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根际细菌菌株干酪短杆菌MH8a定殖于植物组织并增强白芥对镉、锌、铜的植物提取作用。

Rhizospheric Bacterial Strain Brevibacterium casei MH8a Colonizes Plant Tissues and Enhances Cd, Zn, Cu Phytoextraction by White Mustard.

作者信息

Płociniczak Tomasz, Sinkkonen Aki, Romantschuk Martin, Sułowicz Sławomir, Piotrowska-Seget Zofia

机构信息

Department of Microbiology, University of Silesia in Katowice Katowice, Poland.

Department of Environmental Sciences, University of HelsinkiLahti, Finland; Institute of Environmental Sciences, Kazan Federal UniversityKazan, Russia.

出版信息

Front Plant Sci. 2016 Feb 16;7:101. doi: 10.3389/fpls.2016.00101. eCollection 2016.

Abstract

Environmental pollution by heavy metals has become a serious problem in the world. Phytoextraction, which is one of the plant-based technologies, has attracted the most attention for the bioremediation of soils polluted with these contaminants. The aim of this study was to determine whether the multiple-tolerant bacterium, Brevibacterium casei MH8a isolated from the heavy metal-contaminated rhizosphere soil of Sinapis alba L., is able to promote plant growth and enhance Cd, Zn, and Cu uptake by white mustard under laboratory conditions. Additionally, the ability of the rifampicin-resistant spontaneous mutant of MH8a to colonize plant tissues and its mechanisms of plant growth promotion were also examined. In order to assess the ecological consequences of bioaugmentation on autochthonous bacteria, the phospholipid fatty acid (PLFA) analysis was used. The MH8a strain exhibited the ability to produce ammonia, 1-amino-cyclopropane-1-carboxylic acid deaminase, indole 3-acetic acid and HCN but was not able to solubilize inorganic phosphate and produce siderophores. Introduction of MH8a into soil significantly increased S. alba biomass and the accumulation of Cd (208%), Zn (86%), and Cu (39%) in plant shoots in comparison with those grown in non-inoculated soil. Introduced into the soil, MH8a was able to enter the plant and was found in the roots and leaves of inoculated plants thus indicating its endophytic features. PLFA analysis revealed that the MH8a that was introduced into soil had a temporary influence on the structure of the autochthonous bacterial communities. The plant growth-promoting features of the MH8a strain and its ability to enhance the metal uptake by white mustard and its long-term survival in soil as well as its temporary impact on autochthonous microorganisms make the strain a suitable candidate for the promotion of plant growth and the efficiency of phytoextraction.

摘要

重金属造成的环境污染已成为全球一个严重问题。植物提取作为基于植物的技术之一,在这些污染物污染土壤的生物修复方面最受关注。本研究的目的是确定从白芥重金属污染根际土壤中分离出的多重耐受细菌——酪蛋白短杆菌MH8a,在实验室条件下是否能够促进植物生长,并增强白芥对镉、锌和铜的吸收。此外,还研究了MH8a的利福平抗性自发突变体在植物组织中定殖的能力及其促进植物生长的机制。为了评估生物强化对本地细菌的生态影响,采用了磷脂脂肪酸(PLFA)分析方法。MH8a菌株具有产生氨、1-氨基环丙烷-1-羧酸脱氨酶、吲哚-3-乙酸和HCN的能力,但不能溶解无机磷酸盐和产生铁载体。与未接种土壤中生长的植株相比,将MH8a引入土壤显著增加了白芥生物量以及植物地上部镉(208%)、锌(86%)和铜(39%)的积累。引入土壤后,MH8a能够进入植物体内,并在接种植物的根和叶中被发现,这表明其具有内生特性。PLFA分析表明,引入土壤中的MH8a对本地细菌群落结构有短暂影响。MH8a菌株促进植物生长的特性、增强白芥对金属吸收的能力、在土壤中的长期存活以及对本地微生物的短暂影响,使其成为促进植物生长和提高植物提取效率的合适候选菌株。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4522/4754770/df292ed6bb76/fpls-07-00101-g001.jpg

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