1.Construction and structural analysis of integrated cellular network of Corynebacterium glutamicum.
Jinguo JIANG ; Lifu SONG ; Ping ZHENG ; Shiru JIA ; Jibin SUN
Chinese Journal of Biotechnology 2012;28(5):577-591
Corynebacterium glutamicum is one of the most important traditional industrial microorganisms and receiving more and more attention towards a novel cellular factory due to the recently rapid development in genomics and genetic operation toolboxes for Corynebacterium. However, compared to other model organisms such as Escherichia coli, there were few studies on its metabolic regulation, especially a genome-scale integrated cellular network model currently missing for Corynebacterium, which hindered the systematic study of Corynebacterium glutamicum and large-scale rational design and optimization for strains. Here, by gathering relevant information from a number of public databases, we successfully constructed an integrated cellular network, which was composed of 1384 reactions, 1276 metabolites, 88 transcriptional factors and 999 pairs of transcriptional regulatory relationships. The transcriptional regulatory sub-network could be arranged into five layers and the metabolic sub-network presented a clear bow-tie structure. We proposed a new method to extract complex metabolic and regulatory sub-network for product-orientated study taking lysine biosynthesis as an example. The metabolic and regulatory sub-network extracted by our method was more close to the real functional network than the simplex biochemical pathways. The results would be greatly helpful for understanding the high-yielding biomechanism for amino acids and the re-design of the industrial strains.
Corynebacterium glutamicum
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genetics
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metabolism
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Gene Expression Regulation, Bacterial
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Gene Regulatory Networks
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genetics
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Lysine
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biosynthesis
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Metabolic Networks and Pathways
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genetics
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Transcription Factors
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genetics
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Transcription, Genetic
2.A novel biological sources consistency evaluation method reveals high level of biodiversity within wild natural medicine: A case study of Amynthas earthworms as "Guang Dilong".
Zhimei XING ; Han GAO ; Dan WANG ; Ye SHANG ; Tenukeguli TULIEBIEKE ; Jibao JIANG ; Chunxiao LI ; Hong WANG ; Zhenguo LI ; Lifu JIA ; Yongsheng WU ; Dandan WANG ; Wenzhi YANG ; Yanxu CHANG ; Xiaoying ZHANG ; Liuwei XU ; Chao JIANG ; Luqi HUANG ; Xiaoxuan TIAN
Acta Pharmaceutica Sinica B 2023;13(4):1755-1770
For wild natural medicine, unanticipated biodiversity as species or varieties with similar morphological characteristics and sympatric distribution may co-exist in a single batch of medical materials, which affects the efficacy and safety of clinical medication. DNA barcoding as an effective species identification tool is limited by its low sample throughput nature. In this study, combining DNA mini-barcode, DNA metabarcoding and species delimitation method, a novel biological sources consistency evaluation strategy was proposed, and high level of interspecific and intraspecific variations were observed and validated among 5376 Amynthas samples from 19 sampling points regarded as "Guang Dilong" and 25 batches of proprietary Chinese medicines. Besides Amynthas aspergillum as the authentic source, 8 other Molecular Operational Taxonomic Units (MOTUs) were elucidated. Significantly, even the subgroups within A. aspergillum revealed here differ significantly on chemical compositions and biological activity. Fortunately, this biodiversity could be controlled when the collection was limited to designated areas, as proved by 2796 "decoction pieces" samples. This batch biological identification method should be introduced as a novel concept regarding natural medicine quality control, and to offer guidelines for in-situ conservation and breeding bases construction of wild natural medicine.