The Saccharomyces cerevisiae ∑1278b strain is sensitive to NaCl because of mutations in its ENA1 gene.

IF 2.4 4区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
David Engelberg, Alexey Baskin, Shelly Ben Zaken, Irit Marbach
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Abstract

Most laboratory strains of the yeast Saccharomyces cerevisiae are incapable of invading agar, to form large colonies (mats), and to develop filament-like structures (pseudohyphae). A prominent strain that manifests these morphologies is ∑1278b. While induced transcription of the FLO11 gene is critical for executing invasive growth, mat formation, and pseudohyphal growth, downregulation of the 'general stress response' also seems to be required. As this response is weak in ∑1278b cells, we assumed that they may be sensitives to stresses. We report, however, that they are resistant to various stressors, but severely sensitive specifically to NaCl. We found that this sensitivity is a result of mutations in the single ∑1278b's ENA gene, encoding P-type sodium ATPase. Other laboratory strains harbor three to five copies of ENA, suggesting that ∑1278b was selected against Ena activity. Obtaining ∑1278b cells that can grow on NaCl allows checking its effect on colony morphologies. In the presence of NaCl, ∑1278b/ENA1+ cells do not invade agar, and do not form pseudohyphae or mats. Thus, we have found the following: (i) The ∑1278b strain differs from other laboratory strains with respect to sensitivity to NaCl, because it has no active Na+ ATPase exporter. (ii) NaCl is a suppressor of invasiveness, filamentous growth, and mat formation.

酿酒酵母(Saccharomyces cerevisiae)∑1278b菌株对NaCl敏感,其ENA1基因发生突变。
大多数实验室菌株的酿酒酵母不能侵入琼脂,不能形成大菌落(席),也不能形成丝状结构(假菌丝)。表现出这些形态的一个突出菌株是∑1278b。虽然FLO11基因的诱导转录对侵入性生长、席形成和假菌丝生长至关重要,但似乎也需要下调“一般应激反应”。由于这种反应在∑1278b细胞中较弱,我们假设它们可能对应力敏感。然而,我们报告说,它们对各种胁迫具有抗性,但对NaCl特别敏感。我们发现这种敏感性是编码P型钠atp酶的单个∑1278b的ENA基因突变的结果。其他实验室菌株携带3-5个ENA拷贝,表明选择∑1278b来抑制ENA活性。获得可在NaCl上生长的∑1278b细胞,检验其对菌落形态的影响。在NaCl的作用下,∑1278b/ENA1+细胞不会侵入琼脂,也不会形成假菌丝或席。因此:1)∑1278b菌株对NaCl的敏感性不同于其他实验室菌株,因为它没有活性的Na+ atp酶输出体。2) NaCl对侵染性、丝状生长和席状形成具有抑制作用。
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来源期刊
FEMS yeast research
FEMS yeast research 生物-生物工程与应用微生物
CiteScore
5.70
自引率
6.20%
发文量
54
审稿时长
1 months
期刊介绍: FEMS Yeast Research offers efficient publication of high-quality original Research Articles, Mini-reviews, Letters to the Editor, Perspectives and Commentaries that express current opinions. The journal will select for publication only those manuscripts deemed to be of major relevance to the field and generally will not consider articles that are largely descriptive without insights on underlying mechanism or biology. Submissions on any yeast species are welcome provided they report results within the scope outlined below and are of significance to the yeast field.
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