Li Yang, Ma Xiao, Xiao Luo-Dan, Yu Ya-Nan, Gong Zhen-Hui
College of Horticulture, Northwest A&F University, Yangling, Shaanxi, People's Republic of China.
Solid-State Fermentation Resource Utilization Key Laboratory of Sichuan Province, Department of Agriculture Forestry and Food Engineering, Yibin University, Yibin, People's Republic of China.
Plant Cell Environ. 2025 Feb;48(2):1514-1534. doi: 10.1111/pce.15205. Epub 2024 Oct 27.
Chili anthracnose, a fungal disease caused by Colletotrichum scovillei, is among the most devastating diseases affecting pepper (Capsicum annuum L.). Although WRKY transcription factors play important roles in plant immunity, it is unknown how WRKY gene family members contribute to pepper plant resistance to C. scovillei. Here, CaWRKY20 was found to negatively regulate pepper resistance to C. scovillei, which was demonstrated by virus-induced gene silencing and transient overexpression in pepper. Moreover, overexpression of CaWRKY20 enhanced susceptibility to C. scovillei in tomato. Additionally, our findings demonstrated that CaWRKY20 can indirectly regulate the expression of salicylic acid (SA)-related defense genes (CaPR1, CaPR10 and CaSAR8.2) as well as reactive oxygen species (ROS)-scavenging enzyme genes (CaCAT, CaPOD and CaSOD) in response to C. scovillei. In addition, CaWRKY20 was found to interact with CaMIEL1 in the nucleus to regulate the defense response to C. scovillei in pepper. Furthermore, CaWRKY20 directly bound to the W-box in the promoter of SYSTEMIC ACQUIRED RESISTANCE DEFICIENT 1 (CaSARD1) and suppressed its expression, resulting in reduced resistance to C. scovillei. These results will clarify the mechanism by which WRKY transcription factors are involved in pepper disease resistance and can thus facilitate molecular breeding for anthracnose-resistant varieties.
辣椒炭疽病是由史氏炭疽菌引起的一种真菌病害,是影响辣椒(Capsicum annuum L.)的最具毁灭性的病害之一。虽然WRKY转录因子在植物免疫中发挥重要作用,但尚不清楚WRKY基因家族成员如何影响辣椒植株对史氏炭疽菌的抗性。在此,通过病毒诱导的基因沉默和辣椒中的瞬时过表达表明,CaWRKY20负向调控辣椒对史氏炭疽菌的抗性。此外,CaWRKY20在番茄中的过表达增强了对史氏炭疽菌的易感性。此外,我们的研究结果表明,响应史氏炭疽菌,CaWRKY20可以间接调节水杨酸(SA)相关防御基因(CaPR1、CaPR10和CaSAR8.2)以及活性氧(ROS)清除酶基因(CaCAT、CaPOD和CaSOD)的表达。此外,发现CaWRKY20在细胞核中与CaMIEL1相互作用,以调节辣椒对史氏炭疽菌的防御反应。此外,CaWRKY20直接结合到系统获得性抗性缺陷1(CaSARD1)启动子中的W盒并抑制其表达,导致对史氏炭疽菌的抗性降低。这些结果将阐明WRKY转录因子参与辣椒抗病性的机制,从而有助于炭疽病抗性品种的分子育种。