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- W2018196356 abstract "Summary Plant pathogens alter the course of plant developmental processes, resulting in abnormal morphology in infected host plants. Phytoplasmas are unique plant‐pathogenic bacteria that transform plant floral organs into leaf‐like structures and cause the emergence of secondary flowers. These distinctive symptoms have attracted considerable interest for many years. Here, we revealed the molecular mechanisms of the floral symptoms by focusing on a phytoplasma‐secreted protein, PHYL 1, which induces morphological changes in flowers that are similar to those seen in phytoplasma‐infected plants. PHYL 1 is a homolog of the phytoplasmal effector SAP 54 that also alters floral development. Using yeast two‐hybrid and in planta transient co‐expression assays, we found that PHYL 1 interacts with and degrades the floral homeotic MADS domain proteins SEPALLATA 3 ( SEP 3), APETALA 1 ( AP 1) and CAULIFLOWER ( CAL ). This degradation of MADS domain proteins was dependent on the ubiquitin–proteasome pathway. The expression of floral development genes downstream of SEP 3 and AP 1 was disrupted in 35S:: PHYL 1 transgenic plants. PHYL 1 was genetically and functionally conserved among other phytoplasma strains and species. We designate PHYL 1 , SAP 54 and their homologs as members of the phyllody‐inducing gene family of ‘phyllogens’." @default.
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- W2018196356 date "2014-04-15" @default.
- W2018196356 modified "2023-10-03" @default.
- W2018196356 title "Recognition of floral homeotic<scp>MADS</scp>domain transcription factors by a phytoplasmal effector, phyllogen, induces phyllody" @default.
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- W2018196356 doi "https://doi.org/10.1111/tpj.12495" @default.
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