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RNA Sequencing Reveals Differential Gene Expression of Cerrena Unicolor in Response to Variable Lighting Conditions

机译:RNA测序显示Cerrena Unicol的差异基因表达响应于可变照明条件

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To elucidate the light-dependent gene expression in Cerrena unicolor FCL139, the transcriptomes of the fungus growing in white, blue, green, and red lighting conditions and darkness were analysed. Among 10,413 all-unigenes detected in C. unicolor, 7762 were found to be expressed in all tested conditions. Transcripts encoding putative fungal photoreceptors in the C. unicolor transcriptome were identified. The number of transcripts uniquely produced by fungus ranged from 20 during its growth in darkness to 112 in the green lighting conditions. We identified numerous genes whose expression differed substantially between the darkness (control) and each of the light variants tested, with the greatest number of differentially expressed genes (DEGs) (454 up- and 457 down-regulated) observed for the white lighting conditions. The DEGs comprised those involved in primary carbohydrate metabolism, amino acid metabolism, autophagy, nucleotide repair systems, signalling pathways, and carotenoid metabolism as defined using Kyoto Encyclopedia of Genes and Genomes (KEGG) database. The analysis of the expression profile of genes coding for lignocellulose-degrading enzymes suggests that the wood-degradation properties of C. unicolor may be independent of the lighting conditions and may result from the overall stimulation of fungal metabolism by daylight.
机译:为了阐明Cerrena Unicolor FCL139中的光依赖性基因表达,分析了在白色,蓝色,绿色和红色照明条件和黑暗中生长的真菌的转录组。在C. unicolor中检测到的10,413个全体unegenes中,发现7762年被发现在所有测试条件下表达。鉴定了在C. UnicoloR转录组中编码推定的真菌感光体的转录物。由真菌唯一生产的转录物的数量在暗度下的20次到112期间,在绿色照明条件下。我们鉴定了许多基因,其表达在黑暗(对照)和每个测试的光变体之间的表达不同,并且对于白色照明条件观察到的最大数量的差异表达基因(DEGS)(454升起457个下调)。该Degs包含参与原发性碳水化合物代谢,氨基酸代谢,自噬,核苷酸修复系统,信号传导途径和类胡萝卜素代谢的那些,如使用Kyoto EncodoMes(Kegg)数据库所定义的。编码木质纤维素降解酶的基因表达谱的分析表明,C.单色的木质降解特性可以与照明条件无关,并且可能是由日光进行真菌代谢的总体刺激。

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