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Isolation and Characterization of a Variant Manganese Resistant Strain of Saccharomyces cerevisiae

机译:一株酿酒酵母的抗锰变异株的分离与鉴定

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Manganese contamination in water is one of the most serious problems in Southeast Asian countries, including Vietnam. Bioremediation using microorganisms, especially from the brewing yeast Saccharomyces cerevisiae , is expected to be a useful technique to remove manganese from contaminated water. Yeast strain S. cerevisiae BY4741 as the wild-type strain and some manganese-accumulating mutants bred from BY4741 were examined for cell growth and manganese accumulation in YPD liquid medium containing various concentrations of Mn~(2+). Variants accumulating larger concentrations of manganese were isolated by the repeated screening of survivors in YPD media containing10mM Mn~(2+). Manganese was accumulated by the yeast cells during growth, but the growth of BY4741 was retarded with increasing Mn~(2+) concentrations and almost inhibited at 15mM Mn~(2+). One variant isolate, named IM3, showed no retardation of growth up to 15 mM Mn~(2+) and could absorb over 4-fold more manganese than the BY4741 strain. Effects of culture temperature and pH on the growth and manganese accumulation were analyzed for IM3. Maximum accumulation was shown at 30℃, pH 6.0 while the optimal growth was shown at 37℃, pH 5.0 – 7.0. Interestingly, IM3 could grow a little at pH 9.0 when manganese was added to the culture media, while it could not grow without the addition of manganese..
机译:水中的锰污染是包括越南在内的东南亚国家最严重的问题之一。使用微生物,特别是来自酿造酵母啤酒酵母的微生物的生物修复,有望成为一种从污染水中去除锰的有用技术。酵母菌株。酿酒酵母BY4741为野生型,并考察了BY4741育成的一些锰积累突变体在不同浓度Mn〜(2+)的YPD液体培养基中的细胞生长和锰积累情况。通过在含有10mM Mn〜(2+)的YPD培养基中重复筛选幸存者来分离出积累较高浓度锰的变异体。酵母细胞在生长过程中会积累锰,但随着Mn〜(2+)浓度的增加,BY4741的生长受到阻碍,而在15mM Mn〜(2+)时几乎被抑制。一种命名为IM3的变体分离株在15 mM Mn〜(2+)时没有生长迟缓,并且比BY4741菌株吸收的锰多4倍。分析了培养温度和pH对IM3生长和锰积累的影响。在30℃,pH 6.0时显示最大积累,而在37℃,pH 5.0-7.0时显示最佳生长。有趣的是,当将锰添加到培养基中时,IM3在pH 9.0下会增长一点,而如果不添加锰则不会增长。

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