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首页> 外文期刊>Annals of microbiology >A nodule endophytic plant growth-promoting Pseudomonas and its effects on growth, nodulation and metal uptake in Medicago lupulina under copper stress
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A nodule endophytic plant growth-promoting Pseudomonas and its effects on growth, nodulation and metal uptake in Medicago lupulina under copper stress

机译:铜胁迫下结节内生植物假单胞菌的生长及其对紫花苜蓿生长,结瘤和金属吸收的影响

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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.
机译:这项研究的目的是确定在铜(Cu)胁迫条件下,紫茎泽兰假单胞菌与苜蓿中华根瘤菌(Sinorhizobium meliloti)共同使用时,结节内生铜绿假单胞菌菌株Zy-2-1的植物生长潜力。 Zy-2-1菌株能够产生ACC脱氨酶活性,IAA和铁载体,并且能够在Cu2 +存在下生长至2.0?mmol / L。在100或300?mg / kg Cu2 +的存在下,苜蓿链球菌与Zy-2-1共同接种可增强棉铃虫根鲜重,总干重,根瘤数,根瘤鲜重和氮含量。在500?mg / kg Cu2 +存在下,与单独接种S.meliloti相比,与S.meliloti和菌株Zy-2-1共同接种可增加株高,根瘤数,根瘤鲜重和氮含量。此外,在共接种的植物中观察到较高的铜在茎和根中的积累和较高水平的铜向芽的转运。这些结果表明,将棉铃虫与苜蓿链球菌和芸苔假单胞菌Zy-2-1一起接种可改善植物生长,氮素营养和金属提取潜力。这在重金属污染土壤的修复中可能具有实际意义。

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