Seong Kye-Yong, Zhao Xinhua, Xu Jin-Rong, Güldener Ulrich, Kistler H Corby
Department of Plant Pathology, University of Minnesota, St. Paul, MN 55108, USA.
Fungal Genet Biol. 2008 Apr;45(4):389-99. doi: 10.1016/j.fgb.2007.09.002. Epub 2007 Sep 14.
The ascomycetous fungus Fusarium graminearum is an important plant pathogen causing Fusarium head blight disease of wheat and barley. To understand early developmental stages of this organism, we followed the germination of macroconidia microscopically to understand the timing of key events. These events, recorded after suspension of spores in liquid germination medium, included spore swelling at 2h, germination tube emergence and elongation from conidia at 8h and hyphal branching at 24h. To understand changes in gene expression during these developmental changes, RNA was isolated from spores and used to interrogate the F. graminearum Affymetrix GeneChip. RNAs corresponding to 5813 genes were detected in fresh spores and 5146, 5249 and 5993, respectively, in spores incubated in germination medium after 2, 8 or 24h (P<0.001). Gene expression data were used to predict the cellular and physiological state of each developmental stage for known processes. Predictions were confirmed microscopically for several previously unreported developmental events such as manifestation of peroxisomes in fresh spores and nuclear division resulting in binuclear cells within macroconidia prior to spore germination. Knowledge of stage-specific gene expression and changes in gene expression levels between developmental stages are an important first step to understanding the molecular mechanisms responsible for spore germination and development.
子囊菌禾谷镰刀菌是一种重要的植物病原菌,可引发小麦和大麦的赤霉病。为了解该生物体的早期发育阶段,我们通过显微镜观察大分生孢子的萌发情况,以明确关键事件的发生时间。在将孢子悬浮于液体萌发培养基后记录的这些事件包括:2小时时孢子肿胀,8小时时萌发管从分生孢子中出现并伸长,以及24小时时菌丝分支。为了解这些发育变化过程中基因表达的变化,从孢子中提取RNA,并用于检测禾谷镰刀菌Affymetrix基因芯片。在新鲜孢子中检测到对应于5813个基因的RNA,在2、8或24小时后于萌发培养基中培养的孢子中分别检测到5146、5249和5993个基因的RNA(P<0.001)。利用基因表达数据预测已知过程中每个发育阶段的细胞和生理状态。通过显微镜观察证实了一些先前未报道的发育事件的预测结果,如新鲜孢子中过氧化物酶体的显现以及在孢子萌发前大分生孢子内导致双核细胞的核分裂。了解阶段特异性基因表达以及发育阶段之间基因表达水平的变化是理解孢子萌发和发育背后分子机制的重要第一步。