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Field-based evidence for consistent responses of bacterial communities to copper contamination in two contrasting agricultural soils

机译:在两种对比农业土壤中细菌群落对铜污染的一致响应的现场证据

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Copper contamination on China's arable land could pose severe economic, ecological and healthy consequences in the coming decades. As the drivers in maintaining ecosystem functioning, the responses of soil microorganisms to long-term copper contamination in different soil ecosystems are still debated. This study investigated the impacts of copper gradients on soil bacterial communities in two agricultural fields with contrasting soil properties. Our results revealed consistent reduction in soil microbial biomass carbon (SMBC) with increasing copper levels in both soils, coupled by significant declines in bacterial abundance in most cases. Despite of contrasting bacterial community structures between the two soils, the bacterial diversity in the copper-contaminated soils showed considerably decreasing patterns when copper levels elevated. High-throughput sequencing revealed copper selection for major bacterial guilds, in particular, Actinobacteria showed tolerance, while Acidobacteria and Chloroflexi were highly sensitive to copper. The thresholds that bacterial communities changed sharply were 800 and 200 added copper mg kg~(?1)in the fluvo-aquic soil and red soil, respectively, which were similar to the toxicity thresholds (EC50 values) characterized by SMBC. Structural equation model (SEM) analysis ascertained that the shifts of bacterial community composition and diversity were closely related with the changes of SMBC in both soils. Our results provide field-based evidence that copper contamination exhibits consistently negative impacts on soil bacterial communities, and the shifts of bacterial communities could have largely determined the variations of the microbial biomass.
机译:在未来几十年中,中国耕地上的铜污染可能会带来严重的经济,生态和健康后果。作为维持生态系统功能的驱动力,土壤微生物对不同土壤生态系统中长期铜污染的反应仍存在争议。这项研究调查了铜梯度对两个农业领域土壤特性相反的土壤细菌群落的影响。我们的研究结果表明,随着土壤中铜含量的增加,土壤微生物生物量碳(SMBC)持续下降,在大多数情况下,细菌丰度也显着下降。尽管两种土壤之间的细菌群落结构形成对比,但是当铜水平升高时,被铜污染的土壤中的细菌多样性显示出明显降低的模式。高通量测序揭示了主要细菌协会对铜的选择,特别是放线菌显示出耐受性,而酸性细菌和绿弯曲菌对铜高度敏感。潮土和红壤中细菌群落急剧变化的阈值分别为800和200添加铜mg kg〜(?1),与SMBC表征的毒性阈值(EC50值)相似。结构方程模型(SEM)分析确定,两种土壤中细菌群落组成和多样性的变化与SMBC的变化密切相关。我们的研究结果提供了基于现场的证据,表明铜污染对土壤细菌群落始终表现出负面影响,而细菌群落的变化可能很大程度上决定了微生物生物量的变化。

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