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A nodule endophytic plant growth-promoting <Emphasis Type="Italic">Pseudomonas</Emphasis> and its effects on growth,nodulation and metal uptake in <Emphasis Type="Italic">Medicago lupulina</Emphasis> under copper stress
Authors:Zhaoyu Kong  Zhenshan Deng  Bernard R Glick  Gehong Wei  Minxia Chou
Institution:1.State Key Laboratory of Soil Erosion and Dryland Farming on the Loess Plateau, College of Life Sciences,Northwest A&F University,Yangling,China;2.Key Laboratory of Poyang Lake Environment and Resource, Ministry of Education, College of Life Science,Nanchang University,Nanchang,China;3.Department of Biology,University of Waterloo,Waterloo,Canada;4.College of Life Sciences,Yan’an University,Yan’an,China
Abstract:The aim of this study was to determine the plant growth-promoting potential of the nodule endophytic Pseudomonas brassicacearum strain Zy-2-1 when used as a co-inoculant of Medicago lupulina with Sinorhizobium meliloti under copper (Cu) stress conditions. Strain Zy-2-1 was capable of producing ACC deaminase activity, IAA and siderophores, and was able to grow in the presence of Cu2+ up to 2.0 mmol/L. Co-inoculation of S. meliloti with Zy-2-1 enhanced M. lupulina root fresh weight, total plant dry weight, number of nodules, nodule fresh weight and nitrogen content in the presence of 100 or 300 mg/kg Cu2+. In the presence of 500 mg/kg Cu2+, co-inoculation with S. meliloti and strain Zy-2-1 increased plant height, number of nodules, nodule fresh weight and nitrogen content in comparison to S. meliloti inoculation alone. Furthermore, a higher amount of Cu accumulation in both shoots and roots and a higher level of Cu translocation to shoots were observed in co-inoculated plants. These results demonstrate that co-inoculation of M. lupulina with S. meliloti and P. brassicacearum Zy-2-1 improves plant growth, nitrogen nutrition and metal extraction potential. This can be of practical importance in the remediation of heavy metal-contaminated soils.
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