Zhang L, Baasiri R A, Van Alfen N K
Department of Plant Pathology and Microbiology, Texas A&M University, College Station 77843-2132, USA.
Mol Cell Biol. 1998 Feb;18(2):953-9. doi: 10.1128/MCB.18.2.953.
Biological control of chestnut blight caused by the filamentous ascomycete Cryphonectria parasitica can be achieved with a virus that infects this fungus. This hypovirus causes a perturbation of fungal development that results in low virulence (hypovirulence), poor asexual sporulation, and female infertility without affecting fungal growth in culture. At the molecular level, the virus is known to affect the transcription of a number of fungal genes. Two of these genes, Vir1 and Vir2, produce abundant transcripts in noninfected strains of the fungus, but the transcripts are not detectable in virus-infected strains. We report here that these two genes encode the pheromone precursors of the Mat-2 mating type of the fungus; consequently, these genes have been renamed Mf2/1 and Mf2/2. To determine if the virus affects the mating systems of both mating types of this fungus, the pheromone precursor gene, Mf1/1, of a Mat-1 strain was cloned and likewise was found to be repressed in virus-infected strains. The suppression of transcription of the pheromone precursor genes of this fungus could be the cause of the mating defect of infected strains of the fungus. Although published reports suggest that a G alpha(i) subunit may be involved in this regulation, our results do not support this hypothesis. The prepropheromone encoded by Mf1/1 is structurally similar to that of the prepro-p-factor of Schizosaccharomyces pombe. This is the first description of the complete set of pheromone precursor genes encoded by a filamentous ascomycete.
由丝状子囊菌寄生隐孢壳菌引起的栗疫病,可通过一种感染该真菌的病毒实现生物防治。这种低毒病毒会干扰真菌发育,导致低毒力(低致病性)、无性孢子形成不良和雌性不育,且不影响真菌在培养基中的生长。在分子水平上,已知该病毒会影响许多真菌基因的转录。其中两个基因,Vir1和Vir2,在未感染该真菌的菌株中产生大量转录本,但在病毒感染的菌株中检测不到这些转录本。我们在此报告,这两个基因编码该真菌Mat-2交配型的信息素前体;因此,这些基因已重新命名为Mf2/1和Mf2/2。为了确定该病毒是否会影响这种真菌两种交配型的交配系统,克隆了Mat-1菌株的信息素前体基因Mf1/1,同样发现其在病毒感染的菌株中受到抑制。该真菌信息素前体基因转录的抑制可能是该真菌感染菌株交配缺陷的原因。尽管已发表的报告表明Gα(i)亚基可能参与这种调控,但我们的结果不支持这一假设。Mf1/1编码的前体信息素在结构上与粟酒裂殖酵母的前体p因子相似。这是首次对丝状子囊菌编码的全套信息素前体基因进行描述。