrane bound transcription factor ANAC060. The absence of the ANAC060 protein or its sequestration outside the nucleus results in increased seed dormancy levels. The different natural variants of ANAC060 differ for the presence of the membrane binding domain, either due to the fact that this domain is absent in the genomic sequence or because the cDNA is alternatively spliced. Our data indicates that ANAC060 regulates seed dormancy by among others binding to and regulating the expression of protein phosphatases 2C class A proteins including PROTEIN PHOSPHATASE 2CA (PP2CA), ABI FIVE BINDING PROTEIN 3 (AFP3) and HIGHLY ABA-INDUCED PP2C GENE 3 (HAI3). Significance StatementANAC transcription factors are known to effect plant development as well as the response of plants to their environment. Here, we present the identification of DELAY OF GERMINATION 6 (DOG6), a seed dormancy quantitative trait locus that encodes the ANAC060 transcription factor. We have identified different natural alleles of ANAC060 and show that these genetic variants determine the localization of the protein. ANAC060 alleles that lack the membrane binding domain end up in the nucleus. Hence they affect transcription and as such attenuate seed dormancy.

plant biology↗