WRKY蛋白质结构域
胡椒粉
生物
植物抗病性
水杨酸
基因
基因沉默
过敏反应
植物对草食的防御
炭疽菌
基因表达
植物
遗传学
园艺
转录组
作者
Yang Li,Xiao Ma,Luo‐Dan Xiao,Yanan Yu,Zhen‐Hui Gong
摘要
ABSTRACT 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.
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