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Journal of Zhejiang University SCIENCE B

ISSN 1673-1581(Print), 1862-1783(Online), Monthly

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

Chinese Summary  <2> Acinetobacter sp. ME1:一种利用黑色素生成、重金属耐受性和促进植物生长实现植物修复的多功能细菌

李粹娟, 趙敬淑
韩国首尔梨花女子大学环境科学与工程系, 韩国首尔市, 03760
摘要:生活在重金属污染土壤中的微生物可通过合成黑色素这一深棕色色素作为其适应环境的生存策略。本研究从废弃矿场土壤中分离获得一株能合成黑色素的细菌--Acinetobacter sp. ME1,该菌株具有重金属耐受性和促进植物生长的特性。实验结果表明,菌株ME1在锌浓度250 mg/L、镉和铅浓度100 mg/L以及铬浓度50 mg/L的培养条件下仍能正常生长。此外,该菌可产生植物激素吲哚-3-乙酸和铁载体,同时具有1-氨基环丙烷-1-羧酸脱氨酶和蛋白酶活性。同时,ME1还表现出抗氧化活性,包括过氧化氢酶活性和对2,2-二苯基-1-苦肼基(DPPH)自由基的清除活性。ME1产生黑色素的最适条件为pH 7和35 ℃。在1000 mg/L浓度下,提取的黑色素对DPPH自由基的清除率为(25.040±0.007)%,防晒系数为15.200±0.260,且对植物病原菌Xanthomonas campestris的抑菌率为19.6%。此外,其对锌和镍的吸附能力分别为(0.235±0.073)和(0.277±0.008) mg/g 黑色素。在水培试验中,接种ME1菌株3天后,在单一重金属(镉、锌、铅或铬)污染条件下,芥菜植株对每种重金属的去除效率较未接种的植株提高了0.1至1.8倍;在复合重金属污染条件下,去除效率提高了0.1至1.0倍。上述结果表明,Acinetobacter sp. ME1在增强重金属污染土壤的植物修复效率方面具有应用潜力。同时,其所产生的黑色素因其具备光保护、抗氧化和抗菌特性,在化妆品、家居用品及医疗领域也具有广阔的应用前景。

关键词组:Acinetobacter;黑色素;重金属耐受;促进植物生长;多功能特性


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DOI:

10.1631/jzus.B2400522

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On-line Access:

2025-11-19

Received:

2024-10-14

Revision Accepted:

2024-12-30

Crosschecked:

2025-11-19

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