酵母在不同碳源中的突变率反映了活性氧的影响。

microPublication biology Pub Date : 2025-02-19 eCollection Date: 2025-01-01 DOI:10.17912/micropub.biology.001429
Keerthana Thota, Jacob D Fredette-Roman, Nathaniel P Sharp
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引用次数: 0

摘要

环境条件可以影响突变率,但原因往往不清楚。出芽酵母可以利用许多碳源,在不同程度的发酵与呼吸作用。由于有氧呼吸产生诱变活性氧,我们假设在促进有氧呼吸的培养基中生长的酵母会表现出更高的突变率。我们发现五种培养基类型之间存在显著差异,丙酮酸的突变率最高,葡萄糖的突变率最低。然而,突变率以非线性方式响应呼吸速率,这表明在给定环境中的呼吸程度只能部分预测突变率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Yeast mutation rates in alternative carbon sources reflect the influence of reactive oxygen species.

Environmental conditions can influence mutation rates, but the reasons are often unclear. Budding yeast can utilize many carbon sources, with variation in the degree of fermentation versus respiration. Since aerobic respiration produces mutagenic reactive oxygen species, we hypothesized that yeast grown in media promoting aerobic respiration would show higher mutation rates. We found significant differences across five media types, with the highest mutation rate in pyruvate and the lowest in glucose. However, mutation rates responded to respiration rate in a nonlinear fashion, suggesting that the degree of respiration in a given environment is only partly predictive of mutation rate.

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