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Adsorption Characteristics of Indigenous Chromium-Resistant Aspergillus niger Strain Isolated from Red Soil for Remediation of Toxic Chromium in Red Soil Environments

The microbial treatment of soil has great potential to reduce chromium pollution. Here, an indigenous chromium-resistant Aspergillus niger strain (A1) was isolated and screened from heavily chromium-contaminated red soil in Yunnan Province, China using a traditional isolation method and a selective...

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Autores principales: Xu, Jiwei, Li, Lumeng, Wang, Huabin, Gao, Zhanyuan, Wang, Chuanshu, Sun, Rong, Zhang, Yong, Xu, Wumei, Hou, Xiying, Xu, Rui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9866775/
https://www.ncbi.nlm.nih.gov/pubmed/36668757
http://dx.doi.org/10.3390/toxics11010031
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author Xu, Jiwei
Li, Lumeng
Wang, Huabin
Gao, Zhanyuan
Wang, Chuanshu
Sun, Rong
Zhang, Yong
Xu, Wumei
Hou, Xiying
Xu, Rui
author_facet Xu, Jiwei
Li, Lumeng
Wang, Huabin
Gao, Zhanyuan
Wang, Chuanshu
Sun, Rong
Zhang, Yong
Xu, Wumei
Hou, Xiying
Xu, Rui
author_sort Xu, Jiwei
collection PubMed
description The microbial treatment of soil has great potential to reduce chromium pollution. Here, an indigenous chromium-resistant Aspergillus niger strain (A1) was isolated and screened from heavily chromium-contaminated red soil in Yunnan Province, China using a traditional isolation method and a selective culture experiment. The molecular identification of A1 was achieved using 18S rRNA sequencing. The tolerance of the strain to toxic chromium was evaluated through pure laboratory culture. The adsorption effect and mechanism of A1 on chromium in red soil were further studied. The study concluded that A1 exhibited strong activity with exposure to 500 mg·L(−1) Cr(6+). Chromium adsorption by A. niger occurred mainly through intracellular metabolism, surface complexations with EPS, and chemical reduction with -C=C-, -OXuH, NH(2), and -C=0. The optimized results showed that A1 had the best Cr(6+) removal effect at pH 4, 40 °C, and a 60 h culture time. Compared with the inoculating of exogenous microbial agents, after inoculating A1 into the chromium-contaminated red soil, Cr(6+) content was significantly reduced, and the high-toxicity chromium state (water-soluble and exchange states) decreased, whereas the low-toxicity chromium state (precipitation and residue states) increased. The results of red soil ITS also showed that the inoculation of indigenous microorganisms can better colonize the red soil. This study proves the feasibility of the application of indigenous A. niger to address red soil chromium pollution and provides a new idea and theoretical support for red soil remediation.
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spelling pubmed-98667752023-01-22 Adsorption Characteristics of Indigenous Chromium-Resistant Aspergillus niger Strain Isolated from Red Soil for Remediation of Toxic Chromium in Red Soil Environments Xu, Jiwei Li, Lumeng Wang, Huabin Gao, Zhanyuan Wang, Chuanshu Sun, Rong Zhang, Yong Xu, Wumei Hou, Xiying Xu, Rui Toxics Article The microbial treatment of soil has great potential to reduce chromium pollution. Here, an indigenous chromium-resistant Aspergillus niger strain (A1) was isolated and screened from heavily chromium-contaminated red soil in Yunnan Province, China using a traditional isolation method and a selective culture experiment. The molecular identification of A1 was achieved using 18S rRNA sequencing. The tolerance of the strain to toxic chromium was evaluated through pure laboratory culture. The adsorption effect and mechanism of A1 on chromium in red soil were further studied. The study concluded that A1 exhibited strong activity with exposure to 500 mg·L(−1) Cr(6+). Chromium adsorption by A. niger occurred mainly through intracellular metabolism, surface complexations with EPS, and chemical reduction with -C=C-, -OXuH, NH(2), and -C=0. The optimized results showed that A1 had the best Cr(6+) removal effect at pH 4, 40 °C, and a 60 h culture time. Compared with the inoculating of exogenous microbial agents, after inoculating A1 into the chromium-contaminated red soil, Cr(6+) content was significantly reduced, and the high-toxicity chromium state (water-soluble and exchange states) decreased, whereas the low-toxicity chromium state (precipitation and residue states) increased. The results of red soil ITS also showed that the inoculation of indigenous microorganisms can better colonize the red soil. This study proves the feasibility of the application of indigenous A. niger to address red soil chromium pollution and provides a new idea and theoretical support for red soil remediation. MDPI 2022-12-29 /pmc/articles/PMC9866775/ /pubmed/36668757 http://dx.doi.org/10.3390/toxics11010031 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Xu, Jiwei
Li, Lumeng
Wang, Huabin
Gao, Zhanyuan
Wang, Chuanshu
Sun, Rong
Zhang, Yong
Xu, Wumei
Hou, Xiying
Xu, Rui
Adsorption Characteristics of Indigenous Chromium-Resistant Aspergillus niger Strain Isolated from Red Soil for Remediation of Toxic Chromium in Red Soil Environments
title Adsorption Characteristics of Indigenous Chromium-Resistant Aspergillus niger Strain Isolated from Red Soil for Remediation of Toxic Chromium in Red Soil Environments
title_full Adsorption Characteristics of Indigenous Chromium-Resistant Aspergillus niger Strain Isolated from Red Soil for Remediation of Toxic Chromium in Red Soil Environments
title_fullStr Adsorption Characteristics of Indigenous Chromium-Resistant Aspergillus niger Strain Isolated from Red Soil for Remediation of Toxic Chromium in Red Soil Environments
title_full_unstemmed Adsorption Characteristics of Indigenous Chromium-Resistant Aspergillus niger Strain Isolated from Red Soil for Remediation of Toxic Chromium in Red Soil Environments
title_short Adsorption Characteristics of Indigenous Chromium-Resistant Aspergillus niger Strain Isolated from Red Soil for Remediation of Toxic Chromium in Red Soil Environments
title_sort adsorption characteristics of indigenous chromium-resistant aspergillus niger strain isolated from red soil for remediation of toxic chromium in red soil environments
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9866775/
https://www.ncbi.nlm.nih.gov/pubmed/36668757
http://dx.doi.org/10.3390/toxics11010031
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