Jiangxi Provincial Key Laboratory of Systems Biomedicine, Jiujiang University, 17 Lufeng Road, Jiujiang, 332000, China.
National-Local Joint Engineering Research Center for Biomass Refining and High-Quality Utilization, Changzhou University, Changzhou, 213164, China.
Bioprocess Biosyst Eng. 2022 Aug;45(8):1319-1329. doi: 10.1007/s00449-022-02747-3. Epub 2022 Jul 3.
Kinases modulate the various physiological activities of microbial fermenting strains including the conversion of lignocellulose-derived phenolic aldehydes (4-hydroxyaldehyde, vanillin, and syringaldehyde). Here, we comprehensively investigated the gene transcriptional profiling of the kinases under the stress of phenolic aldehydes for ethanologenic Zymomonas mobilis using DNA microarray. Among 47 kinase genes, three genes of ZMO0003 (adenylylsulfate kinase), ZMO1162 (histidine kinase), and ZMO1391 (diacylglycerol kinase), were differentially expressed against 4-hydroxybenzaldehyde and vanillin, in which the overexpression of ZMO1162 promoted the phenolic aldehydes conversion and ethanol fermentability. The perturbance originated from plasmid-based expression of ZMO1162 gene contributed to a unique expression profiling of genome-encoding genes under all three phenolic aldehydes stress. Differentially expressed ribosome genes were predicted as one of the main contributors to phenolic aldehydes conversion and thus finally enhanced ethanol fermentability for Z. mobilis ZM4. The results provided an insight into the kinases on regulation of phenolic aldehydes conversion and ethanol fermentability for Z. mobilis ZM4, as well as the target object for rational design of robust biorefinery strains.
激酶调节微生物发酵菌株的各种生理活性,包括木质纤维素衍生酚醛(4-羟基醛、香草醛和丁香醛)的转化。在这里,我们使用 DNA 微阵列全面研究了酚醛醛压力下乙醇生成的运动发酵单胞菌中激酶的基因转录谱。在 47 个激酶基因中,ZMO0003(腺苷酸硫酸激酶)、ZMO1162(组氨酸激酶)和 ZMO1391(二酰基甘油激酶)的三个基因对 4-羟基苯甲醛和香草醛表现出差异表达,其中 ZMO1162 的过表达促进了酚醛醛的转化和乙醇发酵能力。基于质粒的 ZMO1162 基因表达的扰动导致了在所有三种酚醛醛胁迫下基因组编码基因的独特表达谱。差异表达的核糖体基因被预测为酚醛醛转化的主要贡献者之一,从而最终提高了 ZM4 运动发酵单胞菌的乙醇发酵能力。这些结果为运动发酵单胞菌 ZM4 中酚醛醛转化和乙醇发酵能力的激酶调节提供了深入了解,也为合理设计稳健的生物炼制菌株提供了目标对象。