首页> 外文期刊>Journal of Hazardous Materials >Moving closer towards restoration of contaminated estuaries: Bioaugmentation with autochthonous rhizobacteria improves metal rhizoaccumulation in native Spartina maritima
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Moving closer towards restoration of contaminated estuaries: Bioaugmentation with autochthonous rhizobacteria improves metal rhizoaccumulation in native Spartina maritima

机译:朝着恢复污染河口的方向更近:利用本地根瘤菌进行生物强化可改善海地斯巴迪娜(Spartina maritima)的金属根际积累

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摘要

Spartina maritima is an ecosystem engineer that has shown to be useful for phytoremediation purposes. A glasshouse experiment using soil from a metal-contaminated estuary was designed to investigate the effect of a native bacterial consortium, isolated from S. maritima rizhosphere and selected owing to their plant growth promoting properties and multiresistance to heavy metals, on plant growth and metal accumulation. Plants of S. maritima were randomly assigned to three soil bioaugmentation treatments (without inoculation, one inoculation and repeated inoculations) for 30 days. Growth parameters and photosynthetic traits, together with total concentrations of several metals were determined in roots and/or leaves. Bacterial inoculation improved root growth, through a beneficial effect on photosynthetic rate (A(N)) due to its positive impact on functionality of PSII and chlorophyll concentration. Also, favoured intrinsic water use efficiency of S. maritima, through the increment in A(N), stomatal conductance and in root-to-shoot ratio. Moreover, this consortium was able to stimulate plant metal uptake specifically in roots, with increases of up to 19% for As, 65% for Cu, 40% for Pb and 29% for Zn. Thus, bioaugmentation of S. maritima with the selected bacterial consortium can be claimed to enhance plant adaptation and metal rhizoaccumulation during marsh restoration programs. (C) 2015 Elsevier B.V. All rights reserved.
机译:Spartina maritima是一位生态系统工程师,已被证明可用于植物修复。设计了一个温室实验,该实验使用的是金属污染河口的土壤,目的是研究从海链球菌中分离出的天然细菌聚生体,该聚生体因其具有促进植物生长的特性和对重金属的多重抗性而被选择对植物生长和金属积累的影响。将海链球菌的植物随机分配到三种土壤生物强化处理中(不接种,一次接种和重复接种),持续30天。确定根和/或叶的生长参数和光合特性以及几种金属的总浓度。细菌接种通过对光合速率(A(N))产生有益影响,从而改善了根系的生长,因为它对PSII的功能和叶绿素浓度具有积极影响。此外,通过增加A(N),气孔导度和根冠比,有利于海链球菌的内在水分利用效率。此外,该财团能够特别刺激根部吸收植物金属,其中As的增加高达19%,Cu的增加高达65%,Pb的增加40%,Zn的增加29%。因此,可以声称用选定的细菌财团对海链球菌进行了生物增强,以增强沼泽恢复计划期间的植物适应性和金属根际积累。 (C)2015 Elsevier B.V.保留所有权利。

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