纳米硫颗粒对汞胁迫下油菜种植土壤根瘤微生物群落变化的影响

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-04-10 DOI:10.1080/15226514.2024.2335207
Qiurong Zhuang, Yongxia Zhang, Qingquan Liu, Yuming Sun, Sudhir Sharma, Shijie Tang, O. Dhankher, Haiyan Yuan
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摘要

本研究以种植油菜的汞污染根瘤土壤为研究对象,通过实验评估了纳米硫对金属植物微生物群落结构的影响。结果表明,在汞胁迫下,根瘤菌群落的丰富度和多样性显著下降,但在添加 SNPs 后略有增加,对汞敏感的微生物的损失减少。此外,受汞处理影响的前十个门类的相对丰度变化,除了Myxococcota和Bacteroidota外,在进行汞+SNPs处理后都得到了恢复。同样,与 CK 相比,受单独汞处理影响相对丰度下降最大的前五个属,在 Hg + SNPs 处理下与单独汞处理相比增加了 19.05%-54.66%。此外,作为 CK 和 Hg + SNPs 处理的优势菌属之一,鞘氨单胞菌的相对丰度与植物生长密切相关。根瘤菌,如 Pedobacter 和 Massilia,在 Hg + SNPs 处理下显著减少,并与植物体内的汞积累呈正相关。这项研究表明,SNPs 可以通过逆转汞对微生物相对丰度的影响,创造更健康的土壤微生态环境,从而帮助微生物修复受重金属污染的土壤,减轻重金属对植物的压力。
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Effects of sulfur nanoparticles on rhizosphere microbial community changes in oilseed rape plantation soil under mercury stress.
In the present study, experiments were conducted to assess the influence of nanoscale sulfur in the microbial community structure of metallophytes in Hg-contaminated rhizosphere soil for planting rapeseed. The results showed that the richness and diversity of the rhizobacteria community decreased significantly under Hg stress, but increased slightly after SNPs addition, with a reduction in the loss of Hg-sensitive microorganisms. Moreover, all changes in the relative abundances of the top ten phyla influenced by Hg treatment were reverted when subjected to Hg + SNPs treatment, except for Myxococcota and Bacteroidota. Similarly, the top five genera, whose relative abundance decreased the most under Hg alone compared to CK, increased by 19.05%-54.66% under Hg + SNPs treatment compared with Hg alone. Furthermore, the relative abundance of Sphingomonas, as one of the dominant genera for both CK and Hg + SNPs treatment, was actively correlated with plant growth. Rhizobacteria, like Pedobacter and Massilia, were significantly decreased under Hg + SNPs and were positively linked to Hg accumulation in plants. This study suggested that SNPs could create a healthier soil microecological environment by reversing the effect of Hg on the relative abundance of microorganisms, thereby assisting microorganisms to remediate heavy metal-contaminated soil and reduce the stress of heavy metals on plants.
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7.20
自引率
4.30%
发文量
567
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