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Comparative genomics and transcriptome analysis of Aspergillus niger and metabolic engineering for citrate production

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논문

Comparative genomics and transcriptome analysis of Aspergillus niger and metabolic engineering for citrate production

학술지

Scientific reports

저자명

Yin, Xian; Shin, Hyun-dong; Li, Jianghua; Du, Guocheng; Liu, Long; Chen, Jian

초록

<P>Despite a long and successful history of citrate production in <I>Aspergillus niger</I>, the molecular mechanism of citrate accumulation is only partially understood. In this study, we used comparative genomics and transcriptome analysis of citrate-producing strains&#x2014;namely, <I>A. niger</I> H915-1 (citrate titer: 157 g L<SUP>&#x2212;1</SUP>), A1 (117 g L<SUP>&#x2212;1</SUP>), and L2 (76 g L<SUP>&#x2212;1</SUP>)&#x2014;to gain a genome-wide view of the mechanism of citrate accumulation. Compared with <I>A. niger</I> A1 and L2, <I>A. niger</I> H915-1 contained 92 mutated genes, including a succinate-semialdehyde dehydrogenase in the &gamma;-aminobutyric acid shunt pathway and an aconitase family protein involved in citrate synthesis. Furthermore, transcriptome analysis of <I>A. niger</I> H915-1 revealed that the transcription levels of 479 genes changed between the cell growth stage (6 h) and the citrate synthesis stage (12 h, 24 h, 36 h, and 48 h). In the glycolysis pathway, triosephosphate isomerase was up-regulated, whereas pyruvate kinase was down-regulated. Two cytosol ATP-citrate lyases, which take part in the cycle of citrate synthesis, were up-regulated, and may coordinate with the alternative oxidases in the alternative respiratory pathway for energy balance. Finally, deletion of the oxaloacetate acetylhydrolase gene in H915-1 eliminated oxalate formation but neither influence on pH decrease nor difference in citrate production were observed.</P>

발행연도

2017

발행기관

Nature Publishing Group

라이선스

cc-by

ISSN

2045-2322

7

페이지

pp.41040

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논문; 2017-01-20

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