Cervantes C, Espino-Saldaña A E, Acevedo-Aguilar F, León-Rodriguez I L, Rivera-Cano M E, Avila-Rodríguez M, Wróbel-Kaczmarczyk K, Wróbel-Zasada K, Gutiérrez-Corona J F, Rodríguez-Zavala J S, Moreno-Sánchez R
IIQB, Universidad Michoacana, Morelia, Mich, México.
Rev Latinoam Microbiol. 2006 Apr-Jun;48(2):203-10.
Living organisms are exposed in nature to heavy metals, commonly present in their ionized species. These ions exert diverse toxic effects on microorganisms. Metal exposure both selects and maintains microbial variants able to tolerate their harmful effects. Varied and efficient metal resistance mechanisms have been identified in diverse species of bacteria, fungi and protists. The study of the interactions between microorganisms and metals may be helpful to understand the relations of toxic metals with higher organisms such as mammals and plants. Some microbial systems of metal tolerance have the potential to be used in biotechnological processes, such as the bioremediation of environmental metal pollution or the recovery of valuable metals. In this work we analyze several examples of the interactions of different types of microbes with heavy metals; these cases are related either with basic research or with possible practical applications.
生物在自然界中会接触到重金属,这些重金属通常以离子形式存在。这些离子对微生物会产生多种毒性作用。金属暴露既会筛选并维持能够耐受其有害影响的微生物变体。在细菌、真菌和原生生物的不同物种中已鉴定出多种高效的金属抗性机制。研究微生物与金属之间的相互作用可能有助于理解有毒金属与哺乳动物和植物等高等生物之间的关系。一些微生物金属耐受系统有潜力用于生物技术过程,例如环境金属污染的生物修复或有价金属的回收。在这项工作中,我们分析了不同类型微生物与重金属相互作用的几个例子;这些例子要么与基础研究有关,要么与可能的实际应用有关。