Impact Factor:6.8
DOI number:10.1016/j.ecoenv.2021.113067
Journal:ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY
Key Words:The response of soil bacterial communities from farmland ecosystems to cadmium (Cd) pollution, in which a steep concentration gradient of more than 100 mg/kg has naturally formed, has not previously been fully reported. In this study, a field investigation was conducted in a typical severe Cd-polluted farmland ecosystem, andthe bacterial community response to the steep Cd gradient was analyzed. The results showed that Cd concentration sharply decreased from 159.2 mg/kg to 4.18 mg/kg among four sampling sites alongside an irrigation canal over a distance of 150 m. Bacterial diversity and richness were significantly lower in highly polluted sites, and random forest analysis indicated that Cd gradient played a decisive role in reducing alpha diversity. Redundancy analysis (RDA) and co-occurrence network indicated that the synergistic effects of pH, Cd, and phosphorus were the main drivers shaping community structure. The functional results predicted by BugBase suggested that the bacterial community may adapt to the harsh environment by recruiting Cd-resistant microbes and improving oxidative stress tolerance of the whole community. Cd-resistant microorganisms such as Burkholderia, Bradyrhizobium, and Sulfurifustis, which directly or indirectly participate in diminishing oxidative damage of Cd, may play essential roles in maintaining community stability and might be potential bacterial resources for the bioremediation of Cd pollution.
Co-author:Shaodong Fu, Emmannuel Konadu Sarkodie, Shuangfei Zhang, Luhua Jiang, Yili Liang, Huaqun Yin, Lianyang Bai, Xueduan Liu, Hongwei Liu*, Huidan Jiang*
First Author:Yan Deng
Indexed by:Journal paper
Discipline:Natural Science
First-Level Discipline:Biology
Document Type:J
Volume:229
Translation or Not:no
Included Journals:SCI