Universidad de Buenos Aires, Facultad de Agronomía, Cátedra de Bioquímica, Buenos Aires C1417DSE, Argentina.
CONICET-Universidad de Buenos Aires, Instituto de Investigaciones en Biociencias Agrícolas y Ambientales (INBA), Buenos Aires C1417DSE, Argentina.
Lett Appl Microbiol. 2023 Oct 4;76(10). doi: 10.1093/lambio/ovad117.
In this study, the biochemical basis of resistance to slow freezing and thawing (F-T) stress was explored in two baker yeast industrial strains of Saccharomyces cerevisiae that presented differential tolerance to freezing in order to be in the frozen bakery industry. Strain Y8, used commercially in sweet baking doughs, exhibited greater stress tolerance than Y9, a strain employed in regular doughs. Survival of Y8 was higher than that of Y9 (30% vs 12%) after F-T or other reactive oxygen species (ROS) inducing stresses compared to their non-stressed controls. The superior F-T tolerance of Y8 was related to its lower ROS accumulation capacity, determined by fluorometry in cell-free extracts and in vivo, by fluorescence microscopy upon F-T, being Y8 ROS accumulation 2-fold lower than that of Y9. That, in turn, could be positively associated with Y8's higher constitutive activities of cytosolic catalase (CAT) and superoxide dismutase by a significant activation (25%) of Y8 CAT after F-T. That would complement the protective effects of other protectant molecules like trehalose, present at high concentration in this strain.
在这项研究中,探索了两种用于烘焙工业的酿酒酵母工业菌株对缓慢冷冻和解冻(F-T)应激的抗性的生化基础,这两种菌株对冷冻具有不同的耐受性,以便用于冷冻烘焙行业。在甜面团中商业使用的菌株 Y8 比在普通面团中使用的菌株 Y9 表现出更高的应激耐受性。与非应激对照相比,Y8 在 F-T 或其他活性氧(ROS)诱导应激后的存活率高于 Y9(30%对 12%)。Y8 的较高 F-T 耐受性与其较低的 ROS 积累能力有关,这是通过细胞游离提取物和体内荧光显微镜在 F-T 时的荧光法确定的,Y8 的 ROS 积累比 Y9 低 2 倍。反过来,这可能与 Y8 的细胞质过氧化氢酶(CAT)和超氧化物歧化酶的组成性活性较高有关,在 F-T 后 Y8 CAT 的活性显著增加(25%)。这将补充其他保护分子如海藻糖的保护作用,该分子在该菌株中高浓度存在。