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1.
Mol Plant ; 16(5): 865-881, 2023 05 01.
Article in English | MEDLINE | ID: mdl-37002606

ABSTRACT

Most organisms adjust their development according to the environmental conditions. For the majority, this implies the sensing of alterations to cell walls caused by different cues. Despite the relevance of this process, few molecular players involved in cell wall sensing are known and characterized. Here, we show that the wall-associated kinase-like protein RESISTANCE TO FUSARIUM OXYSPORUM 1 (RFO1) is required for plant growth and early defense against Fusarium oxysporum and functions by sensing changes in the pectin methylation levels in the cell wall. The RFO1 dwell time at the plasma membrane is affected by the pectin methylation status at the cell wall, regulating MITOGEN-ACTIVATED PROTEIN KINASE and gene expression. We show that the extracellular domain of RFO1 binds de-methylated pectin in vitro, whose distribution in the cell wall is altered during F. oxysporum infection. Further analyses also indicate that RFO1 is required for the BR-dependent plant growth alteration in response to inhibition of pectin de-methyl-esterase activity at the cell wall. Collectively, our work demonstrates that RFO1 is a sensor of the pectin methylation status that plays a unique dual role in plant growth and defense against vascular pathogens.


Subject(s)
Arabidopsis Proteins , Arabidopsis , Fusarium , Pectins , Plant Immunity , Arabidopsis/growth & development , Arabidopsis/immunology , Arabidopsis/microbiology , Arabidopsis Proteins/genetics , Arabidopsis Proteins/metabolism , Cell Wall/metabolism , Gene Expression Regulation, Plant , Methylation , Pectins/metabolism , Protein Kinases/metabolism , Fusarium/immunology
2.
Eukaryot Cell ; 12(10): 1403-12, 2013 Oct.
Article in English | MEDLINE | ID: mdl-23975888

ABSTRACT

Transcription factors of the basic leucine zipper (bZIP) family control development and stress responses in eukaryotes. To date, only one bZIP has been described in any oomycete; oomycetes are members of the stramenopile kingdom. In this study, we describe the identification of 38 bZIPs from the Phytophthora infestans genome. Half contain novel substitutions in the DNA-binding domain at a site that in other eukaryotes is reported to always be Asn. Interspecific comparisons indicated that the novel substitutions (usually Cys, but also Val and Tyr) arose after oomycetes diverged from other stramenopiles. About two-thirds of P. infestans bZIPs show dynamic changes in mRNA levels during the life cycle, with many of the genes being upregulated in sporangia, zoospores, or germinated zoospore cysts. One bZIP with the novel Cys substitution was shown to reside in the nucleus throughout growth and development. Using stable gene silencing, the functions of eight bZIPs with the Cys substitution were tested. All but one were found to play roles in protecting P. infestans from hydrogen peroxide-induced injury, and it is proposed that the novel Cys substitution serves as a redox sensor. A ninth bZIP lacking the novel Asn-to-Cys substitution, but having Cys nearby, was also shown through silencing to contribute to defense against peroxide. Little effect on asexual development, plant pathogenesis, or resistance to osmotic stress was observed in transformants silenced for any of the nine bZIPs.


Subject(s)
Fungal Proteins/metabolism , Oxidative Stress , Phytophthora infestans/metabolism , Transcription Factors/metabolism , Amino Acid Sequence , Binding Sites , Cysteine/chemistry , Cysteine/genetics , Cysteine/metabolism , DNA, Fungal/metabolism , Fungal Proteins/chemistry , Gene Expression Regulation, Fungal , Genome, Fungal , Molecular Sequence Data , Phytophthora infestans/genetics , Protein Binding , Protein Structure, Tertiary , Transcription Factors/chemistry , Transcription, Genetic
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