Mikes J, Siglova M, Cejkova A, Masak J, Jirku V
Dept. of Fermentation Chem. and Bioengineering, Faculty of Biochemistry and Food Technology, Institute of Chemical Technology, Technicka 5, Prague 6, 16628, Czech Republic.
Water Sci Technol. 2005;52(10-11):151-6.
Wastewaters from a chemical industry polluted by heavy metal ions represent a hazard for all living organisms. It can mean danger for ecosystems and human health. New methods are sought alternative to traditional chemical and physical processes. Active elimination process of heavy metals ions provided by living cells, their components and extracellular products represents a potential way of separating toxic heavy metals from industrial wastewaters. While the abilities of bacteria to remove metal ions in solution are extensively used, fungi have been recognized as a promising kind of low-cost adsorbents for removal of heavy-metal ions from aqueous waste sources. Yeasts and fungi differ from each other in their constitution and in their abilities to produce variety of extracellular polymeric substances (EPS) with different mechanisms of metal interactions. The accumulation of Cd(2+), Cr(6+), Pb(2+), Ni(2+) and Zn(2+) by yeasts and their EPS was screened at twelve different yeast species in microcultivation system Bioscreen C and in the shaking Erlenmayer's flasks. This results were compared with the production of yeast EPS and the composition of yeast cell walls. The EPS production was measured during the yeast growth and cell wall composition was studied during the cultivations in the shaking flasks. At the end of the process extracellular polymers and their chemical composition were isolated and amount of bound heavy metals was characterized. The variable composition and the amount of the EPS were found at various yeast strains. It was influenced by various compositions of growth medium and also by various concentrations of heavy metals. It is evident, that the amount of bound heavy metals was different. The work reviews the possibilities of usage of various yeast EPS and components of cell walls in the elimination processes of heavy metal ions. Further the structure and properties of yeasts cell wall and EPS were discussed. The finding of mechanisms mentioned above is necessary to identify the functional groups entered in the metals elimination processes.
受重金属离子污染的化工废水对所有生物都构成危害。这可能对生态系统和人类健康造成威胁。人们正在寻找替代传统化学和物理过程的新方法。活细胞、其成分和细胞外产物对重金属离子的主动去除过程是从工业废水中分离有毒重金属的一种潜在方法。虽然细菌去除溶液中金属离子的能力被广泛应用,但真菌已被认为是一种有前景的低成本吸附剂,可用于从含水废物源中去除重金属离子。酵母和真菌在组成以及产生具有不同金属相互作用机制的各种细胞外聚合物(EPS)的能力方面彼此不同。在微量培养系统Bioscreen C和振荡锥形瓶中,对12种不同酵母菌种的酵母及其EPS对Cd(2+)、Cr(6+)、Pb(2+)、Ni(2+)和Zn(2+)的积累进行了筛选。将该结果与酵母EPS的产生以及酵母细胞壁的组成进行了比较。在酵母生长过程中测量EPS的产生,并在振荡瓶培养过程中研究细胞壁的组成。在过程结束时,分离出细胞外聚合物及其化学组成,并对结合重金属的量进行了表征。在不同酵母菌株中发现了EPS的组成和量各不相同。它受到生长培养基的不同组成以及重金属不同浓度的影响。很明显,结合重金属的量是不同的。这项工作回顾了各种酵母EPS和细胞壁成分在重金属离子去除过程中的使用可能性。此外,还讨论了酵母细胞壁和EPS的结构与性质。上述机制的发现对于确定参与金属去除过程的官能团是必要的。