González Tania, Terrón María C, Zapico Ernesto J, Téllez Alejandro, Yagüe Susana, Carbajo José M, González Aldo E
Centro de Investigaciones Biológicas, E-28040 Madrid, Spain.
Appl Environ Microbiol. 2003 Dec;69(12):7083-90. doi: 10.1128/AEM.69.12.7083-7090.2003.
Laccases produced by white rot fungi are involved in the degradation of lignin and a broad diversity of other natural and synthetic molecules, having a great potential for biotechnological applications. They are frequently encoded by gene families, as in the basidiomycete Trametes sp. strain I-62, from which the lcc1, lcc2, and lcc3 laccase genes have been cloned and sequenced. A multiplex reverse transcription-PCR method to simultaneously study the expression of these genes was developed in this study. The assay proved to be quick, simple, highly sensitive, and reproducible and is particularly valuable when numerous samples are to be analyzed and/or if the amount of initial mRNA is limited. It was used to analyze the effect of 3,4-dimethoxybenzyl alcohol (veratryl alcohol) and two of its isomers (2,5-dimethoxybenzyl alcohol and 3,5-dimethoxybenzyl alcohol) on differential laccase gene expression in Trametes sp. strain I-62. These aromatic compounds produced different induction patterns despite their chemical similarity. We found 2,5-dimethoxybenzyl alcohol to be the best inducer of laccase activity while also producing the highest increase in gene expression; 3,5-dimethoxybenzyl alcohol was the next best inducer. Transcript amounts of each gene fluctuated dramatically in the presence of these three inducers, while the total amounts of laccase mRNAs seemed to be modulated by a coordinated regulation of the different genes.
白腐真菌产生的漆酶参与木质素以及多种其他天然和合成分子的降解,在生物技术应用方面具有巨大潜力。它们通常由基因家族编码,如在担子菌Trametes sp.菌株I-62中,其漆酶基因lcc1、lcc2和lcc3已被克隆和测序。本研究开发了一种多重逆转录-PCR方法,用于同时研究这些基因的表达。该检测方法被证明快速、简单、高度灵敏且可重复,当需要分析大量样本和/或初始mRNA量有限时,该方法尤为有价值。它被用于分析3,4-二甲氧基苄醇(藜芦醇)及其两种异构体(2,5-二甲氧基苄醇和3,5-二甲氧基苄醇)对Trametes sp.菌株I-62中漆酶基因差异表达的影响。尽管这些芳香化合物化学结构相似,但它们产生了不同的诱导模式。我们发现2,5-二甲氧基苄醇是漆酶活性的最佳诱导剂,同时在基因表达上也有最高的增加;3,5-二甲氧基苄醇是次佳诱导剂。在这三种诱导剂存在的情况下,每个基因的转录本量都有显著波动,而漆酶mRNA的总量似乎受到不同基因协同调控的调节。