Laboratory of Plant Pathology, Agricultural University of Athens, 75 Iera Odos, 11855 Athens, Greece.
Fungal Genet Biol. 2012 Apr;49(4):271-83. doi: 10.1016/j.fgb.2012.02.005. Epub 2012 Feb 24.
To gain insight into the role of G protein-mediated signaling in virulence and development of the soilborne, wilt causing fungus Verticillium dahliae, the G protein β subunit gene (named as VGB) was disrupted in tomato race 1 strain of V. dahliae. A resulting mutant strain, 70ΔGb15, displayed drastic reduction in virulence, increased microsclerotia formation and conidiation, and decreased ethylene production compared to the corresponding wild type (wt) strain 70wt-r1. Moreover, 70ΔGb15 exhibited an elongated rather than radial growth pattern on agar media. A transformant of 70ΔGb15 (named as 70ΔGbPKAC1) that carries an extra copy of VdPKAC1, a V. dahliae gene encoding the catalytic subunit of the cAMP-dependent protein kinase A, exhibited wt growth pattern and conidiation, was unable to form microsclerotia, produced high amounts of ethylene, and exhibited virulence between that of 70ΔGb15 and 70wt-r1 on tomato plants. Phenotypical changes observed in 70ΔGb15 and 70ΔGbPKAC1 correlated with transcriptional changes in several genes involved in signaling (MAP kinase VMK1) and development (hydrophobin VDH1 and ACC synthase ACS1) of V. dahliae. Results from the present work suggest a linkage between VGB and VdPKAC1 signaling pathways in regulating virulence, hormone production and development in V. dahliae.
为了深入了解 G 蛋白介导的信号转导在土传枯萎病原菌——维氏萎蔫病菌(Verticillium dahliae)的毒力和发育中的作用,我们对番茄 1 号生理小种维氏萎蔫病菌的 G 蛋白β亚基基因(命名为 VGB)进行了敲除。与相应的野生型(wt)菌株 70wt-r1 相比,由此产生的突变菌株 70ΔGb15 的毒力明显降低,微菌核形成和产孢增加,乙烯生成减少。此外,70ΔGb15 在琼脂培养基上的生长模式为伸长而不是辐射状。携带 VdPKAC1 的 70ΔGb15 转化体(命名为 70ΔGbPKAC1),VdPKAC1 是编码 cAMP 依赖性蛋白激酶 A 催化亚基的维氏萎蔫病菌基因,表现出与野生型相似的生长和产孢模式,无法形成微菌核,产生大量乙烯,在番茄植株上的毒力介于 70ΔGb15 和 70wt-r1 之间。70ΔGb15 和 70ΔGbPKAC1 观察到的表型变化与维氏萎蔫病菌信号转导(MAP 激酶 VMK1)和发育(疏水性蛋白 VDH1 和 ACC 合酶 ACS1)相关基因的转录变化相关。本研究结果表明,在调控维氏萎蔫病菌毒力、激素产生和发育方面,VGB 和 VdPKAC1 信号通路之间存在联系。