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用于改善石油污染盐碱土植物修复的内生菌株ZY16的特性及初步应用

Characterization and Initial Application of Endophytic Strain ZY16 for Improving Phytoremediation of Oil-Contaminated Saline Soils.

作者信息

Wu Tao, Xu Jie, Liu Jian, Guo Wei-Hua, Li Xiao-Bin, Xia Jiang-Bao, Xie Wen-Jun, Yao Zhi-Gang, Zhang Yu-Miao, Wang Ren-Qing

机构信息

Shandong Provincial Engineering and Technology Research Center for Wild Plant Resources Development and Application of Yellow River Delta, College of Biological and Environmental Engineering, Binzhou University, Binzhou, China.

Shandong Key Laboratory of Eco-Environmental Science for the Yellow River Delta, Binzhou University, Binzhou, China.

出版信息

Front Microbiol. 2019 May 7;10:991. doi: 10.3389/fmicb.2019.00991. eCollection 2019.

Abstract

Hydrocarbon-degrading and plant-growth-promoting bacterial endophytes have proven useful for facilitating the phytoremediation of petroleum-contaminated soils with high salinity. In this study, we identified strain ZY16 as an endophytic bacterium that can degrade hydrocarbons, produce biosurfactants, tolerate salt, and promote plant growth. The strain was isolated from the root of Sw., a halotolerant plant collected from the Yellow River Delta. ZY16 survived in Luria-Bertani (LB) broth with 0-16% (w/v) sodium chloride (NaCl) and grew well in LB broth supplemented with 0-8% NaCl, indicating its high salt tolerance. The endophytic strain ZY16 effectively degraded C-C -alkanes of diesel oil effectively, as well as common polycyclic aromatic hydrocarbons under hypersaline conditions. For example, in mineral salts (MS) liquid medium supplemented with 6% NaCl, ZY16 degraded -undecane, -hexadecane, -octacosane, naphthalene, phenanthrene, and pyrene, with degradation percentages of 94.5, 98.2, 64.8, 72.1, 59.4, and 27.6%, respectively. In addition, ZY16 produced biosurfactant, as confirmed by the oil spreading technique, surface tension detection, and emulsification of para-xylene and paraffin. The biosurfactant production ability of ZY16 under hypersaline conditions was also determined. Moreover, ZY16 showed plant-growth-promoting attributes, such as siderophore and indole-3-acetic acid production, as well as phosphate solubilization. To assess the enhanced phytoremediation of saline soils polluted by hydrocarbons and the plant-growth-promotion ability of ZY16, a pot trial with and without inoculation of the endophyte was designed and performed. Inoculated and non-inoculated plantlets of Sw. were grown in oil-polluted saline soil, with oil and salt contents of 10462 mg/kg and 0.51%, respectively. After 120 days of growth, significant enhancement of both the aerial and underground biomass of ZY16-inoculated plants was observed. The soil total petroleum hydrocarbon degradation percentage (a metric of phytoremediation) after incubation with ZY16 was 63.2%, representing an elevation of 25.7% over phytoremediation without ZY16 inoculation. Our study should promote the application of endophytic ZY16 in phytoremediation by extending our understanding of the mutualistic interactions between endophytes and their host plants.

摘要

已证实,降解碳氢化合物和促进植物生长的细菌内生菌有助于对高盐度石油污染土壤进行植物修复。在本研究中,我们鉴定出菌株ZY16为一种能够降解碳氢化合物、产生生物表面活性剂、耐受盐分并促进植物生长的内生细菌。该菌株从黄河三角洲采集的耐盐植物盐地碱蓬的根部分离得到。ZY16能在含有0 - 16%(w/v)氯化钠(NaCl)的Luria - Bertani(LB)肉汤中存活,并在添加0 - 8% NaCl的LB肉汤中生长良好,表明其具有高耐盐性。内生菌株ZY16能在高盐条件下有效降解柴油中的C - C - 烷烃以及常见的多环芳烃。例如,在添加6% NaCl的矿物盐(MS)液体培养基中,ZY16降解十一烷、十六烷、二十八烷、萘、菲和芘的降解率分别为94.5%、98.2%、64.8%、72.1%、59.4%和27.6%。此外,通过油扩散技术、表面张力检测以及对二甲苯和石蜡的乳化作用证实ZY16能产生生物表面活性剂。还测定了ZY16在高盐条件下的生物表面活性剂生产能力。而且,ZY16表现出促进植物生长的特性,如产生铁载体和吲哚 - 3 - 乙酸以及溶解磷酸盐。为评估ZY16对碳氢化合物污染的盐渍土壤植物修复的增强作用以及其促进植物生长的能力,设计并进行了有无接种内生菌的盆栽试验。接种和未接种ZY16的盐地碱蓬幼苗种植在油污盐渍土壤中,土壤中石油和盐分含量分别为10462 mg/kg和0.51%。生长120天后,观察到接种ZY16的植物地上和地下生物量均显著增加。与ZY16共同培养后土壤总石油烃降解率(植物修复指标)为63.2%,比未接种ZY16的植物修复提高了25.7%。我们的研究通过拓展对内生菌与其宿主植物之间互利共生相互作用的理解,应能促进内生菌ZY16在植物修复中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dfe2/6515983/b407c64ef55f/fmicb-10-00991-g001.jpg

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