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Variovorax sp. Has an Optimum Cell Density to Fully Function as a Plant Growth Promoter

Utilization of plant growth-promoting bacteria colonizing roots is environmentally friendly technology instead of using chemicals in agriculture, and understanding of the effects of their colonization modes in promoting plant growth is important for sustainable agriculture. We herein screened the si...

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Autores principales: Natsagdorj, Oyungerel, Sakamoto, Hisayo, Santiago, Dennis Marvin O., Santiago, Christine D., Orikasa, Yoshitake, Okazaki, Kazuyuki, Ikeda, Seishi, Ohwada, Takuji
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6462933/
https://www.ncbi.nlm.nih.gov/pubmed/30875976
http://dx.doi.org/10.3390/microorganisms7030082
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author Natsagdorj, Oyungerel
Sakamoto, Hisayo
Santiago, Dennis Marvin O.
Santiago, Christine D.
Orikasa, Yoshitake
Okazaki, Kazuyuki
Ikeda, Seishi
Ohwada, Takuji
author_facet Natsagdorj, Oyungerel
Sakamoto, Hisayo
Santiago, Dennis Marvin O.
Santiago, Christine D.
Orikasa, Yoshitake
Okazaki, Kazuyuki
Ikeda, Seishi
Ohwada, Takuji
author_sort Natsagdorj, Oyungerel
collection PubMed
description Utilization of plant growth-promoting bacteria colonizing roots is environmentally friendly technology instead of using chemicals in agriculture, and understanding of the effects of their colonization modes in promoting plant growth is important for sustainable agriculture. We herein screened the six potential plant growth-promoting bacteria isolated from Beta vulgaris L. (Rhizobium sp. HRRK 005, Polaromonas sp. HRRK 103, Variovorax sp. HRRK 170, Mesorhizobium sp. HRRK 190, Streptomyces sp. HRTK 192, and Novosphingobium sp. HRRK 193) using a series of biochemical tests. Among all strains screened, HRRK 170 had the highest potential for plant growth promotion, given its ability to produce plant growth substances and enzymes such as siderophores and 1-aminocyclopropane-1-carboxylic acid (ACC) deaminase, respectively, concomitantly with active growth in a wider range of temperatures (10–30 °C) and pH (5.0–10.0). HRRK 170 colonized either as spots or widely on the root surface of all vegetable seedlings tested, but significant growth promotion occurred only in two vegetables (Chinese cabbage and green pepper) within a certain cell density range localized in the plant roots. The results indicate that HRRK 170 could function as a plant growth promoter, but has an optimum cell density for efficient use.
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spelling pubmed-64629332019-04-22 Variovorax sp. Has an Optimum Cell Density to Fully Function as a Plant Growth Promoter Natsagdorj, Oyungerel Sakamoto, Hisayo Santiago, Dennis Marvin O. Santiago, Christine D. Orikasa, Yoshitake Okazaki, Kazuyuki Ikeda, Seishi Ohwada, Takuji Microorganisms Article Utilization of plant growth-promoting bacteria colonizing roots is environmentally friendly technology instead of using chemicals in agriculture, and understanding of the effects of their colonization modes in promoting plant growth is important for sustainable agriculture. We herein screened the six potential plant growth-promoting bacteria isolated from Beta vulgaris L. (Rhizobium sp. HRRK 005, Polaromonas sp. HRRK 103, Variovorax sp. HRRK 170, Mesorhizobium sp. HRRK 190, Streptomyces sp. HRTK 192, and Novosphingobium sp. HRRK 193) using a series of biochemical tests. Among all strains screened, HRRK 170 had the highest potential for plant growth promotion, given its ability to produce plant growth substances and enzymes such as siderophores and 1-aminocyclopropane-1-carboxylic acid (ACC) deaminase, respectively, concomitantly with active growth in a wider range of temperatures (10–30 °C) and pH (5.0–10.0). HRRK 170 colonized either as spots or widely on the root surface of all vegetable seedlings tested, but significant growth promotion occurred only in two vegetables (Chinese cabbage and green pepper) within a certain cell density range localized in the plant roots. The results indicate that HRRK 170 could function as a plant growth promoter, but has an optimum cell density for efficient use. MDPI 2019-03-15 /pmc/articles/PMC6462933/ /pubmed/30875976 http://dx.doi.org/10.3390/microorganisms7030082 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Natsagdorj, Oyungerel
Sakamoto, Hisayo
Santiago, Dennis Marvin O.
Santiago, Christine D.
Orikasa, Yoshitake
Okazaki, Kazuyuki
Ikeda, Seishi
Ohwada, Takuji
Variovorax sp. Has an Optimum Cell Density to Fully Function as a Plant Growth Promoter
title Variovorax sp. Has an Optimum Cell Density to Fully Function as a Plant Growth Promoter
title_full Variovorax sp. Has an Optimum Cell Density to Fully Function as a Plant Growth Promoter
title_fullStr Variovorax sp. Has an Optimum Cell Density to Fully Function as a Plant Growth Promoter
title_full_unstemmed Variovorax sp. Has an Optimum Cell Density to Fully Function as a Plant Growth Promoter
title_short Variovorax sp. Has an Optimum Cell Density to Fully Function as a Plant Growth Promoter
title_sort variovorax sp. has an optimum cell density to fully function as a plant growth promoter
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6462933/
https://www.ncbi.nlm.nih.gov/pubmed/30875976
http://dx.doi.org/10.3390/microorganisms7030082
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