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Slow Adaptive Response of Budding Yeast Cells to Stable Conditions of Continuous Culture Can Occur without Genome Modifications

机译:萌芽酵母细胞对连续培养稳定条件的缓慢的自适应响应可以在没有基因组修饰的情况下发生

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摘要

Continuous cultures assure the invariability of environmental conditions and the metabolic state of cultured microorganisms, whereas batch-cultured cells undergo constant changes in nutrients availability. For that reason, continuous culture is sometimes employed in the whole transcriptome, whole proteome, or whole metabolome studies. However, the typical method for establishing uniform growth of a cell population, i.e., by limited chemostat, results in the enrichment of the cell population gene pool with mutations adaptive for starvation conditions. These adaptive changes can skew the results of large-scale studies. It is commonly assumed that these adaptations reflect changes in the genome, and this assumption has been confirmed experimentally in rare cases. Here we show that in a population of budding yeast cells grown for over 200 generations in continuous culture in non-limiting minimal medium and therefore not subject to selection pressure, remodeling of transcriptome occurs, but not as a result of the accumulation of adaptive mutations. The observed changes indicate a shift in the metabolic balance towards catabolism, a decrease in ribosome biogenesis, a decrease in general stress alertness, reorganization of the cell wall, and transactions occurring at the cell periphery. These adaptive changes signify the acquisition of a new lifestyle in a stable nonstressful environment. The absence of underlying adaptive mutations suggests these changes may be regulated by another mechanism.
机译:连续培养物确保环境条件的不变性和培养的微生物的代谢状态,而批量培养的细胞经历营养成分可用性的恒定变化。因此,连续培养有时在整个转录组,全部蛋白质组或全代谢研究中使用。然而,用于建立细胞群的均匀生长的典型方法,即通过有限的化学抑制,导致细胞群体基因库与饥饿条件的突变导致细胞群体基因库的富集。这些自适应变化可以歪斜大规模研究的结果。通常假设这些适应反映了基因组的变化,并且在罕见的情况下实验证实了这种假设。在这里,我们认为,在非限制性最小培养基中在连续培养中生长超过200代的芽酵母细胞群中,因此不受选择压力,发生转录组的重塑,但不作为适应性突变的积累。所观察到的变化表明在分解代谢的代谢平衡中的转变,核糖体生物发生的降低,一般应激警觉性的减少,细胞壁重组以及在细胞周边发生的交易。这些自适应变更表示在稳定的非顽固环境中收购新的生活方式。没有潜在的自适应突变表明​​这些变化可能被另一种机制调节。

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