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光信号传导机制对里氏木霉(嗜热毁丝霉)中纤维素酶表达的相关性

Relevance of the light signaling machinery for cellulase expression in Trichoderma reesei (Hypocrea jecorina).

作者信息

Gyalai-Korpos Miklós, Nagy Gáspár, Mareczky Zoltán, Schuster André, Réczey Kati, Schmoll Monika

机构信息

Vienna University of Technology, Research Area Gene Technology and Applied Biochemistry, 1060 Wien, Gumpendorfer Strasse 1a/1665, Austria.

出版信息

BMC Res Notes. 2010 Dec 7;3:330. doi: 10.1186/1756-0500-3-330.

Abstract

BACKGROUND

In nature, light is one of the most important environmental cues that fungi perceive and interpret. It is known not only to influence growth and conidiation, but also cellulase gene expression. We therefore studied the relevance of the main components of the light perception machinery of Trichoderma reesei (Hypocrea jecorina), ENV1, BLR1 and BLR2, for production of plant cell wall degrading enzymes in fermentations aimed at efficient biosynthesis of enzyme mixtures for biofuel production.

FINDINGS

Our results indicate that despite cultivation in mostly dark conditions, all three components show an influence on cellulase expression. While we found the performance of the enzyme mixture secreted by a deletion mutant in env1 to be enhanced, the higher cellulolytic activity observed for Δblr2 is mainly due to an increased secretion capacity of this strain. Δblr1 showed enhanced biomass accumulation, but due to its obviously lower secretion capacity still was the least efficient strain in this study.

CONCLUSIONS

We conclude that with respect to regulation of plant cell wall degrading enzymes, the blue light regulator proteins are unlikely to act as a complex. Their regulatory influence on cellulase biosynthesis involves an alteration of protein secretion, which may be due to adjustment of transcription or posttranscriptional regulation of upstream factors. In contrast, the regulatory function of ENV1 seems to involve adjustment of enzyme proportions to environmental conditions.

摘要

背景

在自然界中,光是真菌感知和解读的最重要环境信号之一。已知光不仅会影响生长和分生孢子形成,还会影响纤维素酶基因的表达。因此,我们研究了里氏木霉(又称嗜热毁丝霉)光感知机制的主要成分ENV1、BLR1和BLR2,在旨在高效生物合成用于生物燃料生产的酶混合物的发酵过程中,对植物细胞壁降解酶产生的相关性。

研究结果

我们的结果表明,尽管在大多黑暗条件下培养,但所有这三种成分都对纤维素酶表达有影响。虽然我们发现env1缺失突变体分泌的酶混合物性能有所提高,但观察到Δblr2具有更高的纤维素分解活性,主要是由于该菌株分泌能力增强。Δblr1显示出生物量积累增加,但由于其分泌能力明显较低,仍是本研究中效率最低的菌株。

结论

我们得出结论,就植物细胞壁降解酶的调控而言,蓝光调节蛋白不太可能作为一个复合体发挥作用。它们对纤维素酶生物合成的调节影响涉及蛋白质分泌的改变,这可能是由于上游因子转录或转录后调控的调整。相比之下,ENV1的调节功能似乎涉及根据环境条件调整酶的比例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b666/3016267/223fa5b11c03/1756-0500-3-330-1.jpg

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