GTF高产酵母菌体中铬元素的分布规律
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国家自然基金面上项目(31371763);; 中央级公益性科研院所基本科研业务费专项(S2016JC01)


The Distribution Rule of Chromium in GTF High-producing Yeast
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    摘要:

    应用先进材料学分析的手段并结合生物电镜技术,对酵母生物富铬过程中细胞的变化以及铬在细胞中分布进行探究,揭示酵母富铬机理。以不同剂量的铬处理酵母细胞,利用扫描电子显微镜、透射电子显微镜观察酵母细胞吸附Cr3+形成GTF过程中细胞形态变化;利用能谱分析仪-透射电子显微镜(EDS-TEM)、飞行时间二次离子质谱仪(TOF-SIMS)分析铬在酵母细胞中的分布;采用EDTA洗脱法和原生质体制备法对酵母细胞进行组分分离,用火焰原子吸收法测定其各部位的铬含量,印证能谱及质谱的测定结果。结果表明:随着培养基中Cr3+质量浓度的升高,酵母细胞形状由规则的椭圆形变成长轴拉长的椭圆形;并且在Cr3+质量浓度为500,800μg/mL时,表面出现沉淀,内部出现空泡。当Cr3+质量浓度为500μg/mL时,酵母细胞吸附的总铬和有机铬含量均最高,分别达到1 803.87μg/g·DCW(Dry Cell Weight)和1 133.91μg/g·DCW。其中吸附的总铬有14.43%集中在细胞壁,另外85.57%集中在原生质体,且原生质体吸附的铬中有73.29%以有机铬的形式存在,结合原生质体与细胞壁的质量比约为5∶1,可得铬在YSI-3.7细胞壁和原生质体空间分布均匀。EDS-TEM和TOF-SIMS的结果,进一步验证了这个结论。

    Abstract:

    To illustrate the distribution of chromium (Ⅲ) in the formation of GTF and further reveal the mechanism of chromium rich, this study applied advanced materials science analysis method and biological electron microscope technology. The morphological changes of Saccharomyces cerevisiae were monitored by scanning electron microscope and transmission electron microscope. The distribution in Saccharomyces cerevisiae was revealed by dispersive energy spectrometer-transmission electron microscope (EDS-TEM) and time-of-flight two ion mass spectrometer (TOF-SIMS). The content of Cr3+ in various parts of Saccharomyces cerevisiae was detected by EDTA elution and enzymolysis. The result shows that with the increase of Cr3+ mass concentration in the fermentation medium, the shape of Saccharomyces cerevisiae changed from regular ellipse to irregular. And when the mass concentration of Cr3+ was high up to 500 μg/mL, the surface precipitation occurs, and the inner cavity appears cavitation. The total chromium and organic chromium content were highest in Saccharomyces cerevisiae, reaching 1 803.87 μg/g·DCW and 1 133.91 μg/g·DCW respectively, when the mass concentration of Cr3+ was 500 μg/mL. 14.43% of the total chromium adsorbed was concentrated in the cell wall, and the other 85.57% was enriched in the protoplasts. In addition, 73.29% of the adsorbed chromium existed as organic chromium in the protoplasts. GTF is mainly formed in the protoplast and only a small amount of inorganic chromium was adsorbed by cell wall of Saccharomyces cerevisiae. And the mass ratio between protoplasts and cell walls is about 5 ∶ 1, we can draw a conclusion that the distribution of GTF in the cell wall or protoplast is approximately homogeneous in Saccharomyces cerevisiae. The results of EDS-TEM and TOF-SIMS further confirms this conclusion.

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李函彤;王芬;芦晶;逄晓阳;张书文;刘鹭;吕加平;. GTF高产酵母菌体中铬元素的分布规律[J].中国食品学报,2019,19(10):100-109

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  • 在线发布日期: 2019-11-21
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