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首页> 外文期刊>Fungal Genetics and Biology >Conditional gene expression and promoter replacement in Zymoseptoria tritici using fungal nitrate reductase promoters
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Conditional gene expression and promoter replacement in Zymoseptoria tritici using fungal nitrate reductase promoters

机译:使用真菌硝酸还原酶启动子在小麦酵母中条件基因表达和启动子替换

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摘要

Studying essential genes in haploid fungi requires specific tools. Conditional promoter replacement (CPR) is an efficient method for testing gene essentiality. However, this tool requires promoters that can be strongly down-regulated. To this end, we tested the nitrate reductase promoters of Magnaporthe oryzae (pMoNIA1) and Zymoseptoria tritici (pZtNIA1) for their conditional expression in Z. tritici. Expression of EGFP driven by pMoNIA1 or pZtNIA1 was induced on nitrate and down-regulated on glutamate (10-fold less than nitrate). Levels of differential expression were similar for both promoters, demonstrating that the Z. tritici nitrogen regulatory network functions with a heterologous promoter similarly to a native promoter. To establish CPR, the promoter of Z. tritici BGS1, encoding a beta-1,3-glucan synthase, was replaced by pZtNIA1 using targeted sequence replacement. Growth of pZtNIA1::BGS1 CPR transformants was strongly reduced in conditions repressing pZtNIA1, while their growth was similar to wild type in conditions inducing pZtNIA1. This differential phenotype demonstrates that BGS1 is important for growth in Z. tritici. In addition, in inducing conditions, pZtNIA1::BGS1 CPR transformants were hyper-sensitive to Calcofluor white, a cell wall disorganizing agent. Nitrate reductase promoters are therefore suitable for conditional promoter replacement in Z. tritici. This tool is a major step toward identifying novel fungicide targets. (C) 2015 Elsevier Inc. All rights reserved.
机译:研究单倍体真菌中的必需基因需要特定的工具。有条件的启动子替换(CPR)是测试基因必要性的有效方法。但是,此工具需要可以被强烈下调的启动子。为此,我们测试了稻瘟病菌(pMoNIA1)和小麦Zymoseptoria tritici(pZtNIA1)的硝酸还原酶启动子在Z. tritici中的条件表达。由pMoNIA1或pZtNIA1驱动的EGFP的表达在硝酸盐上被诱导,并在谷氨酸上调(比硝酸盐少10倍)。两种启动子的差异表达水平均相似,表明小麦Z. Z氮调控网络与异源启动子的功能相似,类似于天然启动子。为了建立CPR,使用靶向序列置换将p.tZNIA1替换了编码β-1,3-葡聚糖合酶的Z. tritici BGS1的启动子。在抑制pZtNIA1的条件下,pZtNIA1 :: BGS1 CPR转化子的生长大大降低,而在诱导pZtNIA1的条件下,它们的生长与野生型相似。此差异表型表明BGS1对于小麦小粒酵母的生长很重要。另外,在诱导条件下,pZtNIA1 :: BGS1 CPR转化株对细胞壁分解剂Calcofluor white高度敏感。因此,硝酸还原酶启动子适合于小麦中的条件启动子替换。该工具是朝确定新型杀真菌剂目标迈出的重要一步。 (C)2015 Elsevier Inc.保留所有权利。

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