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Autolysis and ageing of Penicillium chrysogenum cultures under carbon starvation: glutathione-metabolism and formation of reactive oxygen species

机译:碳饥饿下产黄青霉菌培养物的自溶和老化:谷胱甘肽代谢和活性氧的形成

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摘要

In submerged carbon-limited autolysing culture of Penicillium chrysogemon, round-ended yeast-like fragments became the dominant surviving morphological forms and a new equilibrium between cell lysis and growth was observed, termed a a phase of 'cryptic growth', The formation of yeast-like fragments and their cryptic growth represented the only way that enabled the fungus to cope with harsh environmental condition and survive. The surviving morphological forms reverted to growth after carbon supplementation. The glutathione metabolism and formation of reactive oxygen species (ROS) were influenced by numerous endogenous and exogenous factors depending on the phase of growth, Consequently, no firm correlation between the redox status, ROS levels and the observed morphological and physiological characteristics of the cells was found. The Dioxygen Avoidance Theory or Cell Differentiation failed to explain the complex physiological changes observed prior to and during autolysis, and any possible intrinsic analogy between the autolysis of P. chrysogenum and the oxidative stress dependent apoptosis of higher eucaryotes was also questioned, Nevertheless, ageing yeast-like fragments accumulated ROS as a function of incubation time and seem to be promising objects for future apoptosis research in filamentous fungi.
机译:在Chicsogemon青霉的碳限制下的自动溶解培养物中,圆形末端的酵母样片段成为主要的存活形态形式,并观察到细胞裂解和生长之间的新平衡,称为“隐性生长”阶段,即酵母-像碎片一样,它们的隐密生长是使真菌能够应对恶劣的环境条件并生存的唯一途径。碳补充后,幸存的形态恢复为生长。谷胱甘肽的代谢和活性氧(ROS)的形成受许多内源性和外源性因素的影响,取决于生长的阶段,因此,氧化还原状态,ROS水平与观察到的细胞形态和生理特性之间没有牢固的相关性。找到了。避免双氧理论或细胞分化未能解释自溶之前和自溶过程中观察到的复杂生理变化,也有人质疑产黄青霉自溶与高等真核生物的氧化应激依赖性细胞凋亡之间的任何内在类比,尽管如此,酵母仍在老化样片段积累的ROS是孵育时间的函数,似乎是未来丝状真菌细胞凋亡研究的有希望的对象。

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