Key Laboratory of Horticultural Plant Biology, Ministry of Education, College of Horticulture and Forestry Sciences, Huazhong Agricultural University, Wuhan, 430070, China.
National R&D Center for Citrus Postharvest Technology, College of Horticulture and Forestry Sciences, Huazhong Agricultural University, Wuhan, 430070, China.
Plant J. 2021 Dec;108(5):1473-1492. doi: 10.1111/tpj.15523. Epub 2021 Oct 12.
Carnation (Dianthus caryophyllus L.) is one of the most important and typical ethylene sensitive cut flowers worldwide, although how ethylene influences the petal senescence process in carnation remains largely unknown. Here, we screened out one of the key transcription factors, DcWRKY75, using a constructed ethylene induced petal senescence transcriptome in carnation and found that it shows quick induction by ethylene treatment. Silencing of DcWRKY75 delays ethylene induced petal senescence in carnation. Molecular evidence confirms that DcWRKY75 can bind to the promoter regions of two main ethylene biosynthetic genes (DcACS1 and DcACO1) and a couple of senescence associated genes (DcSAG12 and DcSAG29) to activate their expression. Furthermore, we show that DcWRKY75 is a direct target gene of DcEIL3-1, which is a homolog of the ethylene signaling core transcription factor EIN3 in Arabidopsis. DcEIL3-1 can physically interact with DcWRKY75 and silencing of DcEIL3-1 also delays ethylene induced petal senescence in carnation and inhibits the ethylene induced expression of DcWRKY75 and its target genes. The present study demonstrates that the transcriptional regulation network is vitally important for ethylene induced petal senescence process in carnation and potentially in other ethylene sensitive cut flowers.
香石竹(Dianthus caryophyllus L.)是全球最重要和最典型的乙烯敏感切花之一,尽管乙烯如何影响香石竹花瓣衰老过程在很大程度上仍然未知。在这里,我们使用构建的香石竹乙烯诱导花瓣衰老转录组筛选出一个关键的转录因子 DcWRKY75,发现它对乙烯处理有快速的诱导作用。DcWRKY75 的沉默延迟了香石竹中乙烯诱导的花瓣衰老。分子证据证实,DcWRKY75 可以结合到两个主要乙烯生物合成基因(DcACS1 和 DcACO1)和一些衰老相关基因(DcSAG12 和 DcSAG29)的启动子区域,激活它们的表达。此外,我们表明 DcWRKY75 是 DcEIL3-1 的直接靶基因,DcEIL3-1 是拟南芥中乙烯信号核心转录因子 EIN3 的同源物。DcEIL3-1 可以与 DcWRKY75 物理相互作用,沉默 DcEIL3-1 也延迟了香石竹中乙烯诱导的花瓣衰老,并抑制了乙烯诱导的 DcWRKY75 及其靶基因的表达。本研究表明,转录调控网络对香石竹中乙烯诱导的花瓣衰老过程至关重要,可能对其他乙烯敏感的切花也是如此。