4.7 Article

Proteogenomics Study of Blastobotrys adeninivorans TMCC 70007-A Dominant Yeast in the Fermentation Process of Pu-erh Tea

期刊

JOURNAL OF PROTEOME RESEARCH
卷 20, 期 6, 页码 3290-3304

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.jproteome.1c00205

关键词

Blastobotrys adeninivorans; genome; Pu-erh tea; proteome; proteogenomics; mass spectrometry

资金

  1. National Key Research and Development Program the MOST [2017YFA0505700, 2016YFA0501300]
  2. Major Science and Technology Projects of Yunnan Province [202002AA100007]
  3. National Natural Science Foundation of China [31160003, 31901037, 31670834, 31870824]
  4. CAMS Innovation Fund for Medical Sciences [2019-I2M-5-017]
  5. National Megaprojects for Key Infectious Diseases [2018ZX10302302]
  6. Unilevel 21th Century Toxicity Program [MA-2018-02170N]

向作者/读者索取更多资源

Blastobotrys adeninivorans plays a crucial role in pile-fermenting of Pu-erh tea, and its genome sequencing revealed a rich proteome. Proteomics analysis provided important information for gene annotation and fermentation processes.
Blastobotrys adeninivorans plays an essential role in pile-fermenting of Pu-erh tea. Its ability to assimilate various carbon and nitrogen sources makes it available for application in a wide range of industry sectors. The genome of B. adeninivorans TMCC 70007 isolated from pile-fermented Pu-erh tea was sequenced and assembled. Proteomics analysis indicated that 4900 proteins in TMCC 70007 were expressed under various culture conditions. Proteogenomics mapping revealed 48 previously unknown genes and corrected 118 gene models predicted by GeneMark-ES. Ortho-proteogenomics analysis identified 17 previously unidentified genes in B. adeninivorans LS3, the first strain with a sequenced genome among the genus Blastobotrys as well. More importantly, five species specific genes were identified from TMCC 70007, which could serve as a barcode for strain typing and were applicable for fermentation process protection of this industrial species. The datasets generated from tea aqueous extract culture not only increased the proteome coverage and accuracy but also contributed to the identification of proteins related to polyphenols and caffeine, which were considered to change greatly during the microbial fermentation of Pu-erh tea. This study provides a proteome perspective on TMCC 70007, which was considered to be an important strain in the production of Pu-erh tea. The systematic proteogenomics analysis not only made a better annotation on the genome of B. adeninivorans TMCC 70007 as previous proteogenomics study but also provided solution for fermentation process protection on valuable industrial species with species specific genes uniquely identified from proteogenomics study.

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