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Improved efficiency of Sedum lineare (Crassulaceae) in remediation of arsenic-contaminated soil by phosphate-dissolving strain P-1 in association with phosphate rock
被引:0
|作者:
Shaohui Yang
Rong Yin
Chen Wang
Jiehua Wang
机构:
[1] Tianjin University,School of Environmental Science and Engineering
来源:
Environmental Geochemistry and Health
|
2023年
/
45卷
关键词:
Arsenic;
Phosphate rock;
sp.;
Oxidative stress;
Phytoremediation;
Partial least squares path model;
D O I:
暂无
中图分类号:
学科分类号:
摘要:
The selection of appropriate plants and growth strategies is a key factor in improving the efficiency and universal applicability of phytoremediation. Sedum lineare grows rapidly and tolerates multiple adversities. The effects of inoculation of Acinetobacter sp. phosphate solubilizing bacteria P-1 and application of phosphate rock (PR) as additives on the remediation efficiency of As-contaminated soil by S. lineare were investigated. Compared with the control, both the single treatment and the combination of inoculation with strain P-1 and application of PR improved the biomass by 30.7–395.5%, chlorophyll content by 48.1–134.8%, total protein content by 12.5–92.4% and total As accumulation by 45.1–177.5%, and reduced the As-induced oxidative damage. Inoculation with strain P-1 increased the activities of superoxide dismutases and catalases of S. lineare under As stress, decreased the accumulation of reactive oxygen species in plant tissues and promoted the accumulation of As in roots. In contrast, simultaneous application of PR decreased As concentration in S. lineare tissues, attenuated As-induced lipid peroxidation and improved As transport to shoots. In addition, the combined application showed the best performance in improving resistance and biomass, which significantly increased root length by 149.1%, shoot length by 33%, fresh weight by 395.5% and total arsenic accumulation by 159.2%, but decreased the malondialdehyde content by 89.1%. Our results indicate that the combined application of strain P-1 and PR with S. lineare is a promising bioremediation strategy to accelerate phytoremediation of As-contaminated soils.
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页码:8317 / 8336
页数:19
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