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Refined Pichia pastoris reference genome sequence

期刊

JOURNAL OF BIOTECHNOLOGY
卷 235, 期 -, 页码 121-131

出版社

ELSEVIER
DOI: 10.1016/j.jbiotec.2016.04.023

关键词

P. pastoris; Genome; Splicing; Killer plasmid; Centromere; RNA-seq

资金

  1. Innovative Medicines Initiative Joint Undertaking project CHEM21 [115360]
  2. European Union's Seventh Framework Program
  3. Federal Ministry of Science, Research and Economy (BMWFW)
  4. Federal Ministry of Traffic, Innovation and Technology (bmvit)
  5. Styrian Business Promotion Agency SFG
  6. Standortagentur Tirol
  7. Government of Lower Austria
  8. ZIT Technology Agency of the City of Vienna through COMET-Funding Program
  9. NIH [R01 GM104010]
  10. NIH training grant [T32 GM007183]
  11. Austrian Science Fund (FWF) [W 901] Funding Source: researchfish

向作者/读者索取更多资源

Strains of the species Komagataella phaffii are the most frequently used Pichia pastoris strains employed for recombinant protein production as well as studies on peroxisome biogenesis, autophagy and secretory pathway analyses. Genome sequencing of several different P. pastoris strains has provided the foundation for understanding these cellular functions in recent genomics, transcriptomics and proteomics experiments. This experimentation has identified mistakes, gaps and incorrectly annotated open reading frames in the previously published draft genome sequences. Here, a refined reference genome is presented, generated with genome and transcriptome sequencing data from multiple P. pastoris strains. Twelve major sequence gaps from 20 to 6000 base pairs were closed and 5111 out of 5256 putative open reading frames were manually curated and confirmed by RNA-seq and published LC-MS/MS data, including the addition of new open reading frames (ORFs) and a reduction in the number of spliced genes from 797 to 571. One chromosomal fragment of 76 kbp between two previous gaps on chromosome 1 and another 134 kbp fragment at the end of chromosome 4, as well as several shorter fragments needed re-orientation. In total more than 500 positions in the genome have been corrected. This reference genome is presented with new chromosomal numbering, positioning ribosomal repeats at the distal ends of the four chromosomes, and includes predicted chromosomal centromeres as well as the sequence of two linear cytoplasmic plasmids of 13.1 and 9.5 kbp found in some strains of P. pastoris. (C) 2016 Published by Elsevier B.V.

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