Schönig Birgit, Brown Daren W, Oeser Birgitt, Tudzynski Bettina
Institut für Botanik der Westfälische Wilhelms-Universität Münster, Münster, Germany.
Eukaryot Cell. 2008 Oct;7(10):1831-46. doi: 10.1128/EC.00130-08. Epub 2008 Aug 8.
In filamentous fungi, the GATA-type transcription factor AreA plays a major role in the transcriptional activation of genes needed to utilize poor nitrogen sources. In Fusarium fujikuroi, AreA also controls genes involved in the biosynthesis of gibberellins, a family of diterpenoid plant hormones. To identify more genes responding to nitrogen limitation or sufficiency in an AreA-dependent or -independent manner, we examined changes in gene expression of F. fujikuroi wild-type and DeltaareA strains by use of a Fusarium verticillioides microarray representing approximately 9,300 genes. Analysis of the array data revealed sets of genes significantly down- and upregulated in the areA mutant under both N starvation and N-sufficient conditions. Among the downregulated genes are those involved in nitrogen metabolism, e.g., those encoding glutamine synthetase and nitrogen permeases, but also those involved in secondary metabolism. Besides AreA-dependent genes, we found an even larger set of genes responding to N starvation and N-sufficient conditions in an AreA-independent manner. To study the impact of NMR on AreA activity, we examined the expression of several AreA target genes in the wild type and in areA and nmr deletion and overexpression mutants. We show that NMR interacts with AreA as expected but affects gene expression only in early growth stages. This is the first report on genome-wide expression studies examining the influence of AreA on nitrogen-responsive gene expression in a genome-wide manner in filamentous fungi.
在丝状真菌中,GATA 型转录因子 AreA 在利用贫氮源所需基因的转录激活中起主要作用。在藤仓镰孢菌中,AreA 还控制参与赤霉素生物合成的基因,赤霉素是一类二萜类植物激素。为了鉴定更多以 AreA 依赖或非依赖方式响应氮限制或充足的基因,我们使用代表约 9300 个基因的轮枝镰孢菌微阵列检测了藤仓镰孢菌野生型和ΔareA 菌株的基因表达变化。对阵列数据的分析揭示了在氮饥饿和氮充足条件下 areA 突变体中显著下调和上调的基因集。下调的基因包括参与氮代谢的基因,例如编码谷氨酰胺合成酶和氮通透酶的基因,也包括参与次级代谢的基因。除了 AreA 依赖的基因外,我们还发现了一组更大的基因以 AreA 非依赖方式响应氮饥饿和氮充足条件。为了研究 NMR 对 AreA 活性的影响,我们检测了野生型、areA 和 nmr 缺失及过表达突变体中几个 AreA 靶基因的表达。我们表明 NMR 如预期那样与 AreA 相互作用,但仅在生长早期影响基因表达。这是关于全基因组表达研究的首篇报道,该研究以全基因组方式检测了 AreA 对丝状真菌中氮响应基因表达的影响。