4.6 Article

From a genome assembly to full regulatory network prediction: the case study of Rhodotorula toruloides putative Haa1-regulon

期刊

BMC BIOINFORMATICS
卷 22, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s12859-021-04312-3

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资金

  1. national funds through Fundacao para a Ciencia e a Tecnologia (FCT) [UIDB/50021/2020, UIDB/04565/2020, UIDP/04565/2020, LA/P/0140/2020, PTDC/BII-BIO/28216/2017, PD/BD/142944/2018]
  2. Programa Operacional Regional de Lisboa [LISBOA-01-0145-FEDER-022231]
  3. Fundação para a Ciência e a Tecnologia [PTDC/BII-BIO/28216/2017, PD/BD/142944/2018, UIDP/04565/2020, UIDB/04565/2020] Funding Source: FCT

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The article introduces a new method to download and organize genome information from NCBI in GenBank format with a set of simple commands. This method allows comparison of new genomes with reference genomes to find homologous genes and predict transcription associations. The tool is demonstrated to be useful in analyzing the genome of the oleaginous red yeast species Rhodotorula toruloides, highlighting its potential impact on optimizing yeast robustness for industrial bioconversion processes.
Numerous genomes are sequenced and made available to the community through the NCBI portal. However, and, unlike what happens for gene function annotation, annotation of promoter sequences and the underlying prediction of regulatory associations is mostly unavailable, severely limiting the ability to interpret genome sequences in a functional genomics perspective. Here we present an approach where one can download a genome of interest from NCBI in the GenBank Flat File (.gbff) format and, with a minimum set of commands, have all the information parsed, organized and made available through the platform web interface. Also, the new genomes are compared with a given genome of reference in search of homologous genes, shared regulatory elements and predicted transcription associations. We present this approach within the context of Community YEASTRACT of the YEASTRACT + portal, thus benefiting from immediate access to all the comparative genomics queries offered in the YEASTRACT + portal. Besides the yeast community, other communities can install the platform independently, without any constraints. In this work, we exemplify the usefulness of the presented tool, within Community YEASTRACT, in constructing a dedicated database and analysing the genome of the highly promising oleaginous red yeast species Rhodotorula toruloides currently poorly studied at the genome and transcriptome levels and with limited genome editing tools. Regulatory prediction is based on the conservation of promoter sequences and available regulatory networks. The case-study examined is focused on the Haa1 transcription factor-a key regulator of yeast resistance to acetic acid, an important inhibitor of industrial bioconversion of lignocellulosic hydrolysates. The new tool described here led to the prediction of a RtHaa1 regulon with expected impact in the optimization of R. toruloides robustness for lignocellulosic and pectin-rich residue biorefinery processes.

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