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Journal of Zhejiang University SCIENCE B
ISSN 1673-1581(Print), 1862-1783(Online), Monthly
2025 Vol.26 No.11 P.1103-1120
Acinetobacter sp. ME1: a multifunctional bacterium for phytoremediation utilizing melanin production, heavy metal tolerance, and plant growth promotion
Abstract: Microorganisms inhabiting soils contaminated with heavy metals produce melanin, a dark brown pigment, as a survival strategy. In this study, a melanin-producing bacterium, Acinetobacter sp. ME1, with heavy metal tolerance and plant growth-promoting traits, was isolated from abandoned mine soil. Strain ME1 exhibited growth at concentrations of Zn up to 250 mg/L, Cd and Pb up to 100 mg/L, and Cr up to 50 mg/L. It had the ability to produce the plant hormone indole-3-acetic acid and siderophores along with 1-aminocyclopropane-1-carboxylic acid deaminase and protease activities. Additionally, it showed antioxidant activity, including catalase and 2,2-diphenyl-1-picryhydrazyl (DPPH) scavenging activities. The optimal conditions for melanin production by ME1 were a pH of 7 and a temperature of 35 °C. At 1000 mg/L, ME1-extracted melanin exhibited DPPH radical scavenging activity of (25.040±0.007)%, a sun protection factor of 15.200±0.260, and 19.6% antibacterial activity against the plant pathogen Xanthomonas campestris. Furthermore, its adsorption capacity was (0.235±0.073) mg/g melanin for Zn and (0.277±0.008) mg/g melanin for Ni. In plants of Brassica chinensis grown under conditions of hydroponic cultivation with single heavy metal contamination of Cd, Zn, Pb, or Cr, the removal efficiency of each heavy metal was improved by 0.1‒1.8 times after 3 d following inoculation with the strain ME1 compared to the plants grown under the same conditions without inoculation. In addition, ME1 inoculation improved the removal efficiency of each heavy metal by 0.1‒1.0 times under multiple heavy metal contamination conditions. These findings suggest that Acinetobacter sp. ME1 could be used to enhance phytoremediation efficiency in heavy metal-contaminated soils. Moreover, the melanin it produces also holds promise in cosmetics, household products, and medical applications due to its photoprotective, antioxidant, and antimicrobial properties.
Key words: Acinetobacter; Melanin; Heavy metal tolerance; Plant growth promotion; Multi-function
机构:1浙江大学,超重力科学与技术研究院,浙江杭州,310058;2浙江大学,软弱土与环境土工教育部重点实验室,浙江杭州,310058
目的:我国城市化已进入中后期阶段,高密度城市工程通过岩土环境耦联形成城市工程系统。强烈的时空耦联性导致城市工程系统服役脆弱性显著,严重削弱了城市可持续能力。本文旨在构建多维度的城市工程系统可持续性评价指标体系,研究不同子系统间的耦联关系,为高密度城市工程系统可持续运维提供量化评估工具。
创新点:1.综述城市工程系统可持续能力评价研究现状及验证方法,指出既有评价研究的不足;2.综合韧性、低碳及环保三种维度,构建包含66项指标的城市工程系统可持续性评价指标体系。
方法:1.通过文献计量与标准化筛选,基于8个城市工程子系统确定66项指标,涵盖韧性、低碳与环保维度;2.基于决策试验与评价试验法和网络分析法相结合的方法和熵权法分别确认评价指标的主、客观权重,并利用最大离差法计算指标组合权重;3.通过对国内6个超大城市的实证分析,验证所构建评价体系的合理性,并根据计算结果提出对应城市工程系统可持续能力的提升方法。
结论:1.本文构建的评价指标体系可以准确合理地量化分析各评价对象的城市工程系统可持续能力,其中,地质灾害监测能力和移动通信保障能力是影响城市工程系统可持续能力最关键的两项指标;2.所选国内超大城市的城市工程系统可持续能力综合评价呈现明显的不均衡性,且同一城市在不同维度上的表现也有明显差异。
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DOI:
10.1631/jzus.B2400522
CLC number:
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On-line Access:
2025-11-19
Received:
2024-10-14
Revision Accepted:
2024-12-30
Crosschecked:
2025-11-19