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首页> 外文期刊>The Science of the Total Environment >Copper stress in flooded soil: Impact on enzyme activities, microbial community composition and diversity in the rhizosphere of Salix Integra
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Copper stress in flooded soil: Impact on enzyme activities, microbial community composition and diversity in the rhizosphere of Salix Integra

机译:淹水土壤中的铜胁迫:对柳柳根际酶活性,微生物群落组成和多样性的影响

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摘要

Climate change has increased flooding frequency, making the heavy metal polluted areas more vulnerable, and led to increased global land degradation. Information about the alteration of soil microbiota under heavy metal pollution and flooding is still rather limited. Fast-growing trees are candidates for phytoreme-diation of heavy metal polluted soils. Therefore, the impact of Cu pollution on microbiota in soil used for cultivating Salix Integra Thunb. was investigated with and without flooding for 60 d. Bacterial and fungal communities were accessed via partial 16S rRNA (V_3-V_4) and internal transcribed spacer (ITS) genes. The activity of invertase, urease and cellulase were markedly decreased by 28.5-59%. 55.0-76.7% and 17.3-34.1%, respectively, with increasing Cu levels. Flooding significantly increased the activity of polyphenol oxidase and peroxidase by 56.3% and 41.4% at the highest Cu level compared to its respective non-flooded condition. High Cu concentration significantly decreased the richness and diversity of the bacterial community, and fungi were more sensitive than bacteria under flooding conditions. Redundancy analysis suggests that Cu, Fe and soil organic matter are the key determinants affecting the composition of microbial communities. Our findings provide new insight into the responses of soil microbes to Cu-contamination and contribute to our understanding of metal toxicity in soil-woody plant systems under flooded conditions.
机译:气候变化增加了洪水泛滥的频率,使重金属污染地区更加脆弱,并导致全球土地退化加剧。关于重金属污染和洪水下土壤微生物群落变化的信息仍然相当有限。快速生长的树木是重金属污染土壤的植物修复的候选对象。因此,铜污染对栽培柳柳的土壤微生物的影响。在有水和无水的情况下进行了60天的调查。通过部分16S rRNA(V_3-V_4)和内部转录间隔区(ITS)基因访问细菌和真菌群落。转化酶,脲酶和纤维素酶的活性明显降低了28.5-59%。随着铜含量的增加,分别为55.0-76.7%和17.3-34.1%。与最高的非淹水状态相比,淹水在最高铜含量下显着提高了多酚氧化酶和过氧化物酶的活性,分别提高了56.3%和41.4%。高浓度的铜显着降低了细菌群落的丰富度和多样性,在淹水条件下,真菌比细菌更敏感。冗余分析表明,铜,铁和土壤有机质是影响微生物群落组成的关键因素。我们的发现为土壤微生物对铜污染的反应提供了新的见解,并有助于我们了解水淹条件下土壤木本植物系统中的金属毒性。

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