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Transfer of radiocesium from rhizosphere soil to four cruciferous vegetables in association with a Bacillus pumilus strain and root exudation

机译:根际土壤中的放射性铯与短小芽孢杆菌菌株和根系分泌物的结合向四种十字花科蔬菜转移

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This study was carried out to assess the effect of Bacillus pumilus on the roots of four cruciferous vegetables with different root structures in regard to enhancement of Cs-137 bioavailability in contaminated rhizosphere soil. Results revealed that B. pumilus inoculation did not enhance the plant biomass of vegetables, although it increased root volume and root surface areas of all vegetables except turnip. The pH changes due to rhizosphere acidification by B. pumilus inoculation and root exudation did not affect the bioavailability of Cs-137. However, concentrations of Cs-137 in plant tissues and soil-to-plant transfer values increased as a result of the larger root volume and root surface area of vegetables due to inoculation. Moreover, leafy vegetables, which possessed larger root volume and root surface areas, had a higher Cs-137 transfer value than root vegetables. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本研究旨在评估短小芽孢杆菌对四种具有不同根结构的十字花科蔬菜根系的影响,以增强受污染根际土壤中Cs-137的生物利用度。结果表明,短双歧杆菌的接种虽然增加了萝卜以外的所有蔬菜的根体积和根表面积,但并未增强蔬菜的植物生物量。由于短小芽孢杆菌接种和根系渗出导致的根际酸化,pH值变化不会影响Cs-137的生物利用度。但是,由于接种增加了蔬菜的根部体积和根部表面积,导致植物组织中Cs-137的浓度和土壤向植物的转移值增加。此外,具有较大根部体积和根部表面积的多叶蔬菜具有比根部蔬菜更高的Cs-137转移值。 (C)2016 Elsevier Ltd.保留所有权利。

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