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Role of soil associated Exiguobacterium in reducing arsenic toxicity and promoting plant growth in Vigna radiata

机译:土壤相关Exiguobacterium在降低Vigna radiata的砷毒性和促进植物生长中的作用

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The present work describes the effects of inoculating metal resistant and plant growth promoting bacteria (PGPB) on the growth of Vigna radiata under arsenic (As) stress. The Exiguobacterium sp. strain, As-9 was isolated from arsenic contaminated soil, which showed resistance to exceptionally high concentrations of As(V) and As(III). Assessment of plant growth promoting parameters revealed the ability of the strain for the solubilization of phosphate, production of indole-3-acetic acid (IAA) and exopolysaccharide (EPS). Soil inoculated with this arsenic resistant PGPB in the presence of high concentrations of As(V) and As(III) was used for the germination of seeds of V. radiata under controlled conditions. The in vitro experiments proved that Exiguobacterium significantly (p 0.05) increased the shoot and root biomass of V radiata in the presence of As(V) and As(III) together with increase in the plant height, survival index and chlorophyll content after 15 days of inoculation. It also protected the plants from the detrimental effects of arsenic by reducing its uptake and translocation by colonizing the root surface. In addition, assay of antioxidant enzymes and lipid peroxidation test revealed significant (p 0.01) reduction in arsenic-induced oxidative stress in V. radiata in the presence of bacteria. Owing to its wide action spectrum, the arsenic resistant PGPB could provide a new insight into the remediation of arsenic contaminated soil and serve as an effective growth promoting bioinoculant for plants in metal stressed soil. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:本工作描述了在砷(As)胁迫下接种金属抗性和植物生长促进细菌(PGPB)对辐射豆的生长的影响。 Exiguobacterium sp.。从砷污染的土壤中分离出As-9菌株,该菌株对高浓度的As(V)和As(III)表现出抗性。对植物生长促进参数的评估揭示了该菌株对磷酸盐的溶解能力,吲哚-3-乙酸(IAA)和胞外多糖(EPS)的产生。在受控条件下,将在高浓度As(V)和As(III)存在下接种了这种抗砷的PGPB的土壤用于放射状弧菌种子的发芽。体外实验证明,在有As(V)和As(III)存在的情况下,Exiguobacterium显着(p <0.05)增加了V radiata的枝条和根生物量,并且在15周后提高了株高,存活指数和叶绿素含量接种天数。它还通过在根表面定植来减少砷的吸收和转运,从而保护植物免受砷的有害影响。此外,抗氧化酶的测定和脂质过氧化试验表明,在存在细菌的情况下,辐射引起的弧菌中砷诱导的氧化应激显着降低(p <0.01)。由于其广泛的作用谱,抗砷性PGPB可以为砷污染土壤的修复提供新的见解,并可以作为一种有效的促进金属胁迫土壤中植物生长的生物抑制剂。 (C)2016 Elsevier Masson SAS。版权所有。

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