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首页> 外文期刊>Frontiers in Microbiology >The Zn(II)2Cys6-Type Transcription Factor ADA-6 Regulates Conidiation, Sexual Development, and Oxidative Stress Response in Neurospora crassa
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The Zn(II)2Cys6-Type Transcription Factor ADA-6 Regulates Conidiation, Sexual Development, and Oxidative Stress Response in Neurospora crassa

机译:Zn(II)2Cys6型转录因子ADA-6调节 crurospora crassa 的分生,性发育和氧化应激反应。

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Conidiation and sexual development are critical for reproduction, dispersal and better-adapted survival in many filamentous fungi. The Neurospora crassa gene ada-6 encodes a Zn(II)2Cys6-type transcription factor, whose deletion resulted in reduced conidial production and female sterility. In this study, we confirmed the positive contribution of ada-6 to conidiation and sexual development by detailed phenotypic characterization of its deletion mutant and the complemented mutant. To understand the regulatory mechanisms of ADA-6 in conidiation and sexual development, transcriptomic profiles generated by RNA-seq from the Δ ada-6 mutant and wild type during conidiation and sexual development were compared. During conidial development, differential expressed genes (DEGs) between the Δ ada-6 mutant and wild type are mainly involved in oxidation-reduction process and single-organism metabolic process. Several conidiation related genes are positively regulated by ADA-6, including genes that positively regulate conidiation ( fluffy and acon-3 ), and genes preferentially expressed during conidial development ( eas , con-6 , con-8 , con-10 , con-13 , pcp-1 , and NCU9357), as the expression of these genes were lower in the Δ ada-6 mutant compared to wild type during conidial development. Phenotypic observation of deletion mutants for other genes with unknown function down-regulated by ada-6 deletion revealed that deletion mutants for four genes (NCU00929, NCU05260, NCU00116, and NCU04813) produced less conidia than wild type. Deletion of ada-6 resulted in female sterility, which might be due to that ADA-6 affects oxidation-reduction process and transmembrane transport process, and positively regulates the transcription of pre-2 , poi-2 , and NCU05832, three key genes participating in sexual development. In both conidiation and the sexual development process, ADA-6 regulates the transcription of cat-3 and other genes participating in reactive oxygen species production according to RNA-seq data, indicating a role of ADA-6 in oxidative stress response. This was further confirmed by the results that deletion of ada-6 led to hypersensitivity to oxidants H _(2)O _(2) and menadione. Together, these results proved that ADA-6, as a global regulator, plays a crucial role in conidiation, sexual development, and oxidative stress response of N. crassa .
机译:分生孢子和有性发育对于许多丝状真菌的繁殖,扩散和更好的存活至关重要。景天神经孢霉基因ada-6编码Zn(II)2Cys6型转录因子,其缺失导致分生孢子产生减少和雌性不育。在这项研究中,我们通过对其缺失突变体和互补突变体的详细表型表征,证实了ada-6对分生和性发育的积极贡献。为了了解ADA-6在分生和性发育过程中的调控机制,比较了在分生和性发育过程中由Δada-6突变体和野生型的RNA-seq产生的转录组谱。在分生孢子发育过程中,Δada-6突变体与野生型之间的差异表达基因(DEG)主要参与氧化还原过程和单一生物代谢过程。 ADA-6正调控着与分生孢子有关的基因,包括正向调节分生孢子的基因(蓬松和acon-3),以及在分生孢子发育过程中优先表达的基因(eas,con-6,con-8,con-10,con- 13,pcp-1和NCU9357),因为在分生孢子发育过程中,这些基因在Δada-6突变体中的表达低于野生型。通过ada-6缺失下调功能未知的其他基因的缺失突变体的表型观察表明,与野生型相比,四个基因(NCU00929,NCU05260,NCU00116和NCU04813)的缺失突变体产生的分生孢子少。 ada-6的缺失导致女性不育,这可能是由于ADA-6影响了氧化还原过程和跨膜转运过程,并积极调节了参与其中的三个关键基因pre-2,poi-2和NCU05832的转录。在性发展中。在分娩和性发育过程中,ADA-6根据RNA-seq数据调节cat-3和参与活性氧产生的其他基因的转录,表明ADA-6在氧化应激反应中的作用。结果进一步证实了ada-6的缺失导致对氧化剂H_(2)O_(2)和甲萘醌的超敏性。总之,这些结果证明,ADA-6作为一种全球调节剂,在猪笼草的产卵,性发育和氧化应激反应中起着至关重要的作用。

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