Prados Rosales Rafael C, Di Pietro Antonio
Departamento de Genética, Universidad de Córdoba, Campus de Rabanales Edif. C5, 14071 Córdoba, Spain.
Eukaryot Cell. 2008 Jan;7(1):162-71. doi: 10.1128/EC.00258-07. Epub 2007 Nov 26.
Vegetative hyphal fusion (VHF) is a ubiquitous phenomenon in filamentous fungi whose biological role is poorly understood. In Neurospora crassa, the mitogen-activated protein kinase (MAPK) Mak-2 and the WW domain protein So are required for efficient VHF. A MAPK orthologous to Mak-2, Fmk1, was previously shown to be essential for root penetration and pathogenicity of the vascular wilt fungus Fusarium oxysporum. Here we took a genetic approach to test two hypotheses, that (i) VHF and plant infection have signaling mechanisms in common and (ii) VHF is required for efficient plant infection. F. oxysporum mutants lacking either Fmk1 or Fso1, an orthologue of N. crassa So, were impaired in the fusion of vegetative hyphae and microconidial germ tubes. Deltafmk1 Deltafso1 double mutants exhibited a more severe fusion phenotype than either single mutant, indicating that the two components function in distinct pathways. Both Deltafso1 and Deltafmk1 strains were impaired in the formation of hyphal networks on the root surface, a process associated with extensive VHF. The Deltafso1 mutants exhibited slightly reduced virulence in tomato fruit infection assays but, in contrast to Deltafmk1 strains, were still able to perform functions associated with invasive growth, such as secretion of pectinolytic enzymes or penetration of cellophane sheets, and to infect tomato plants. Thus, although VHF per se is not essential for plant infection, both processes have some signaling components in common, suggesting an evolutionary relationship between the underlying cellular mechanisms.
营养菌丝融合(VHF)是丝状真菌中普遍存在的现象,但其生物学作用尚不清楚。在粗糙脉孢菌中,高效的VHF需要丝裂原活化蛋白激酶(MAPK)Mak-2和WW结构域蛋白So。先前已证明,与Mak-2直系同源的MAPK Fmk1对于维管束萎蔫真菌尖孢镰刀菌的根部穿透和致病性至关重要。在这里,我们采用遗传学方法来检验两个假设,即(i)VHF和植物感染具有共同的信号传导机制,以及(ii)高效的植物感染需要VHF。缺乏Fmk1或粗糙脉孢菌So的直系同源物Fso1的尖孢镰刀菌突变体在营养菌丝和微生子囊管的融合方面存在缺陷。Δfmk1Δfso1双突变体表现出比任一单突变体更严重的融合表型,表明这两个组分在不同的途径中发挥作用。Δfso1和Δfmk1菌株在根表面菌丝网络的形成方面均存在缺陷,这一过程与广泛的VHF相关。在番茄果实感染试验中,Δfso1突变体的毒力略有降低,但与Δfmk1菌株不同的是,它仍然能够执行与侵入性生长相关的功能,如分泌果胶酶或穿透玻璃纸,并感染番茄植株。因此,尽管VHF本身对于植物感染并非必不可少,但这两个过程具有一些共同的信号成分,这表明潜在的细胞机制之间存在进化关系。