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Fungal Biology|July 19, 2022
Different life strategies in genetic backgrounds of the Saccharomyces cerevisiae yeast cellsRoman Maslanka, Renata Zadrag-TeczaBiogerontology|October 21, 2015
Effect of temperature on replicative aging of the budding yeast Saccharomyces cerevisiaeMateusz Molon, Renata Zadrag-TeczaInternational Journal of Molecular Sciences|October 7, 2020
Reproductive Potential of Yeast Cells Depends on Overall Action of Interconnected Changes in Central Carbon Metabolism, Cellular Biosynthetic Capacity, and ProteostasisRoman Maslanka, Renata Zadrag-TeczaJournal of Cellular Physiology|February 27, 2019
Less is more or more is less: Implications of glucose metabolism in the regulation of the reproductive potential and total lifespan of the Saccharomyces cerevisiae yeastRoman Maslanka, Renata Zadrag-TeczaCells|December 10, 2025
Interplay Between Ribosomal Gene Deficiency and Calorie Restriction in Shaping Yeast Biosynthetic CapacityRoman Maslanka, Renata Zadrag-TeczaActa Biochimica Polonica|December 11, 2014
The rules of aging: are they universal? Is the yeast model relevant for gerontology?Tomasz Bilinski, Renata Zadrag-TeczaActa Biochimica Polonica|March 2, 2016
The links between hypertrophy, reproductive potential and longevity in the Saccharomyces cerevisiae yeastMateusz Molon, Renata Zadrag-TeczaExperimental Gerontology|August 23, 2016
Reproductive potential and instability of the rDNA region of the Saccharomyces cerevisiae yeast: Common or separate mechanisms of regulation?Renata Zadrag-Tecza, Adrianna SkonecznaFEMS Yeast Research|August 27, 2014
Comparison of methods used for assessing the viability and vitality of yeast cellsMagdalena Kwolek-Mirek, Renata Zadrag-TeczaOncotarget|June 17, 2015
Energy excess is the main cause of accelerated aging of mammalsTomasz Biliński, Tadeusz Paszkiewicz, Renata Zadrag-TeczaPageof 4