TaWRKY10 plays a key role in the upstream of circadian gene TaLHY in wheat
•WRKY10 binds to the W-Box cis element of the TaLHY promoter.•WRKY10 up-regulates TaLHY gene expression.•Silencing TaWRKY10 makes wheat susceptible to stripe rust CYR32. TaLHY is an MYB transcription factor (TF) that is upregulated by salicylic acid induction and shows circadian rhythms. However, th...
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Veröffentlicht in: | Plant science (Limerick) 2021-09, Vol.310, p.110973-110973, Article 110973 |
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Sprache: | eng |
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Zusammenfassung: | •WRKY10 binds to the W-Box cis element of the TaLHY promoter.•WRKY10 up-regulates TaLHY gene expression.•Silencing TaWRKY10 makes wheat susceptible to stripe rust CYR32.
TaLHY is an MYB transcription factor (TF) that is upregulated by salicylic acid induction and shows circadian rhythms. However, the study of the upstream regulatory factors is still unclear. In this study, we cloned the promoter sequence of the TaLHY homologous genes, verified the activity of the promoters, and identified important regions that affect promoter activity. Furthermore, we explored a possible upstream regulator of TaLHY, named TaWRKY10, which played a key role in the expression of TaLHY. We found that the three promoters pTaLHYa, pTaLHYb, and pTaLHYd had transcriptional activity in wheat protoplasts. All three promoters have W-Box, which can bind to WRKY TFs. Using virus-induced gene silencing (VIGS), after silencing TaWRKY10, the resistance of ChuanNong 19 (CN19) to stripe rust pathogen strain CYR32 was lost, and the expression level of the TaLHY homologous gene decreased. At the same time, in wheat protoplasts, the transcriptional activity of TaLHY homologous promoters improved after TaWRKY10 overexpression. This indicates that TaWRKY10 is a key gene for wheat immune response to stripe rust, and this gene may bind to TaLHYa, TaLHYb, and TaLHYd promoters to regulate the expression of TaLHY. |
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ISSN: | 0168-9452 1873-2259 |
DOI: | 10.1016/j.plantsci.2021.110973 |