1 National Maize Improvement Centre of China, China Agricultural University, Beijing 100193, People's Republic of China.
3 Crops Research Institute, Guangdong Academy of Agricultural Sciences, Guangdong Provincial Key Laboratory of Crops Genetic & Improvement, Guangdong 510640, People's Republic of China.
Mol Plant Microbe Interact. 2017 Jun;30(6):455-465. doi: 10.1094/MPMI-11-16-0238-R. Epub 2017 Apr 27.
Head smut, caused by the fungal pathogen Sporisorium reilianum, poses a threat to maize production worldwide. ZmWAK, a cell wall-associated receptor kinase, confers quantitative resistance to head smut disease. Here, two near-isogenic lines (NILs), susceptible line Huangzao4 and its ZmWAK-converted resistant line Huangzao4R, were used to decipher the role of ZmWAK in head smut resistance. Cytological and molecular characterization in response to S. reilianum infection was compared between two NILs. Upon S. reilianum infection, the growth of pathogen hyphae was severely arrested in the ZmWAK-converted resistant line Huangzao4R, relative to its susceptible parental line Huangzao4. Infected cells exhibited apoptosis-like features in Huangzao4R and hyphae were sequestered within dead cells, whereas pathogen invasion caused autophagy in Huangzao4, which failed to prevent hyphal spreading. Integrated transcriptomic and metabolomic analysis indicated that ZmWAK functions as a hub in the trade-off between growth and defense, whereby ZmWAK promotes cell growth in the absence of the pathogen and switches to a defense response upon S. reilianum attack. These findings shed light on an elegant regulatory mechanism governed by ZmWAK in the trade-off between growth and head smut defense.
玉米丝黑穗病由真菌病原菌层出镰刀菌引起,对全球玉米生产构成威胁。ZmWAK 是一种细胞壁相关受体激酶,赋予对玉米丝黑穗病的定量抗性。在这里,使用两个近等基因系(NIL),感病系黄早 4 号及其 ZmWAK 转化的抗性系黄早 4R,来破译 ZmWAK 在玉米丝黑穗病抗性中的作用。比较了两个 NIL 对 S. reilianum 感染的细胞学和分子特征。在 S. reilianum 感染后,与感病亲本系黄早 4 号相比,ZmWAK 转化的抗性系黄早 4R 中病原菌菌丝的生长受到严重抑制。感染细胞在黄早 4R 中表现出类似凋亡的特征,并且菌丝被隔离在死细胞内,而病原体入侵导致黄早 4 中自噬,自噬未能阻止菌丝的扩散。综合转录组学和代谢组学分析表明,ZmWAK 作为生长和防御之间权衡的枢纽发挥作用,即在没有病原体的情况下,ZmWAK 促进细胞生长,而在 S. reilianum 攻击时则转向防御反应。这些发现揭示了由 ZmWAK 控制的在生长和玉米丝黑穗病防御之间权衡的优雅调控机制。