College of Plant Protection, Northwest A&F University, Yangling, Shaanxi 712100, China.
Mol Plant Microbe Interact. 2011 Jan;24(1):118-28. doi: 10.1094/MPMI-06-10-0129.
Fusarium head blight or scab caused by Fusarium graminearum is an important disease of wheat and barley. The pathogen not only causes severe yield losses but also contaminates infested grains with mycotoxins. In a previous study, we identified several pathogenicity mutants by random insertional mutagenesis. One of these mutants was disrupted in the ZIF1 gene, which encodes a b-ZIP transcription factor unique to filamentous ascomycetes. The Δzif1 mutant generated by gene replacement was significantly reduced in deoxynivalenol (DON) production and virulence on flowering wheat heads. It was defective in spreading from inoculated florets to the rachis and other spikelets. Deletion of the ZIF1 ortholog MoZIF1 in the rice blast fungus also caused reductions in virulence and in invasive growth. In addition, the Δzif1 mutant is defective in sexual reproduction. Although it had normal male fertility, when selfed or mated as the female in outcrosess, the Δzif1 mutant produced small, pigmented perithecia that were sterile (lack of asci and ascospores), suggesting a female-specific role for ZIF1 during fertilization or ascus development. Similar female-specific defects in sexual reproduction were observed in the ΔMozif1 mutant. When mated as the female, the ΔMozif1 perithecia failed to develop long necks and asci or ascospores. The ZIF1 gene is well conserved in filamentous ascomycetes, particularly in the b-ZIP domain, which is essential for its function. Expression of ZIF1 in Magnaporthe oryzae complemented the defects of the ΔMozif1 mutant. These results indicate that this b-ZIP transcription factor is functionally conserved in these two fungal pathogens for plant infection and sexual reproduction.
镰刀菌顶腐病或赤霉病是由禾谷镰刀菌引起的一种重要的小麦和大麦病害。该病原体不仅导致严重的产量损失,还会使受污染的谷物受到真菌毒素的污染。在之前的一项研究中,我们通过随机插入诱变鉴定了几个致病性突变体。其中一个突变体在 ZIF1 基因中发生了缺失,该基因编码丝状子囊菌特有的 b-ZIP 转录因子。通过基因替换生成的Δzif1 突变体在脱氧雪腐镰刀菌烯醇(DON)的产生和对开花小麦头部的毒力方面显著降低。它在从接种的小花向穗轴和其他小穗传播方面存在缺陷。在稻瘟病菌中,ZIF1 同源物 MoZIF1 的缺失也导致了毒力和侵袭性生长的降低。此外,Δzif1 突变体在有性生殖方面存在缺陷。尽管它具有正常的雄性育性,但当自交或在杂交中作为雌性时,Δzif1 突变体产生的小、色素沉着的子囊壳是不育的(缺乏子囊和子囊孢子),这表明 ZIF1 在受精或子囊发育过程中具有雌性特异性作用。在ΔMozif1 突变体中也观察到类似的有性生殖雌性特异性缺陷。当作为雌性交配时,ΔMozif1 子囊壳未能发育成长颈和子囊或子囊孢子。ZIF1 基因在丝状子囊菌中高度保守,特别是在 b-ZIP 结构域,这对其功能至关重要。在稻瘟病菌中表达 ZIF1 可弥补ΔMozif1 突变体的缺陷。这些结果表明,这种 b-ZIP 转录因子在这两种植物病原体的植物感染和有性生殖中具有功能保守性。