4.5 Article

Employing gene chip technology for monitoring and assessing soil heavy metal pollution

Journal

ENVIRONMENTAL MONITORING AND ASSESSMENT
Volume 194, Issue 1, Pages -

Publisher

SPRINGER
DOI: 10.1007/s10661-021-09650-6

Keywords

Assessment method; Soil health; Microbial community structure; Metagenomics; Soil remediation

Funding

  1. Key laboratory of Degraded and Unused Land Consolidation Engineering
  2. Ministry of Natural and Resources [SXDJ2019]

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Soil heavy metals pollution is a complex process that causes serious environmental problems. Gene chip technology is an effective method for evaluating and predicting the levels of heavy metal pollution in soil. This paper systematically analyzes previous studies on soil heavy metals pollution using gene chip technology and introduces the latest gene chip technologies and applications.
Soil heavy metals pollution can cause many serious environment problems because of involving a very complex pollution process for soil health. Therefore, it is very important to explore methods that can effectively evaluate heavy metal pollution. Researchers were actively looking for new ideas and new methods for evaluating and predicting levels of soil heavy metal pollution. The study on microbial communities is one of the effective methods using gene chip technology. Gene chip technology, as a high-throughput metagenomics analysis technique, has been widely used for studying the structure and function of complex microbial communities in different polluted environments from different pollutants, including the soil polluted by heavy metals. However, there is still a lack of a systematic summarization for the polluted soil by heavy metals. This paper systematically analyzed soil heavy metals pollution via reviewing previous studies on applying gene chip technology, including single species, tolerance mechanisms, enrichment mechanisms, anticipation and evaluation of soil remediation, and multi-directional analysis. The latest gene chip technologies and corresponding application cases for discovering critical species and functional genes via analyzing microbial communities and evaluating heavy metal pollution of soil were also introduced in this paper. This article can provide scientific guidance for researchers actively investigating the soil polluted by heavy metals.

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