BnaA03.WRKY28, interacting with BnaA09.VQ12, acts as a brake factor of activated BnWRKY33-mediated resistance outburst against Sclerotinia sclerotiorum in Brassica napus
Tu, J.; Zhang, K.; Liu, F.; Wang, Z.; Zhuo, C.; Hu, K.; Li, X.; Wen, J.; Yi, B.; Shen, J.; Ma, C.; Fu, T.
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Sclerotinia sclerotiorum causes substantial damage to the growth of Brassica napus (rapeseed) and makes a significant loss of crop yield. The plant innate immune system may be the primary solution to defense against S. sclerotiorum for rapeseed. Here, we identify that BnWRKY33, a transcription factor in the innate immune pathway, can be rapidly phosphorylated and activated by the MAPK cascade after rapeseed is infected with S. sclerotiorum. In the MAPK cascade, activated BnaA03.MKK4 phosphorylates and activates BnaA06.MPK3 and BnaC03.MPK3. The activated BnMPK3 acts on the substrate BnWRKY33 to enhance its transcriptional activity and trigger a transcriptional burst of BnWRKY33, which helps plants effectively resist the pathogenic fungi by enhancing the expression of phytoalexin synthesis-related genes. With constant infection, BnaA03.WRKY28 and BnaA09.VQ12 are induced, and BnaA03.WRKY28 physically interacts with BnaA09.VQ12 to form a protein complex. BnaA03.WRKY28 preferentially binds to the promoter of BnWRKY33 with the help of BnaA09.VQ12. Compared with activated BnWRKY33, BnaA03.WRKY28 has a lower transcriptional activity on downstream BnWRKY33, which leads to weaker resistance against S. sclerotiorum for rapeseed in the later stage of infection. Furthermore, the induced BnaA03.WRKY28 may promote axillary bud activity and axillary meristem initiation by regulating the expression of branching-related genes (such as BnBRC1), thus promoting the formation of branches in the leaf axils. One-sentence summaryUnder constant infection by Sclerotinia sclerotiorum, BnaA03.WRKY28 interacts with BnaA09.VQ12 and takes precedence over phosphorylated BnWRKY33 to bind to the BnWRKY33 promoter, thereby weakening resistance but promoting branching.
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