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Environ Sci Pollut Res Int. 2017 Feb;24(5):4322-4336. doi: 10.1007/s11356-015-4935-3. Epub 2015 Jul 3.
2
Phytoremediation of Metal Contaminated Soil Using Willow: Exploiting Plant-Associated Bacteria to Improve Biomass Production and Metal Uptake.利用柳树对金属污染土壤进行植物修复:利用植物相关细菌提高生物量产量和金属吸收量
Int J Phytoremediation. 2015;17(11):1123-36. doi: 10.1080/15226514.2015.1045129.
3
Selenium hyperaccumulators harbor a diverse endophytic bacterial community characterized by high selenium resistance and plant growth promoting properties.硒超积累植物体内蕴藏着具有高抗硒性和促进植物生长特性的多样化内生细菌群落。
Front Plant Sci. 2015 Mar 2;6:113. doi: 10.3389/fpls.2015.00113. eCollection 2015.
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Plant genotype-specific archaeal and bacterial endophytes but similar Bacillus antagonists colonize Mediterranean olive trees.植物基因型特异性古菌和细菌内共生体,但类似芽孢杆菌拮抗剂定殖地中海油橄榄树。
Front Microbiol. 2015 Mar 3;6:138. doi: 10.3389/fmicb.2015.00138. eCollection 2015.
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Degradation, phytoprotection and phytoremediation of phenanthrene by endophyte Pseudomonas putida, PD1.内生菌 Pseudomonas putida PD1 对菲的降解、植物保护和植物修复。
Environ Sci Technol. 2014 Oct 21;48(20):12221-8. doi: 10.1021/es503880t. Epub 2014 Oct 13.
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Enhanced Polychlorinated Biphenyl Removal in a Switchgrass Rhizosphere by Bioaugmentation with LB400.通过用LB400进行生物强化提高柳枝稷根际中多氯联苯的去除率
Ecol Eng. 2014 Oct 1;71:215-222. doi: 10.1016/j.ecoleng.2014.07.046.
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The endophytic bacterium, Sphingomonas SaMR12, improves the potential for zinc phytoremediation by its host, Sedum alfredii.内生细菌鞘氨醇单胞菌SaMR12提高了其宿主东南景天对锌的植物修复潜力。
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The Potential of the Ni-Resistant TCE-Degrading Pseudomonas putida W619-TCE to Reduce Phytotoxicity and Improve Phytoremediation Efficiency of Poplar Cuttings on A Ni-TCE Co-Contamination.抗镍三氯乙烯降解恶臭假单胞菌W619-TCE降低镍-三氯乙烯共污染土壤中杨树插条的植物毒性并提高植物修复效率的潜力
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Diversity, biocontrol, and plant growth promoting abilities of xylem residing bacteria from solanaceous crops.茄科作物木质部内生细菌的多样性、生物防治及促进植物生长能力
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Enhanced degradation of textile effluent in constructed wetland system using Typha domingensis and textile effluent-degrading endophytic bacteria.利用香蒲和纺织废水降解内生菌增强人工湿地系统对纺织废水的降解。
Water Res. 2014 Jul 1;58:152-9. doi: 10.1016/j.watres.2014.03.064. Epub 2014 Apr 2.

内生植物强化修复:通过强化植物修复处理废水和径流。

Endophytic Phytoaugmentation: Treating Wastewater and Runoff Through Augmented Phytoremediation.

作者信息

Redfern Lauren K, Gunsch Claudia K

机构信息

Department of Civil and Environmental Engineering, Duke University , Durham, NC.

出版信息

Ind Biotechnol (New Rochelle N Y). 2016 Apr 1;12(2):83-90. doi: 10.1089/ind.2015.0016.

DOI:10.1089/ind.2015.0016
PMID:27158249
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4835827/
Abstract

Limited options exist for efficiently and effectively treating water runoff from agricultural fields and landfills. Traditional treatments include excavation, transport to landfills, incineration, stabilization, and vitrification. In general, treatment options relying on biological methods such as bioremediation have the ability to be applied in situ and offer a sustainable remedial option with a lower environmental impact and reduced long-term operating expenses. These methods are generally considered ecologically friendly, particularly when compared to traditional physicochemical cleanup options. Phytoremediation, which relies on plants to take up and/or transform the contaminant of interest, is another alternative treatment method which has been developed. However, phytoremediation is not widely used, largely due to its low treatment efficiency. Endophytic phytoaugmentation is a variation on phytoremediation that relies on augmenting the phytoremediating plants with exogenous strains to stimulate associated plant-microbe interactions to facilitate and improve remediation efficiency. In this review, we offer a summary of the current knowledge as well as developments in endophytic phytoaugmentation and present some potential future applications for this technology. There has been a limited number of published endophytic phytoaugmentation case studies and much remains to be done to transition lab-scale results to field applications. Future research needs include large-scale endophytic phytoaugmentation experiments as well as the development of more exhaustive tools for monitoring plant-microbe-pollutant interactions.

摘要

有效且高效地处理农田和垃圾填埋场的径流的选择有限。传统处理方法包括挖掘、运往垃圾填埋场、焚烧、稳定化和玻璃化。一般来说,依赖生物修复等生物方法的处理选项能够原位应用,提供一种具有较低环境影响和降低长期运营成本的可持续修复方案。这些方法通常被认为是生态友好的,特别是与传统的物理化学清理选项相比。植物修复依赖植物吸收和/或转化目标污染物,是另一种已开发的替代处理方法。然而,植物修复并未得到广泛应用,主要是因为其处理效率较低。内生植物强化是植物修复的一种变体,它依赖于用外源菌株增强植物修复植物,以刺激相关的植物-微生物相互作用,从而促进和提高修复效率。在本综述中,我们总结了内生植物强化的现有知识和进展,并介绍了该技术未来的一些潜在应用。已发表的内生植物强化案例研究数量有限,将实验室规模的结果转化为现场应用仍有许多工作要做。未来的研究需求包括大规模的内生植物强化实验,以及开发更详尽的工具来监测植物-微生物-污染物的相互作用。