Department of Plant Physiology, Swammerdam Institute for Life Sciences, University of Amsterdam, Science Park 904, Amsterdam, 1098 XH, The Netherlands.
MAD, Dutch Genomics Service & Support Provider, Swammerdam Institute for Life Sciences, University of Amsterdam, Science Park 904, Amsterdam, 1098 XH, The Netherlands.
Plant J. 2015 Sep;83(6):1082-96. doi: 10.1111/tpj.12953.
Plants are known to be responsive to volatiles, but knowledge about the molecular players involved in transducing their perception remains scarce. We study the response of Arabidopsis thaliana to E-2-hexenal, one of the green leaf volatiles (GLV) that is produced upon wounding, herbivory or infection with pathogens. We have taken a transcriptomics approach to identify genes that are induced by E-2-hexenal, but not by defence hormones or other GLVs. Furthermore, by studying the promoters of early E-2-hexenal-induced genes we determined that the only statistically enriched cis-element was the W-box motif. Since members of the plant-specific family of WRKY transcription factors act in trans on this cis-element, we focused on WRKY6, 40 and 53 that were most strongly induced by E-2-hexenal. Root elongation of Arabidopsis seedlings of the wrky40 wrky6 double mutant was much less inhibited than in wt plants, similar to the E-2-hexenal-responsive mutant her1, which is perturbed in γ-amino butyric acid (GABA) metabolism. The induction of several of the E-2-hexenal-specific genes was much higher in the wrky40, wrky6 or wrky40 wrky6 mutants, including GAD4, a glutamate decarboxylase that catalyzes the formation of GABA from glutamate. In conclusion, WRKY6 and 40 seem to act as important players transducing E-2-hexenal perception.
植物对挥发物有反应,但对参与感知挥发物的分子机制知之甚少。我们研究了拟南芥对 E-2-己烯醛的反应,E-2-己烯醛是一种绿叶挥发物(GLV),在受伤、被草食动物取食或被病原体感染时会产生。我们采用转录组学方法来鉴定受 E-2-己烯醛诱导、但不受防御激素或其他 GLV 诱导的基因。此外,通过研究早期 E-2-己烯醛诱导基因的启动子,我们确定唯一具有统计学意义的顺式元件是 W-box 基序。由于植物特异性 WRKY 转录因子家族的成员可以在这个顺式元件上发生反式作用,因此我们将重点放在受 E-2-己烯醛诱导最强的 WRKY6、40 和 53 上。拟南芥 wrky40 wrky6 双突变体幼苗的根伸长比 wt 植物受抑制的程度要小得多,这与 E-2-己烯醛反应突变体 her1 相似,her1 突变体中γ-氨基丁酸(GABA)代谢受到干扰。在 wrky40、wrky6 或 wrky40 wrky6 突变体中,包括催化谷氨酸形成 GABA 的谷氨酸脱羧酶 GAD4 在内的几个 E-2-己烯醛特异性基因的诱导水平要高得多。总之,WRKY6 和 40 似乎是 E-2-己烯醛感知转导的重要参与者。