Biology Department, College of Science, Shantou University, Shantou, 515063, China.
Department of Microbiology, School of Biological Sciences, Faculty of Natural and Health Sciences, North-West University, Potchefstroom, 2735, South Africa.
Int Microbiol. 2018 Sep;21(3):97-106. doi: 10.1007/s10123-018-0012-3. Epub 2018 Jun 11.
Currently, heavy metal pollution becomes a severe problem whole over the world, and these toxic metals enter into the environment either by natural phenomena or due to extensive industrialization. The discharged effluents containing toxic heavy metals mixed with soil/water and change their natural composition. These heavy metals have adverse effects on living beings and cause damage to the vital body organs of animals as well as humans. The heavy metal pollution also inhibits the biodegradation of the chlorinated organic compounds (another type of environmental pollution) by interacting with metabolizing enzymes and inhibits their functioning. Earlier studies described that heavy metals cannot be fully removed from the environment, but they can be effectively neutralized or transformed into less toxic form so that their harmful effect on the environment can be reduced. The distinctive enzymatic apparatus within microbial system plays a major role in the transformation of heavy metals in the environment. A considerable advancement has been made during recent years to transform the heavy metals by utilizing the bioremediation potential of genetically engineered (GE) microorganisms. These transgenics are very much efficient in heavy metal transformations and still, we have to discover more to additionally utilize their full biotransformation potential.In the present review article, the detailed description of the adverse effects of four heavy metals (arsenic, lead, mercury, and chromium) and their adverse effect on our environment and human beings is discussed. Furthermore, the use of microorganisms/GE organisms for the bioremediation of heavy metals from the environment is also discussed along with their detailed bioremediation mechanism.
目前,重金属污染成为全世界的一个严重问题,这些有毒金属通过自然现象或广泛的工业化进入环境。含有有毒重金属的排放废水与土壤/水混合,并改变其天然组成。这些重金属对生物有不良影响,并对动物和人类的重要器官造成损害。重金属污染还通过与代谢酶相互作用抑制了氯化有机化合物(另一种类型的环境污染)的生物降解,并抑制了它们的功能。早期的研究表明,重金属不能从环境中完全去除,但可以有效地中和或转化为毒性较小的形式,从而减少其对环境的有害影响。微生物系统内独特的酶装置在环境中重金属的转化中起着主要作用。近年来,利用基因工程(GE)微生物的生物修复潜力来转化重金属取得了相当大的进展。这些转基因生物在重金属转化方面非常有效,但我们仍需要进一步发现它们的全部生物转化潜力。在本文综述中,详细讨论了四种重金属(砷、铅、汞和铬)的不良影响及其对环境和人类的不良影响。此外,还讨论了微生物/GE 生物在从环境中生物修复重金属方面的应用,以及它们的详细生物修复机制。