TY - CHAP
T1 - Pichia pastoris RNA-Sequencing and Data Analysis
AU - Krappinger, Julian Christopher
AU - Radkohl, Astrid
AU - Schusterbauer, Veronika
AU - Emmerstorfer-Augustin, Anita
AU - Feichtinger, Julia
N1 - Publisher Copyright:
© The Author(s), under exclusive license to Springer Science+Business Media, LLC, part of Springer Nature 2026.
PY - 2026
Y1 - 2026
N2 - RNA sequencing (RNA-seq) allows for transcriptome profiling, usually with the goal of comparing the gene expression between conditions of interest. Transcriptome profiling helped to understand and improve the use of microbes in industrial processes, as exemplified numerous times for the biotechnologically relevant yeast Komagataella phaffii. A typical RNA-seq experiment begins with (a) experimental design, (b) RNA extraction, and (c) library preparation and sequencing and continues with its data analysis, including (d) quality control and preprocessing, (e) alignment, (f) quantification, and (g) differential gene expression analysis. In particular, experimental design should be considered carefully, while RNA extraction is relatively straightforward, and library preparation and sequencing are commonly purchased as a service. RNA-seq data analysis can be carried out in a number of ways and comprises a sequence of steps with many aspects to consider. Here, we provide a protocol for RNA extraction, a summary of aspects to consider for experimental design, library preparation, and sequencing, as well as the basics of a data analysis workflow.
AB - RNA sequencing (RNA-seq) allows for transcriptome profiling, usually with the goal of comparing the gene expression between conditions of interest. Transcriptome profiling helped to understand and improve the use of microbes in industrial processes, as exemplified numerous times for the biotechnologically relevant yeast Komagataella phaffii. A typical RNA-seq experiment begins with (a) experimental design, (b) RNA extraction, and (c) library preparation and sequencing and continues with its data analysis, including (d) quality control and preprocessing, (e) alignment, (f) quantification, and (g) differential gene expression analysis. In particular, experimental design should be considered carefully, while RNA extraction is relatively straightforward, and library preparation and sequencing are commonly purchased as a service. RNA-seq data analysis can be carried out in a number of ways and comprises a sequence of steps with many aspects to consider. Here, we provide a protocol for RNA extraction, a summary of aspects to consider for experimental design, library preparation, and sequencing, as well as the basics of a data analysis workflow.
KW - Data analysis
KW - Komagataella phaffii
KW - Pichia pastoris
KW - RNA extraction
KW - RNA-sequencing
UR - https://www.scopus.com/pages/publications/105017588079
U2 - 10.1007/978-1-0716-4779-0_4
DO - 10.1007/978-1-0716-4779-0_4
M3 - Chapter
C2 - 41028455
AN - SCOPUS:105017588079
T3 - Methods in Molecular Biology
SP - 55
EP - 75
BT - Methods in Molecular Biology
PB - Humana
ER -