Department of Botany and Plant Pathology, Purdue University, West Lafayette, IN 47907, USA.
Mol Plant Microbe Interact. 2011 Jan;24(1):18-24. doi: 10.1094/MPMI-03-10-0074.
The putative hexose transporter gene fst1 in Fusarium verticillioides was identified previously by microarray analysis as a gene that was more highly expressed during colonization of autoclaved maize endosperm than germ. In contrast to a previous study, in which disruption of fst1 did not affect growth of the pathogen on autoclaved maize kernels, in the current study, we demonstrated that disruption of fst1 delayed growth and symptom development on wounded maize ears. Characterization of the fst1 promoter revealed that regulation of fst1 expression was similar to that of fumonisin biosynthetic (fum) genes; expression was highest during growth on endosperm tissue and repressed by elevated concentrations of ammonium in the growth medium. With a fluorescent tag attached to FST1, the protein localized transiently to the periphery of the cells near the plasma membrane and in vacuole-like structures, suggesting that membrane-localized FST1 was internalized and degraded in vacuoles. Expression of fst1 in a yeast strain lacking hexose transporter genes did not complement the yeast mutation, suggesting that FST1 does not transport glucose, fructose, or mannose. The results indicate a functional role for FST1 in pathogenesis during the colonization of living kernels.
先前通过微阵列分析鉴定出,在轮枝镰孢菌(Fusarium verticillioides)对灭菌玉米胚乳的定殖过程中,假定的己糖转运基因 fst1 的表达水平高于其对玉米胚的定殖过程。与先前的一项研究不同,该研究中 fst1 的缺失并未影响病原菌在灭菌玉米颗粒上的生长,而在本研究中,我们证明了 fst1 的缺失会延迟受伤玉米穗上的生长和症状发展。fst1 启动子的特征表明,fst1 表达的调控与伏马菌素生物合成(fum)基因的调控相似;在胚乳组织上生长时表达水平最高,并受到生长培养基中铵浓度升高的抑制。通过将荧光标签附着到 FST1 上,该蛋白在细胞膜附近的细胞外周和液泡样结构中短暂定位,这表明定位于膜的 FST1 被内化并在液泡中降解。在缺乏己糖转运基因的酵母菌株中表达 fst1 不能补充酵母突变,这表明 FST1 不能运输葡萄糖、果糖或甘露糖。结果表明 FST1 在活玉米穗定殖过程中的致病作用中具有功能作用。