Quantitative phenotypic analysis of multistress response in Zygosaccharomyces rouxii complex

Abstract Zygosaccharomyces rouxii complex comprises three yeasts clusters sourced from sugar‐ and salt‐rich environments: haploid Zygosaccharomyces rouxii, diploid Zygosaccharomyces sapae and allodiploid/aneuploid strains of uncertain taxonomic affiliations. These yeasts have been characterized with respect to gene copy number variation, karyotype variability and change in ploidy, but functional diversity in stress responses has not been explored yet. Here, we quantitatively analysed the stress response variation in seven strains of the Z. rouxii complex by modelling growth variables via model and model‐free fitting methods. Based on the spline fit as most reliable modelling method, we resolved different interstrain responses to 15 environmental perturbations. Compared with Z. rouxii CBS 732T and Z. sapae strains ABT301T and ABT601, allodiploid strain ATCC 42981 and aneuploid strains CBS 4837 and CBS 4838 displayed higher multistress resistance and better performance in glycerol respiration even in the presence of copper. μ‐based logarithmic phenotypic index highlighted that ABT601 is a slow‐growing strain insensitive to stress, whereas ABT301T grows fast on rich medium and is sensitive to suboptimal conditions. Overall, the differences in stress response could imply different adaptation mechanisms to sugar‐ and salt‐rich niches. The obtained phenotypic profiling contributes to provide quantitative insights for elucidating the adaptive mechanisms to stress i...
Source: FEMS Yeast Research - Category: Research Authors: Tags: Research Article Source Type: research