Cysteine and thiosulfate promoted cadmium immobilization in strain G303 by the formation of extracellular CdS

硫代硫酸盐 半胱氨酸 化学 细菌 生物化学 拉伤 生物膜 细胞外 硫黄 微生物学 生物 有机化学 解剖 遗传学
作者
Siyao Zhang,Mengxin Song,Jing Zhang,Hongjie Wang
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:923: 171457-171457 被引量:15
标识
DOI:10.1016/j.scitotenv.2024.171457
摘要

Bacteria have evolved a variety of strategies to defend themselves against cadmium toxicity, however, the specific mechanisms involved in the enhancement of bacterial cadmium resistance by sulfur sources are unclear. In this study, a novel cadmium (Cd)-tolerant bacterium, Stenotrophomonas geniculata G303, was isolated from activated sludge. The growth of strain G303 under diverse Cd concentrations was investigated, and the minimum inhibitory concentration of Cd was found to be 1 mM. Strain G303 effectively remove 94.7 % of Cd after 96 h of culture. Extracellular CdS was detected using multiple methods, with the CdS formed being aggregated in the biofilm. The addition of cysteine and thiosulfate to the medium significantly enhanced the Cd resistance and removal capacity of strain G303. Integrated genomic and proteomic analyses revealed that heavy metal transporters cooperate to resist Cd stress. Cysteine and thiosulfate improved Cd tolerance in strain G303 by upregulating nitrogen and energy metabolism. Proteins associated with nitrate reduction likely played a pivotal role in cysteine and thiosulfate metabolism. Notably, cysteine synthase and the SUF system played crucial roles in CdS formation. This study systematically explored the impact of cysteine and thiosulfate on the Cd resistance of strain G303, deepening our understanding of the microbial response mechanism to heavy metals.
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