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Promotion of growth and metal accumulation of alfalfa by coinoculation with Sinorhizobium and Agrobacterium under copper and zinc stress

机译:用铜和锌胁迫下的辛脉和土壤杆菌促进苜蓿生长和金属积累

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摘要

The Legume-Rhizobium symbiosis has been proposed as a promising technique for the phytoremediation of contaminated soils due to its beneficial activity in symbiotic nitrogen fixation. However, numerous studies have shown that excessive heavy metals reduce the efficiency of symbiotic nodulation with Rhizobium and inhibit plant growth. In this study, we aimed to evaluate the synergistic effects of IAA-producing bacteria and Rhizobium on Medicago lupulina growth under Cu and Zn stress. Pot experiments showed that 400 mg kg−1 Cu2 + and Zn2 + greatly inhibited plant growth, but dual inoculation of Medicago lupulina with Sinorhizobium meliloti CCNWSX0020 and Agrobacterium tumefaciens CCNWGS0286 significantly increased the number of nodules and plant biomass by enhancing antioxidant activities. Under double stress of 400 mg kg−1 Cu2 + and Zn2 +, the nodule number and nitrogenase activities of dual-inoculated plants were 48.5% and 154.4% higher, respectively, than those of plants inoculated with Sinorhizobium meliloti. The root and above-ground portion lengths of the dual-inoculated plants were 32.6% and 14.1% greater, respectively, than those of the control, while the root and above-ground portion dry weights were 34.3% and 32.2% greater, respectively, than those of the control. Compared with S. meliloti and A. tumefaciens single inoculation, coinoculation increased total Cu uptake by 39.1% and 47.5% and increased total Zn uptake by 35.4% and 44.2%, respectively, under double metal stress conditions. Therefore, coinoculation with Sinorhizobium meliloti and Agrobacterium tumefaciens enhances metal phytoextraction by increasing plant growth and antioxidant activities under Cu/Zn stress, which provides a new approach for bioremediation in heavy metal-contaminated soil.
机译:由于其在共生氮固定中的有益活性,已经提出了豆类植物 - 根瘤菌共生作为植入污染土壤植物化的有希望的技术。然而,许多研究表明,过量的重金属降低了具有根序和抑制植物生长的共生染色的效率。在这项研究中,我们旨在评估IAA产生的细菌和Rhizobium对Cu和Zn胁迫下Medicago Lupulina生长的协同作用。盆栽实验表明,400mg kg-1 cu2 +和Zn2 +大大抑制植物生长,但用Sinorhizobium Meliloti CCNWSX0020和土壤杆菌的双接种通过增强抗氧化活性显着增加结节和植物生物质的数量。在400mg KG-1的双应力下,分别比接种植物的植物分别为48.5%和154.4%,分别比接种SiNorhizobium Meliloti的植物的结节数和氮酶活性分别为48.5%和154.4%。双接种植物的根部和地上部分长度分别比对照的32.6%和14.1%,而根和地上部分干重分别为34.3%和32.2%,比控制权。与S. Meliloti和A.Tumefaciens单一接种相比,互序可增加39.1%和47.5%,并分别在双金属胁迫条件下增加35.4%和44.2%的总Zn吸收剂。因此,通过增加植物生长和Cu / Zn胁迫下的植物生长和抗氧化活性,用SiNorhizobium Meliloti和Tumefacia造成的植物植物植物诱导,这为重金属污染土壤中的生物化提供了一种新的生物化方法。

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