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Modulation of Spartina densiflora plant growth and metal accumulation upon selective inoculation treatments: A comparison of gram negative and gram positive rhizobacteria

机译:选择性接种处理后对疏叶草(Spartina densiflora)植物生长和金属积累的调节:革兰氏阴性菌和革兰氏阳性菌的比较

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Metal contamination of estuaries is a severe environmental problem, for which phytoremediation is gaining momentum. In particular, the associations between halophytes-autochthonous rhizobacteria have proven useful for metal phytostabilization in salt marshes. In this work, three bacterial strains (gram-negative and gram positive) were used for Spartina densiflora inoculation. All three bacteria, particularly Pantoea strains, promoted plant growth and mitigated metal stress on polluted sediments, as revealed from functionality of the photosynthetic apparatus (PSII) and maintenance of nutrient balance. Pantoea strains did not significantly affect metal accumulation in plant roots, whereas the Bacillus strain enhanced it. Metal loading to shoots depended on particular elements, although in all cases it fell below the threshold for animal consumption. Our results confirm the possibility of modulating plant growth and metal accumulation upon selective inoculation, and the suitability of halophyte-rhizobacteria interactions as biotechnological tools for metal phytostabilization in salt marshes, preventing metal transfer to the food chain.
机译:河口的金属污染是一个严重的环境问题,对其进行植物修复的势头越来越大。特别地,已证明盐生植物-自生根际细菌之间的关联对于盐沼中的金属植物稳定是有用的。在这项工作中,使用了三种细菌菌株(革兰氏阴性和革兰氏阳性)来接种斯巴迪娜菌。从光合作用装置(PSII)的功能性和养分平衡的维持中可以看出,所有三种细菌,特别是泛菌菌株,都促进了植物的生长并减轻了被污染沉积物上的金属胁迫。泛菌菌株没有显着影响植物根系中的金属积累,而芽孢杆菌菌株增强了它。枝条上的金属负载取决于特定元素,尽管在所有情况下,金属负载均低于动物消耗的阈值。我们的结果证实了选择性接种后调节植物生长和金属积累的可能性,以及盐生植物-根际细菌相互作用作为盐沼中金属植物稳定化的生物技术工具的适用性,可防止金属转移到食物链中。

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