Tianjin Key Laboratory of Animal and Plant Resistance, College of Life Sciences, Tianjin Normal University, Tianjin, 300387, China.
College of Life Science, Northeast Agricultural University, Harbin, 150030, China.
World J Microbiol Biotechnol. 2023 Jul 1;39(9):240. doi: 10.1007/s11274-023-03674-5.
Microbial shikimic acid is an important intermediate metabolite in the synthesis of aromatic amino acids which are precursors for forming humus during composting process. Generally, the pathways producing shikimic acid and its downstream products are collectively referred as shikimic acid pathway (SKP). Microbial SKP can produce phenols, and tyrosine. Pyrogallol is the precursor of phenols. And, tyrosine can form an ammoniated monomer. Therefore, regulation of SKP can promote shikimic acid production, which is beneficial in promoting humus production and humification. However, SKP present in microbial cells is distinctive because of providing precursors for humification process, which needs to be recognized during composting. Due to the different structures of various organic wastes, it is difficult to control the SKP efficiency and shikimic acid production. Therefore, it is valuable to review the synthesis of shikimic acid by microorganisms and propose how to promote SKP during different materials composting. Furthermore, we have attempted to illustrate the application of metabolites from SKP in forming humus during organic waste composting. Finally, a series of regulating methods has been outlined to enhance microbial SKP, which are effective to promote humus aromatization and to improve humus formation during different materials composting.
微生物的莽草酸是芳香族氨基酸合成过程中的重要中间代谢物,而芳香族氨基酸是堆肥过程中腐殖质形成的前体。通常,产生莽草酸及其下游产物的途径被统称为莽草酸途径(SKP)。微生物 SKP 可以产生酚类和酪氨酸。焦儿茶酚是酚类的前体,而酪氨酸可以形成氨化单体。因此,SKP 的调节可以促进莽草酸的产生,这有利于促进腐殖质的产生和腐殖化。然而,微生物细胞中的 SKP 是独特的,因为它为腐殖化过程提供了前体,这在堆肥过程中需要被识别。由于各种有机废物的结构不同,难以控制 SKP 效率和莽草酸的产生。因此,综述微生物合成莽草酸的方法,并提出在不同材料堆肥中如何促进 SKP 的方法具有重要意义。此外,我们还尝试阐述了 SKP 代谢物在有机废物堆肥过程中形成腐殖质的应用。最后,概述了一系列增强微生物 SKP 的调节方法,这些方法可有效促进腐殖质的芳构化,提高不同材料堆肥过程中腐殖质的形成。