College of Natural Resources & Environment, Northwest A&F University, Yangling, 712100, Shaanxi, China.
Environ Sci Pollut Res Int. 2020 Dec;27(35):43514-43525. doi: 10.1007/s11356-020-09842-6. Epub 2020 Jun 27.
Microbe-assisted phytoremediation provides an eco-friendly and cost-effective approach to reclaim Cd- and Pb-contaminated soils. In this work, incubation and pot experiments were established to investigate the effect of Streptomyces pactum (Act12) combined with compost on soil physicochemical properties, enzymatic activities, and thereby acted on phytoextraction of Cd and Pb by using potherb mustard (Brassica juncea Coss.). The addition of Act12 and compost increased EC (7.2%), available phosphorus (P) (14.9%), available potassium (K) (17.0 folds), DOC (37.7%), OM (2.8 folds), urease (49.8%), dehydrogenase (2.2 folds), and alkaline phosphatase (23.0 folds) of soil, while reduced pH (7.7%) compared with control. Significant decrease of available Cd and Pb uptake was observed after adding compost and Act12 by 29.1% and 32.2%. Presence of compost and Act12 enhanced the biomass by 3.98 folds and 1.83 folds in shoots and roots of plant. Results showed the assimilation of Cd and Pb in shoots was increased by 103.8% and 48.7% due to the increased of biomass. Meanwhile, the rhizosphere effect of soil microorganisms increased the uptake of Cd (60.4%) and Pb (19.2%) in roots. These findings suggested that Act12 joined with compost-strengthened potherb mustard phytoremediation of Cd- and Pb-polluted soils, which may provide new insights into the clean-up of mining-contaminated soils in field practice.
微生物辅助植物修复为回收 Cd 和 Pb 污染土壤提供了一种环保且经济有效的方法。本研究通过培养和盆栽实验,研究了施氏假单胞菌(Act12)与堆肥联合作用对土壤理化性质和酶活性的影响,进而影响蕗菜(Brassica juncea Coss.)对 Cd 和 Pb 的植物提取。添加 Act12 和堆肥可增加土壤电导率(7.2%)、有效磷(14.9%)、有效钾(17.0 倍)、溶解性有机碳(DOC)(37.7%)、有机质(OM)(2.8 倍)、脲酶(49.8%)、脱氢酶(2.2 倍)和碱性磷酸酶(23.0 倍),但 pH 值(7.7%)较对照降低。与对照相比,添加堆肥和 Act12 后,土壤中有效 Cd 和 Pb 吸收量分别减少了 29.1%和 32.2%。堆肥和 Act12 的存在使植物地上部和根系的生物量分别增加了 3.98 倍和 1.83 倍。结果表明,由于生物量的增加,蕗菜地上部对 Cd 和 Pb 的同化量分别增加了 103.8%和 48.7%。同时,土壤微生物的根际效应增加了 Cd(60.4%)和 Pb(19.2%)在根系中的吸收。这些发现表明,Act12 与堆肥联合强化了蕗菜对 Cd 和 Pb 污染土壤的修复,为田间实际受采矿污染土壤的修复提供了新的思路。