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Increased plant growth and copper uptake of host and non-host plants by metal-resistant and plant growth-promoting endophytic bacteria

机译:具有金属抗性和促进植物生长的内生细菌提高植物生长以及宿主植物和非宿主植物对铜的吸收

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The effects of inoculation with two metal-resistant and plant growth-promoting endophytic bacteria (Burkholderia sp. GL12 and Bacillus megaterium JL35) were evaluated on the plant growth and Cu uptake in their host Elsholtzia splendens and non-host Brassica napus plants grown in natural Cu-contaminated soil. The two strains showed a high level of ACC deaminase activities. In pot experiments, inoculation with strain GL12 significantly increased root and above-ground tissue dry weights of both plants, consequently increasing the total Cu uptake of E. splendens and Brassica napus by 132% and 48.2% respectively. Inoculation with strain JL35 was found to significantly increase not only the biomass of B. napus, consequently increasing the total Cu uptake of B. napus by 31.3%, but Cu concentration of E. splendens for above-ground tissues by 318% and roots by 69.7%, consequently increasing the total Cu uptake of E. splendens by 223%. The two strains could colonize the rhizosphere soils and root interiors of both plants. Notably, strain JL35 could colonize the shoot tissues and significantly increase the translocation factors and bioaccumulation factors of E. splendens. These results suggested that Burkholderia sp. GL12 and B. megaterium JL35 were valuable bacterial resource which had the potential in improving the efficiency of Cu phytoextraction by E. splendens and B. napus in a natural Cu-contaminated soil.
机译:评估了接种两种对金属具有抗性并能促进植物生长的内生细菌(伯克霍尔德氏菌GL12和巨大芽孢杆菌JL35)对它们在自然生长的寄主Elsholtzia splendens和非寄主Brassica napus植物中生长和吸收铜的影响。铜污染的土壤。这两个菌株显示出高水平的ACC脱氨酶活性。在盆栽实验中,接种GL12菌株会显着增加两种植物的根和地上组织干重,因此分别使锦绣肠球菌和甘蓝型油菜的总铜吸收量增加132%和48.2%。发现用菌株JL35接种不仅显着增加了甘蓝型油菜的生物量,因此使甘蓝型油菜的总Cu吸收量增加了31.3%,但地上组织的len草的Cu浓度增加了318%,根部的Cu浓度增加了。 69.7%,因此使len草大肠杆菌的总铜吸收量增加了223%。这两种菌株可以在两种植物的根际土壤和根部内部定殖。值得注意的是,菌株JL35可以定殖在芽组织中,并显着增加脾脏大肠杆菌的转运因子和生物积累因子。这些结果表明伯克霍尔德氏菌。 GL12和巨大芽孢杆菌JL35是有价值的细菌资源,它们有潜力在天然铜污染的土壤中提高大肠埃希氏菌和油菜芽胞杆菌对铜的植物提取效率。

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