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首页> 外文期刊>Current Genetics: Eukaryotes with Emphasis on Yeasts, Fungi, Mitochondria, Plastids >The fungal opsin gene nop-1 is negatively-regulated by a component of the blue light sensing pathway and influences conidiation-specific gene expression in Neurospora crassa.
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The fungal opsin gene nop-1 is negatively-regulated by a component of the blue light sensing pathway and influences conidiation-specific gene expression in Neurospora crassa.

机译:真菌视蛋白基因nop-1受到蓝光传感途径的负调控,并影响拟南芥中分生孢子特异的基因表达。

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We previously demonstrated that the nop-1 gene encodes a putative green-light opsin photoreceptor that is highly expressed in cultures that support asexual sporulation (conidiation) in Neurospora crassa. In this study, we demonstrate that nop-1 is a late-stage conidiation gene, through analysis of nop-1 transcript levels in wild-type strains and mutants blocked at various stages of conidiation. nop-1 message amounts are similar with constant illumination or darkness during conidiation, consistent with developmental, but not light, regulation of nop-1 expression. Furthermore, photoinduction experiments using wild type and mutants defective in components of the blue light sensing pathway (wc-1 and wc-2) indicate that nop-1 mRNA levels are not appreciably affected by brief light exposure during conidiation. Surprisingly, nop-1 message amounts are greatly elevated in wc-2 mutants in light or dark, suggesting that the wc-2 gene product regulates nop-1 expression in a light-independent manner. Analysis of expression patterns for al-2, con-10 and con-13, genes regulated by conidiation and/or blue light, showed that nop-1 has significant and reproducible effects on all three genes during various stages of conidiation. The results suggest that NOP-1 directly or indirectly modulates carotenogenesis and repression of conidiation-specific gene expression in N. crassa.
机译:我们以前证明了nop-1基因编码一种假定的绿光视蛋白感光体,该蛋白在支持无性孢子形成的无性孢子形成(形成)中高表达。在这项研究中,我们通过分析野生型菌株和在不同分生阶段受阻的突变体中的nop-1转录水平,证明了nop-1是一个晚期分生基因。 nop-1信息量与连续光照或黑暗过程中的照度相似,与nop-1表达的发育调控(而不是光照调控)一致。此外,使用野生型和在蓝光感测途径的成分(wc-1和wc-2)中有缺陷的突变体进行的光诱导实验表明,在分娩过程中,短暂的曝光不会明显影响nop-1 mRNA的水平。出乎意料的是,在亮或暗的wc-2突变体中,nop-1信息量大大增加,表明wc-2基因产物以光非依赖性方式调节nop-1的表达。分析由分生和/或蓝光调节的基因al-2,con-10和con-13的表达模式,表明nop-1在分生的不同阶段对所有三个基因具有显着且可重复的作用。结果表明,NOP-1直接或间接调节克雷萨猪笼草的成虫作用和抑制成虫特异基因的表达。

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