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Laccase Production and Differential Transcription of Laccase Genes in Cerrena sp. in Response to Metal Ions, Aromatic Compounds, and Nutrients

机译:Cerrena sp。中漆酶的产生和漆酶基因的差异转录。对金属离子,芳香族化合物和营养物质的响应

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摘要

Laccases can oxidize a wide range of aromatic compounds and are industrially valuable. Laccases often exist in gene families and may differ from each other in expression and function. Quantitative real-time polymerase chain reaction (qPCR) was used for transcription profiling of eight laccase genes in Cerrena sp. strain HYB07 with validated reference genes. A high laccase activity of 280.0 U/mL was obtained after submerged fermentation for 5 days. Laccase production and laccase gene transcription at different fermentation stages and in response to various environmental cues were revealed. HYB07 laccase activity correlated with transcription levels of its predominantly expressed laccase gene, Lac7. Cu2+ ions were indispensable for efficient laccase production by HYB07, mainly through Lac7 transcription induction, and no aromatic compounds were needed. HYB07 laccase synthesis and biomass accumulation were highest with non-limiting carbon and nitrogen. Glycerol and inorganic nitrogen sources adversely impacted Lac7 transcription, laccase yields, and fungal growth. The present study would further our understanding of transcription regulation of laccase genes, which may in turn facilitate laccase production as well as elucidation of their physiological roles.
机译:漆酶可氧化多种芳族化合物,具有工业价值。漆酶通常存在于基因家族中,并且在表达和功能上可能彼此不同。实时定量聚合酶链反应(qPCR)用于Cerrena sp。中8个漆酶基因的转录谱分析。菌株HYB07具有经过验证的参考基因。深水发酵5天后获得高漆酶活性280.0 U / mL。揭示了在不同发酵阶段并响应于各种环境提示的漆酶生产和漆酶基因转录。 HYB07漆酶活性与其主要表达的漆酶基因Lac7的转录水平相关。 Cu 2 + 离子对于HYB07高效产生漆酶是必不可少的,主要是通过Lac7转录诱导,并且不需要芳香族化合物。在非限制性碳和氮条件下,HYB07漆酶的合成和生物量积累最高。甘油和无机氮源对Lac7转录,漆酶产量和真菌生长产生不利影响。本研究将进一步增进我们对漆酶基因转录调控的理解,这反过来可能有助于漆酶生产以及阐明其生理作用。

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