Literature DB >> 30489679

The potential of cadmium ion-immobilized Rhizobium pusense KG2 to prevent soybean root from absorbing cadmium in cadmium-contaminated soil.

Y Li1, X Yu1, Y Cui2, W Tu2, T Shen1, M Yan1, Y Wei1, X Chen1, Q Wang2, Q Chen1, Y Gu1, K Zhao1, Q Xiang1, L Zou1, M Ma1.   

Abstract

AIMS: Because the effect of Cd2+ -immobilized microbe on Cd uptake of plants in Cd-contaminated soil remains underexplored, this study focuses on the effect of Cd2+ -immobilized rhizobia on Cd uptake of soybean. METHODS AND
RESULTS: Strain KG2 from soybean nodule was identified as Rhizobium pusense KG2 by phylogenetic analysis. Rhizobium pusense KG2 showed the 120 mg l-1 of minimal lethal concentration for Cd2+ . In 50 and 100 mg l-1 of Cd2+ liquid, approximately 2 × 1010 cells removed 56·71 and 22·11% of Cd2+ , respectively. In pot soil containing 50 and 100 mg kg-1 of Cd2+ , strain KG2 caused a 45·9 and 35·3% decrease in soybean root Cd content, respectively. Meanwhile, KG2 improved the root and shoot length, nitrogen content and biomass of soybean plants and superoxide dismutase activity.
CONCLUSIONS: The Cd2+ -immobilized rhizobia could inhibit soybean plants to absorb Cd2+ from soil, promote plant growth and improve plant's tolerance against Cd. This study is the first time to report that R. pusense is an effective nodulating rhizobium of legume. SIGNIFICANCE AND IMPACT OF THE STUDY: Some Cd2+ -immobilized microbe lowering Cd uptake of plant and promoting plant growth should be considered as an effective strategy for producing safety crops in the Cd-contaminated agricultural soil.
© 2018 The Society for Applied Microbiology.

Entities:  

Keywords:  zzm321990Rhizobium pusensezzm321990; cadmium; immobilization; rhizobia; soybean

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Year:  2019        PMID: 30489679     DOI: 10.1111/jam.14165

Source DB:  PubMed          Journal:  J Appl Microbiol        ISSN: 1364-5072            Impact factor:   3.772


  3 in total

Review 1.  Mechanism and application of Sesbania root-nodulating bacteria: an alternative for chemical fertilizers and sustainable development.

Authors:  Kuldeep Singh; Rajesh Gera; Ruchi Sharma; Damini Maithani; Dinesh Chandra; Mohammad Amin Bhat; Rishendra Kumar; Pankaj Bhatt
Journal:  Arch Microbiol       Date:  2021-01-03       Impact factor: 2.552

2.  Effects of Co-application of Cadmium-Immobilizing Bacteria and Organic Fertilizers on Houttuynia cordata and Microbial Communities in a Cadmium-Contaminated Field.

Authors:  Xiumei Yu; Min Yan; Yongliang Cui; Zhongyi Liu; Han Liu; Jie Zhou; Jiahao Liu; Lan Zeng; Qiang Chen; Yunfu Gu; Likou Zou; Ke Zhao; Quanju Xiang; Menggen Ma; Shuangcheng Li
Journal:  Front Microbiol       Date:  2022-05-06       Impact factor: 6.064

3.  Cadmium-Tolerant Rhizospheric Bacteria of the C3/CAM Intermediate Semi-Halophytic Common Ice Plant (Mesembryanthemum crystallinum L.) Grown in Contaminated Soils.

Authors:  Paulina Supel; Marta Śliwa-Cebula; Zbigniew Miszalski; Paweł Kaszycki
Journal:  Front Plant Sci       Date:  2022-03-08       Impact factor: 5.753

  3 in total

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