4.7 Article

Bacterial, archaeal, and fungal community responses to acid mine drainage-laden pollution in a rice paddy soil ecosystem

期刊

SCIENCE OF THE TOTAL ENVIRONMENT
卷 616, 期 -, 页码 107-116

出版社

ELSEVIER
DOI: 10.1016/j.scitotenv.2017.10.224

关键词

AMD; Paddy soil; Microbial diversity; Metagenome functional prediction

资金

  1. National Natural Science Foundation of China [41330639, 41720104004]
  2. Fundamental Research Funds for the Central Universities [2015ZZ113]
  3. Program for New Century Excellent Talents in University [NCET-12-0199]

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Lacking sufficient clean water, the paddy soils along the Hengshi River have suffered from long-term acid mine drainage (AMD) contamination. The impacted cropland is too heavily contaminated to grow food safely. The microbial communities inhabiting the environment play pivotal roles in the crop growth, health, and ecological services. In this study, the bacterial, archaeal, and fungal communities in the impacted paddy soil were examined using high-throughput Illumina MiSeq sequencing. The results showed that AMD irrigation considerably enriched the bacterial phylum Acidobacteria and the archaeal phylum Crenarchaeota, while the fungal community was more stable. The abundances of Acidobacteria and Crenarchaeota were significantly positively correlated with the AMD-related environmental factors of pH and heavy metals (Cu, Pb, and Zn). In the most contaminated samples, communities were dominated by the bacteria Candidatus Solibacter and Candidatus Koribacter from the Acidobacteria family. Functional gene profile analysis demonstrated that the energy metabolic processes of the microbial communities, especially C/N related pathways, have adjusted and are well-adapted to tolerating AMD contamination. The present study described the structural and functional differentiation of microbial communities in the rice paddy soil under AMD irrigation. The results are useful for the development of bioremediation strategies using native microbes in the cleanup and biorestoration of AMD-contaminated agriculture soil. (c) 2017 Elsevier B.V. All rights reserved.

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