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GzSNF1对于子囊菌玉米赤霉的正常有性和无性发育是必需的。

GzSNF1 is required for normal sexual and asexual development in the ascomycete Gibberella zeae.

作者信息

Lee Seung-Ho, Lee Jungkwan, Lee Seunghoon, Park Eun-Hee, Kim Ki-Woo, Kim Myoung-Dong, Yun Sung-Hwan, Lee Yin-Won

机构信息

Department of Agricultural Biotechnology and Center for Agricultural Biomaterials, Seoul National University, Seoul, South Korea.

出版信息

Eukaryot Cell. 2009 Jan;8(1):116-27. doi: 10.1128/EC.00176-08. Epub 2008 Nov 21.

Abstract

The sucrose nonfermenting 1 (SNF1) protein kinase of yeast plays a central role in the transcription of glucose-repressible genes in response to glucose starvation. In this study, we deleted an ortholog of SNF1 from Gibberella zeae to characterize its functions by using a gene replacement strategy. The mycelial growth of deletion mutants (DeltaGzSNF1) was reduced by 21 to 74% on diverse carbon sources. The virulence of DeltaGzSNF1 mutants on barley decreased, and the expression of genes encoding cell-wall-degrading enzymes was reduced. The most distinct phenotypic changes were in sexual and asexual development. DeltaGzSNF1 mutants produced 30% fewer perithecia, which matured more slowly, and asci that contained one to eight abnormally shaped ascospores. Mutants in which only the GzSNF1 catalytic domain was deleted had the same phenotype changes as the DeltaGzSNF1 strains, but the phenotype was less extreme in the mutants with the regulatory domain deleted. In outcrosses between the DeltaGzSNF1 mutants, each perithecium contained approximately 70% of the abnormal ascospores, and approximately 50% of the asci showed unexpected segregation patterns in a single locus tested. The asexual spores of the DeltaGzSNF1 mutants were shorter and had fewer septa than those of the wild-type strain. The germination and nucleation of both ascospores and conidia were delayed in DeltaGzSNF1 mutants in comparison with those of the wild-type strain. GzSNF1 expression and localization depended on the developmental stage of the fungus. These results suggest that GzSNF1 is critical for normal sexual and asexual development in addition to virulence and the utilization of alternative carbon sources.

摘要

酵母的蔗糖非发酵1(SNF1)蛋白激酶在响应葡萄糖饥饿时对葡萄糖可阻遏基因的转录起着核心作用。在本研究中,我们通过基因替换策略从玉米赤霉中删除了SNF1的一个直系同源基因,以表征其功能。缺失突变体(ΔGzSNF1)在多种碳源上的菌丝生长降低了21%至74%。ΔGzSNF1突变体对大麦的毒力下降,编码细胞壁降解酶的基因表达减少。最明显的表型变化发生在有性和无性发育方面。ΔGzSNF1突变体产生的子囊壳减少了30%,成熟更慢,并且子囊包含一至八个形状异常的子囊孢子。仅删除GzSNF1催化结构域的突变体具有与ΔGzSNF1菌株相同的表型变化,但在删除调控结构域的突变体中表型不那么极端。在ΔGzSNF1突变体之间的杂交中,每个子囊壳含有约70%的异常子囊孢子,并且在单个测试位点约50%的子囊显示出意外的分离模式。ΔGzSNF1突变体的无性孢子比野生型菌株的更短且隔膜更少。与野生型菌株相比,ΔGzSNF1突变体中,子囊孢子和分生孢子的萌发及核形成均延迟。GzSNF1的表达和定位取决于真菌的发育阶段。这些结果表明,GzSNF1除了对毒力和替代碳源的利用至关重要外,对正常的有性和无性发育也至关重要。

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