Park Seung-Moon, Choi Eun-Sil, Kim Myoung-Ju, Cha Byeong-Jin, Yang Moon-Sik, Kim Dae-Hyuk
Institute for Molecular Biology and Genetics, Basic Science Research Institute, Chonbuk National University, Dukjindong 664-14, Jeonju, Chonbuk 561-756, Korea.
Mol Microbiol. 2004 Mar;51(5):1267-77. doi: 10.1111/j.1365-2958.2004.03919.x.
We examined the biological function of cpmk1, which encodes a MAPK of Cryphonectria parasitica, and its regulation by mycovirus. Sequence comparisons revealed that cpmk1 had highest homology with osm1, a hog1-homologue from Magnaporthe grisea. A growth defect was observed in the cpmk1-null mutant under hyperosmotic conditions, indicating that cpmk1 functionally belongs to a hog1 subfamily. Immunoblot analyses indicated that the CpMK1 pathway was affected specifically in hyperosmotic conditions by the hypovirus CHV1-EP713. Moreover, the virus-infected hypovirulent UEP1 strain also exhibited severe osmosensitivity compared to the virus-free isogenic strain EP155/2, thus providing additional evidence for viral regulation of cpmk1 in response to a hypertonic stress. Besides osmosensitivity, disruption of cpmk1 resulted in several, but not all, hypovirulence-associated changes, such as reduced pigmentation, conidiation, laccase production and cryparin expression. However, the cpmk1-null mutant exhibited an increased accumulation of pheromone gene transcripts. Virulence assays of the cpmk1-null mutant revealed reduced canker area, but not as severe as that of UEP1. These results suggest that mycoviruses modulate the MAPK and thereby provoke the aberrant expression of target genes, some of which are likely to be implicated in viral symptom development.
我们研究了编码寄生隐孢壳菌丝裂原活化蛋白激酶(MAPK)的cpmk1的生物学功能及其受真菌病毒的调控。序列比较显示,cpmk1与来自稻瘟病菌的hog1同源物osm1具有最高的同源性。在高渗条件下,cpmk1基因缺失突变体出现生长缺陷,表明cpmk1在功能上属于hog1亚家族。免疫印迹分析表明,低毒病毒CHV1-EP713在高渗条件下特异性地影响CpMK1途径。此外,与无病毒的同基因菌株EP155/2相比,感染病毒的低毒力UEP1菌株也表现出严重的渗透敏感性,从而为病毒在高渗胁迫下对cpmk1的调控提供了额外证据。除了渗透敏感性外,cpmk1的破坏还导致了一些但并非所有与低毒力相关的变化,如色素沉着减少、分生孢子形成、漆酶产生和cryparin表达降低。然而,cpmk1基因缺失突变体中信息素基因转录本的积累增加。cpmk1基因缺失突变体的毒力测定显示溃疡面积减小,但不如UEP1严重。这些结果表明,真菌病毒调节丝裂原活化蛋白激酶,从而引发靶基因的异常表达,其中一些基因可能与病毒症状的发展有关。