Production, purification, and characterization of bacillibactin siderophore of bacillus subtilis and its application for improvement in plant growth and oil content in sesame

Siderophores are low molecular weight secondary metabolites produced by microorganisms under low iron stress as a specific iron chelator. In the present study, a rhizospheric bacterium was isolated from the rhizosphere of sesame plants from Salem district, Tamil Nadu, India and later identified as B...

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Main Authors: Nithyapriya, S., Sundaram Lalitha, Sundaram Lalitha, Sayyed, R. Z., Reddy, M. S., Dailin, Daniel Joe, El Enshasy, Hesham A., Ni Luh Suriani, Ni Luh Suriani, Herlambang, Susila
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Published: MDPI AG 2021
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Online Access:http://eprints.utm.my/id/eprint/95292/
http://dx.doi.org/10.3390/su13105394
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Institution: Universiti Teknologi Malaysia
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spelling my.utm.952922022-04-29T22:26:13Z http://eprints.utm.my/id/eprint/95292/ Production, purification, and characterization of bacillibactin siderophore of bacillus subtilis and its application for improvement in plant growth and oil content in sesame Nithyapriya, S. Sundaram Lalitha, Sundaram Lalitha Sayyed, R. Z. Reddy, M. S. Dailin, Daniel Joe El Enshasy, Hesham A. Ni Luh Suriani, Ni Luh Suriani Herlambang, Susila QD Chemistry Siderophores are low molecular weight secondary metabolites produced by microorganisms under low iron stress as a specific iron chelator. In the present study, a rhizospheric bacterium was isolated from the rhizosphere of sesame plants from Salem district, Tamil Nadu, India and later identified as Bacillus subtilis LSBS2. It exhibited multiple plant-growth-promoting (PGP) traits such as hydrogen cyanide (HCN), ammonia, and indole acetic acid (IAA), and solubilized phosphate. The chrome azurol sulphonate (CAS) agar plate assay was used to screen the siderophore production of LSBS2 and quantitatively the isolate produced 296 mg/L of siderophores in succinic acid medium. Further characterization of the siderophore revealed that the isolate produced catecholate siderophore bacillibactin. A pot culture experiment was used to explore the effect of LSBS2 and its siderophore in promoting iron absorption and plant growth of Sesamum indicum L. Data from the present study revealed that the multifarious Bacillus sp. LSBS2 could be exploited as a potential bioinoculant for growth and yield improvement in S. indicum. MDPI AG 2021 Article PeerReviewed Nithyapriya, S. and Sundaram Lalitha, Sundaram Lalitha and Sayyed, R. Z. and Reddy, M. S. and Dailin, Daniel Joe and El Enshasy, Hesham A. and Ni Luh Suriani, Ni Luh Suriani and Herlambang, Susila (2021) Production, purification, and characterization of bacillibactin siderophore of bacillus subtilis and its application for improvement in plant growth and oil content in sesame. Sustainability (Switzerland), 13 (10). p. 5394. ISSN 2071-1050 http://dx.doi.org/10.3390/su13105394
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic QD Chemistry
spellingShingle QD Chemistry
Nithyapriya, S.
Sundaram Lalitha, Sundaram Lalitha
Sayyed, R. Z.
Reddy, M. S.
Dailin, Daniel Joe
El Enshasy, Hesham A.
Ni Luh Suriani, Ni Luh Suriani
Herlambang, Susila
Production, purification, and characterization of bacillibactin siderophore of bacillus subtilis and its application for improvement in plant growth and oil content in sesame
description Siderophores are low molecular weight secondary metabolites produced by microorganisms under low iron stress as a specific iron chelator. In the present study, a rhizospheric bacterium was isolated from the rhizosphere of sesame plants from Salem district, Tamil Nadu, India and later identified as Bacillus subtilis LSBS2. It exhibited multiple plant-growth-promoting (PGP) traits such as hydrogen cyanide (HCN), ammonia, and indole acetic acid (IAA), and solubilized phosphate. The chrome azurol sulphonate (CAS) agar plate assay was used to screen the siderophore production of LSBS2 and quantitatively the isolate produced 296 mg/L of siderophores in succinic acid medium. Further characterization of the siderophore revealed that the isolate produced catecholate siderophore bacillibactin. A pot culture experiment was used to explore the effect of LSBS2 and its siderophore in promoting iron absorption and plant growth of Sesamum indicum L. Data from the present study revealed that the multifarious Bacillus sp. LSBS2 could be exploited as a potential bioinoculant for growth and yield improvement in S. indicum.
format Article
author Nithyapriya, S.
Sundaram Lalitha, Sundaram Lalitha
Sayyed, R. Z.
Reddy, M. S.
Dailin, Daniel Joe
El Enshasy, Hesham A.
Ni Luh Suriani, Ni Luh Suriani
Herlambang, Susila
author_facet Nithyapriya, S.
Sundaram Lalitha, Sundaram Lalitha
Sayyed, R. Z.
Reddy, M. S.
Dailin, Daniel Joe
El Enshasy, Hesham A.
Ni Luh Suriani, Ni Luh Suriani
Herlambang, Susila
author_sort Nithyapriya, S.
title Production, purification, and characterization of bacillibactin siderophore of bacillus subtilis and its application for improvement in plant growth and oil content in sesame
title_short Production, purification, and characterization of bacillibactin siderophore of bacillus subtilis and its application for improvement in plant growth and oil content in sesame
title_full Production, purification, and characterization of bacillibactin siderophore of bacillus subtilis and its application for improvement in plant growth and oil content in sesame
title_fullStr Production, purification, and characterization of bacillibactin siderophore of bacillus subtilis and its application for improvement in plant growth and oil content in sesame
title_full_unstemmed Production, purification, and characterization of bacillibactin siderophore of bacillus subtilis and its application for improvement in plant growth and oil content in sesame
title_sort production, purification, and characterization of bacillibactin siderophore of bacillus subtilis and its application for improvement in plant growth and oil content in sesame
publisher MDPI AG
publishDate 2021
url http://eprints.utm.my/id/eprint/95292/
http://dx.doi.org/10.3390/su13105394
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