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利用铜耐受内生菌假单胞菌 EOO26 进行生物强化,以提高向日葵的植物生长和铜的植物修复。

Bioaugmentation with copper tolerant endophyte Pseudomonas lurida strain EOO26 for improved plant growth and copper phytoremediation by Helianthus annuus.

机构信息

Laboratory of Biotechnology, Institute of Natural Sciences and Mathematics, Ural Federal University, Ekaterinburg, 620002, Russia.

Laboratory of Biotechnology, Institute of Natural Sciences and Mathematics, Ural Federal University, Ekaterinburg, 620002, Russia.

出版信息

Chemosphere. 2021 Mar;266:128983. doi: 10.1016/j.chemosphere.2020.128983. Epub 2020 Nov 16.

Abstract

Organic fertilizers became a better alternative to chemical fertilizers in modern agricultural practices however, contamination of copper (Cu) from organic fertilizer is still a major concern for the globe. Plant growth promoting (PGP) microorganisms showed their efficiency to combat with this problem and thus Cu tolerant PGP endophytes from roots of Odontarrhena obovata (Alyssum obovatum) growing on Cu smelter contaminated serpentine soil were explored in present study. Out of twenty-four isolates, Pseudomonas lurida strain EOO26 identified by 16s rRNA gene sequencing was selected to check its efficacy for Cu-remediation. The strain EOO26 showed multi-metal tolerance, drought resistance and exhibited PGP attributes such as 1-aminocyclopropane-1-carboxylic acid (ACC) deaminase, siderophore and ammonia production. Significant production of indole-3-acetic acid and phosphate-solubilization under different Cu concentration (0-100 mg L) at varying pH (5.0-8.0) suggests potentiality of this strain to work effectively under wide range of abiotic stress conditions. Plant growth experiment (pH 6.8 ± 0.3) in copper spiked soil suggested a significant increase in length and dry weight of root and shoot of sunflower (Helianthus annuus) after inoculation with strain EOO26. Plants inoculated with strain EOO26 resulted in increase in Cu uptake by 8.6-fold for roots and 1.9-fold for leaves than uninoculated plants. The total plant uptake in inoculated Cu treatment was 2.6-fold higher than uninoculated one, which is much higher than the previously reported Cu accumulating plants. The excellent adaptation abilities and promising metal removal efficiency strongly indicate superiority of strain EOO26 for phytoremediation of Cu-contamination and may work effectively for Cu removal from contaminated soils.

摘要

在现代农业实践中,有机肥成为了化肥的更好替代品,然而,有机肥中的铜(Cu)污染仍然是全球关注的主要问题。植物促生(PGP)微生物已经显示出它们在解决这一问题方面的效率,因此,本研究探索了在 Cu 冶炼厂污染蛇纹石土壤上生长的 Odontarrhena obovata(Alyssum obovatum)根部的 Cu 耐受 PGP 内生菌。在二十四株分离株中,通过 16s rRNA 基因测序鉴定出假单胞菌属的 Pseudomonas lurida 菌株 EOO26,选择该菌株以检查其对 Cu 修复的效果。该菌株 EOO26 表现出多金属耐受性、耐旱性,并表现出 PGP 属性,如 1-氨基环丙烷-1-羧酸(ACC)脱氨酶、铁载体和氨生成。在不同 Cu 浓度(0-100mg/L)和不同 pH 值(5.0-8.0)下,吲哚-3-乙酸和磷酸盐的大量产生表明该菌株在广泛的非生物胁迫条件下具有潜在的有效性。在添加 Cu 的土壤中的植物生长实验(pH 6.8±0.3)表明,在接种菌株 EOO26 后,向日葵(Helianthus annuus)的根和茎的长度和干重显著增加。与未接种植物相比,接种菌株 EOO26 的植物根部 Cu 吸收增加了 8.6 倍,叶片 Cu 吸收增加了 1.9 倍。接种 Cu 处理的总植物吸收量比未接种的高 2.6 倍,远高于以前报道的 Cu 积累植物。该菌株卓越的适应能力和有前景的金属去除效率表明,其在 Cu 污染的植物修复方面具有优越性,并可能有效地从污染土壤中去除 Cu。

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