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Square-plate culture method allows detection of differential gene expression and screening of novel, region-specific genes in Aspergillus oryzae

机译:方板培养法可检测差异基因表达并筛选米曲霉中新的区域特异性基因

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摘要

When grown on solid agar medium, the mycelium of a filamentous fungus; Aspergillus oryzae, forms three morphologically distinct regions: the tip (T), white (W), and basal (B) regions. In this study, we developed the square-plate culture method, a novel culture method that enabled the extraction of mRNA samples from the three regions and analyzed the differential gene expression of the A. oryzae mycelium in concert with the microarray technique. Expression of genes involved in protein synthesis was predominant in the T region; relative expression was, at most, six times higher in the T region compared to the other regions. Genes encoding hypothetical proteins were expressed at high levels in the W and B regions. In addition, genes coding transporters/permeases were predominantly transcribed in the B region. By analyzing the expression patterns of genes in the three regions, we demonstrated the dynamic changes in the regulation of gene expression that occur along the mycelium of filamentous fungi. Consequently, our study established a method to analyze and screen for region-specific genes whose function may be essential for morphogenesis and differentiation in filamentous fungi and whose traits may be beneficial to the biotechnology industry.
机译:在固体琼脂培养基上生长时,丝状真菌的菌丝体;米曲霉形成三个形态上不同的区域:尖端(T),白色(W)和基底(B)区域。在这项研究中,我们开发了方板培养方法,这是一种新颖的培养方法,能够从三个区域提取mRNA样品,并与微阵列技术一起分析了米曲霉菌丝体的差异基因表达。参与蛋白质合成的基因的表达主要在T区。在T区,相对表达最多是其他区的六倍。编码假定蛋白的基因在W和B区高水平表达。另外,编码转运蛋白/通透酶的基因主要在B区转录。通过分析这三个区域中基因的表达模式,我们证明了沿丝状真菌菌丝体发生的基因表达调控的动态变化。因此,我们的研究建立了一种分析和筛选区域特定基因的方法,这些基因的功能可能对丝状真菌的形态发生和分化至关重要,其特性可能对生物技术产业有利。

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