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通过系统遗传学在工业宿主黑曲霉中鉴定一个经典突变体:LaeA是柠檬酸生产所必需的,并调节一些次级代谢产物的形成。

Identification of a Classical Mutant in the Industrial Host Aspergillus niger by Systems Genetics: LaeA Is Required for Citric Acid Production and Regulates the Formation of Some Secondary Metabolites.

作者信息

Niu Jing, Arentshorst Mark, Nair P Deepa S, Dai Ziyu, Baker Scott E, Frisvad Jens C, Nielsen Kristian F, Punt Peter J, Ram Arthur F J

机构信息

Molecular Microbiology and Biotechnology, Institute of Biology Leiden, Leiden University, 2333 BE, Leiden, The Netherlands.

Chemical and Biological Process Development Group, Pacific Northwest National Laboratory, Richland, Washington 99352.

出版信息

G3 (Bethesda). 2015 Nov 13;6(1):193-204. doi: 10.1534/g3.115.024067.

Abstract

The asexual filamentous fungus Aspergillus niger is an important industrial cell factory for citric acid production. In this study, we genetically characterized a UV-generated A. niger mutant that was originally isolated as a nonacidifying mutant, which is a desirable trait for industrial enzyme production. Physiological analysis showed that this mutant did not secrete large amounts of citric acid and oxalic acid, thus explaining the nonacidifying phenotype. As traditional complementation approaches to characterize the mutant genotype were unsuccessful, we used bulk segregant analysis in combination with high-throughput genome sequencing to identify the mutation responsible for the nonacidifying phenotype. Since A. niger has no sexual cycle, parasexual genetics was used to generate haploid segregants derived from diploids by loss of whole chromosomes. We found that the nonacidifying phenotype was caused by a point mutation in the laeA gene. LaeA encodes a putative methyltransferase-domain protein, which we show here to be required for citric acid production in an A. niger lab strain (N402) and in other citric acid production strains. The unexpected link between LaeA and citric acid production could provide new insights into the transcriptional control mechanisms related to citric acid production in A. niger. Interestingly, the secondary metabolite profile of a ΔlaeA strain differed from the wild-type strain, showing both decreased and increased metabolite levels, indicating that LaeA is also involved in regulating the production of secondary metabolites. Finally, we show that our systems genetics approach is a powerful tool to identify trait mutations.

摘要

无性丝状真菌黑曲霉是柠檬酸生产的重要工业细胞工厂。在本研究中,我们对一个紫外线诱导产生的黑曲霉突变体进行了基因特征分析,该突变体最初作为非酸化突变体分离得到,这一特性对于工业酶生产来说是一个理想性状。生理分析表明,该突变体不分泌大量的柠檬酸和草酸,从而解释了其非酸化表型。由于传统的用于鉴定突变体基因型的互补方法未成功,我们结合高通量基因组测序使用群体分离分析法来鉴定导致非酸化表型的突变。由于黑曲霉没有有性生殖周期,因此利用准性遗传学通过整条染色体的丢失从二倍体产生单倍体分离株。我们发现非酸化表型是由laeA基因中的一个点突变引起的。LaeA编码一种假定的甲基转移酶结构域蛋白,我们在此表明该蛋白对于黑曲霉实验室菌株(N402)及其他柠檬酸生产菌株中的柠檬酸生产是必需的。LaeA与柠檬酸生产之间意外的联系可能为黑曲霉中与柠檬酸生产相关的转录调控机制提供新的见解。有趣的是,ΔlaeA菌株的次生代谢产物谱与野生型菌株不同,显示出代谢产物水平既有降低也有升高,这表明LaeA也参与调控次生代谢产物的产生。最后,我们表明我们的系统遗传学方法是鉴定性状突变的有力工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/01c0/4704718/cf29cf1b1906/193f1.jpg

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