Key Laboratory of High Magnetic Field and Ion Beam Bioengineering, Hefei Institutes of Physical Science, Chinese Academy of Sciences, Hefei, 230031, Anhui, People's Republic of China.
University of Science and Technology of China, Hefei, 230026, Anhui, People's Republic of China.
Bioprocess Biosyst Eng. 2018 Jul;41(7):1029-1038. doi: 10.1007/s00449-018-1932-1. Epub 2018 Apr 2.
The mycelial morphology of Aspergillus niger, a major filamentous fungus used for citric acid production, is important for citric acid synthesis during submerged fermentation. To investigate the involvement of the chitin synthase gene, chsC, in morphogenesis and citric acid production in A. niger, an RNAi system was constructed to silence chsC and the morphological mutants were screened after transformation. The compactness of the mycelial pellets was obviously reduced in the morphological mutants, with lower proportion of dispersed mycelia. These morphological changes have caused a decrease in viscosity and subsequent improvement in oxygen and mass transfer efficiency, which may be conducive for citric acid accumulation. All the transformants exhibited improvements in citric acid production; in particular, chsC-3 showed 42.6% higher production than the original strain in the shake flask. Moreover, the high-yield strain chsC-3 exhibited excellent citric acid production potential in the scale-up process.The citric acid yield and the conversion rate of glucose of chsC-3 were both improved by 3.6%, when compared with that of the original strain in the stirred tank bioreactor.
黑曲霉是一种重要的丝状真菌,用于柠檬酸生产,其菌丝形态对于液体发酵中柠檬酸的合成非常重要。为了研究几丁质合成酶基因 chsC 在黑曲霉形态发生和柠檬酸生产中的作用,构建了 RNAi 系统以沉默 chsC,并在转化后筛选形态突变体。在形态突变体中,菌丝球的紧密性明显降低,分散的菌丝比例降低。这些形态变化导致了黏度降低,随后改善了氧气和质量传递效率,这可能有利于柠檬酸的积累。所有转化子的柠檬酸产量都有所提高;特别是,chsC-3 的产量比原始菌株在摇瓶中提高了 42.6%。此外,高产菌株 chsC-3 在放大过程中表现出优异的柠檬酸生产潜力。与搅拌槽生物反应器中的原始菌株相比,chsC-3 的柠檬酸产量和葡萄糖转化率均提高了 3.6%。