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Effect of Silicate and Phosphate Solubilizing Rhizobacterium Enterobacter ludwigii GAK2 on Oryza sativa L. under Cadmium Stress

Silicon and phosphorus are elements that are beneficial for plant growth. Despite the abundant availability of silicate and phosphate in the Earth’s crust, crop nutritional requirements for silicon and phosphorus are normally met through the application of fertilizer. However, fertilizers are one of...

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Autores principales: Adhikari, Arjun, Lee, Ko-Eun, Khan, Muhammad Aaqil, Kang, Sang-Mo, Adhikari, Bishnu, Imran, Muhammad, Jan, Rahmatullah, Lee, Kyung-Min Kim and In-Jung
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Korean Society for Microbiology and Biotechnology 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9728408/
https://www.ncbi.nlm.nih.gov/pubmed/31650772
http://dx.doi.org/10.4014/jmb.1906.06010
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author Adhikari, Arjun
Lee, Ko-Eun
Khan, Muhammad Aaqil
Kang, Sang-Mo
Adhikari, Bishnu
Imran, Muhammad
Jan, Rahmatullah
Lee, Kyung-Min Kim and In-Jung
author_facet Adhikari, Arjun
Lee, Ko-Eun
Khan, Muhammad Aaqil
Kang, Sang-Mo
Adhikari, Bishnu
Imran, Muhammad
Jan, Rahmatullah
Lee, Kyung-Min Kim and In-Jung
author_sort Adhikari, Arjun
collection PubMed
description Silicon and phosphorus are elements that are beneficial for plant growth. Despite the abundant availability of silicate and phosphate in the Earth’s crust, crop nutritional requirements for silicon and phosphorus are normally met through the application of fertilizer. However, fertilizers are one of the major causes of heavy metal pollution. In our study, we aimed to assess silicate and phosphate solubilization by the bacteria Enterobacter ludwigii GAK2, in the presence and absence of phosphate [Ca(3)(PO(4))(2)] or silicate (Mg(2)O(8)Si(3)), to counteract cadmium stress in rice (Oryza sativa L). Our results showed that the GAK2-treated rice plants, grown in soil amended with phosphate [Ca(3)(PO(4))(2)] or silicate (Mg(2)O(8)Si(3)), had significantly reduced cadmium content, and enhanced plant growth promoting characteristics including fresh shoot and root weight, plant height, and chlorophyll content. These plants showed significant downregulation of the cadmium transporter gene, OsHMA2, and upregulation of the silicon carrier gene, OsLsi1. Moreover, jasmonic acid levels were significantly reduced in the GAK2-inoculated plants, and this was further supported by the downregulation of the jasmonic acid related gene, OsJAZ1. These results indicate that Enterobacter ludwigii GAK2 can be used as a silicon and phosphorus bio-fertilizer, which solubilizes insoluble silicate and phosphate, and mitigates heavy metal toxicity in crops.
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spelling pubmed-97284082022-12-13 Effect of Silicate and Phosphate Solubilizing Rhizobacterium Enterobacter ludwigii GAK2 on Oryza sativa L. under Cadmium Stress Adhikari, Arjun Lee, Ko-Eun Khan, Muhammad Aaqil Kang, Sang-Mo Adhikari, Bishnu Imran, Muhammad Jan, Rahmatullah Lee, Kyung-Min Kim and In-Jung J Microbiol Biotechnol Research article Silicon and phosphorus are elements that are beneficial for plant growth. Despite the abundant availability of silicate and phosphate in the Earth’s crust, crop nutritional requirements for silicon and phosphorus are normally met through the application of fertilizer. However, fertilizers are one of the major causes of heavy metal pollution. In our study, we aimed to assess silicate and phosphate solubilization by the bacteria Enterobacter ludwigii GAK2, in the presence and absence of phosphate [Ca(3)(PO(4))(2)] or silicate (Mg(2)O(8)Si(3)), to counteract cadmium stress in rice (Oryza sativa L). Our results showed that the GAK2-treated rice plants, grown in soil amended with phosphate [Ca(3)(PO(4))(2)] or silicate (Mg(2)O(8)Si(3)), had significantly reduced cadmium content, and enhanced plant growth promoting characteristics including fresh shoot and root weight, plant height, and chlorophyll content. These plants showed significant downregulation of the cadmium transporter gene, OsHMA2, and upregulation of the silicon carrier gene, OsLsi1. Moreover, jasmonic acid levels were significantly reduced in the GAK2-inoculated plants, and this was further supported by the downregulation of the jasmonic acid related gene, OsJAZ1. These results indicate that Enterobacter ludwigii GAK2 can be used as a silicon and phosphorus bio-fertilizer, which solubilizes insoluble silicate and phosphate, and mitigates heavy metal toxicity in crops. Korean Society for Microbiology and Biotechnology 2020-01-28 2019-10-25 /pmc/articles/PMC9728408/ /pubmed/31650772 http://dx.doi.org/10.4014/jmb.1906.06010 Text en Copyright©2020 by The Korean Society for Microbiology and Biotechnology https://creativecommons.org/licenses/by/4.0/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 Research article
Adhikari, Arjun
Lee, Ko-Eun
Khan, Muhammad Aaqil
Kang, Sang-Mo
Adhikari, Bishnu
Imran, Muhammad
Jan, Rahmatullah
Lee, Kyung-Min Kim and In-Jung
Effect of Silicate and Phosphate Solubilizing Rhizobacterium Enterobacter ludwigii GAK2 on Oryza sativa L. under Cadmium Stress
title Effect of Silicate and Phosphate Solubilizing Rhizobacterium Enterobacter ludwigii GAK2 on Oryza sativa L. under Cadmium Stress
title_full Effect of Silicate and Phosphate Solubilizing Rhizobacterium Enterobacter ludwigii GAK2 on Oryza sativa L. under Cadmium Stress
title_fullStr Effect of Silicate and Phosphate Solubilizing Rhizobacterium Enterobacter ludwigii GAK2 on Oryza sativa L. under Cadmium Stress
title_full_unstemmed Effect of Silicate and Phosphate Solubilizing Rhizobacterium Enterobacter ludwigii GAK2 on Oryza sativa L. under Cadmium Stress
title_short Effect of Silicate and Phosphate Solubilizing Rhizobacterium Enterobacter ludwigii GAK2 on Oryza sativa L. under Cadmium Stress
title_sort effect of silicate and phosphate solubilizing rhizobacterium enterobacter ludwigii gak2 on oryza sativa l. under cadmium stress
topic Research article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9728408/
https://www.ncbi.nlm.nih.gov/pubmed/31650772
http://dx.doi.org/10.4014/jmb.1906.06010
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