Cargando…
Plant growth promoting rhizobacterium Stenotrophomonas maltophilia BJ01 augments endurance against N(2) starvation by modulating physiology and biochemical activities of Arachis hypogea
Arachis hypogea (Peanut) is one of the most important crops, and it is harvested and used for food and oil production. Being a legume crop, the fixation of atmospheric nitrogen is achieved through symbiotic association. Nitrogen deficiency is one of the major constrains for loss of crop productivity...
Autores principales: | , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2019
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6742461/ https://www.ncbi.nlm.nih.gov/pubmed/31513643 http://dx.doi.org/10.1371/journal.pone.0222405 |
_version_ | 1783451114305224704 |
---|---|
author | Alexander, Ankita Singh, Vijay Kumar Mishra, Avinash Jha, Bhavanath |
author_facet | Alexander, Ankita Singh, Vijay Kumar Mishra, Avinash Jha, Bhavanath |
author_sort | Alexander, Ankita |
collection | PubMed |
description | Arachis hypogea (Peanut) is one of the most important crops, and it is harvested and used for food and oil production. Being a legume crop, the fixation of atmospheric nitrogen is achieved through symbiotic association. Nitrogen deficiency is one of the major constrains for loss of crop productivity. The bacterium Stenotrophomonas maltophilia is known for interactions with plants. In this study, characteristics that promote plant growth were explored for their ability to enhance the growth of peanut plants under N(2) deficit condition. In the presence of S. maltophilia, it was observed that fatty acid composition of peanut plants was influenced and increased contents of omega-7 monounsaturated fatty acid and omega-6 fatty acid (γ-Linolenic acid) were detected. Plant growth was increased in plants co-cultivated with PGPR (Plant Growth Promoting Rhizobacteria) under normal and stress (nitrogen deficient) condition. Electrolyte leakage, lipid peroxidation, and H(2)O(2) content reduced in plants, co-cultivated with PGPR under normal (grown in a media supplemented with N(2) source; C+) or stress (nitrogen deficient N+) conditions compared to the corresponding control plants (i.e. not co-cultivated with PGPR; C–or N–). The growth hormone auxin, osmoprotectants (proline, total soluble sugars and total amino acids), total phenolic-compounds and total flavonoid content were enhanced in plants co-cultivated with PGPR. Additionally, antioxidant and free radical scavenging (DPPH, hydroxyl and H(2)O(2)) activities were increased in plants that were treated with PGPR under both normal and N(2) deficit condition. Overall, these results indicate that plants co-cultivated with PGPR, S. maltophilia, increase plant growth, antioxidant levels, scavenging, and stress tolerance under N(2) deficit condition. The beneficial use of bacterium S. maltophilia could be explored further as an efficient PGPR for growing agricultural crops under N(2) deficit conditions. However, a detail agronomic study would be prerequisite to confirm its commercial role. |
format | Online Article Text |
id | pubmed-6742461 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2019 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-67424612019-09-20 Plant growth promoting rhizobacterium Stenotrophomonas maltophilia BJ01 augments endurance against N(2) starvation by modulating physiology and biochemical activities of Arachis hypogea Alexander, Ankita Singh, Vijay Kumar Mishra, Avinash Jha, Bhavanath PLoS One Research Article Arachis hypogea (Peanut) is one of the most important crops, and it is harvested and used for food and oil production. Being a legume crop, the fixation of atmospheric nitrogen is achieved through symbiotic association. Nitrogen deficiency is one of the major constrains for loss of crop productivity. The bacterium Stenotrophomonas maltophilia is known for interactions with plants. In this study, characteristics that promote plant growth were explored for their ability to enhance the growth of peanut plants under N(2) deficit condition. In the presence of S. maltophilia, it was observed that fatty acid composition of peanut plants was influenced and increased contents of omega-7 monounsaturated fatty acid and omega-6 fatty acid (γ-Linolenic acid) were detected. Plant growth was increased in plants co-cultivated with PGPR (Plant Growth Promoting Rhizobacteria) under normal and stress (nitrogen deficient) condition. Electrolyte leakage, lipid peroxidation, and H(2)O(2) content reduced in plants, co-cultivated with PGPR under normal (grown in a media supplemented with N(2) source; C+) or stress (nitrogen deficient N+) conditions compared to the corresponding control plants (i.e. not co-cultivated with PGPR; C–or N–). The growth hormone auxin, osmoprotectants (proline, total soluble sugars and total amino acids), total phenolic-compounds and total flavonoid content were enhanced in plants co-cultivated with PGPR. Additionally, antioxidant and free radical scavenging (DPPH, hydroxyl and H(2)O(2)) activities were increased in plants that were treated with PGPR under both normal and N(2) deficit condition. Overall, these results indicate that plants co-cultivated with PGPR, S. maltophilia, increase plant growth, antioxidant levels, scavenging, and stress tolerance under N(2) deficit condition. The beneficial use of bacterium S. maltophilia could be explored further as an efficient PGPR for growing agricultural crops under N(2) deficit conditions. However, a detail agronomic study would be prerequisite to confirm its commercial role. Public Library of Science 2019-09-12 /pmc/articles/PMC6742461/ /pubmed/31513643 http://dx.doi.org/10.1371/journal.pone.0222405 Text en © 2019 Alexander et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. |
spellingShingle | Research Article Alexander, Ankita Singh, Vijay Kumar Mishra, Avinash Jha, Bhavanath Plant growth promoting rhizobacterium Stenotrophomonas maltophilia BJ01 augments endurance against N(2) starvation by modulating physiology and biochemical activities of Arachis hypogea |
title | Plant growth promoting rhizobacterium Stenotrophomonas maltophilia BJ01 augments endurance against N(2) starvation by modulating physiology and biochemical activities of Arachis hypogea |
title_full | Plant growth promoting rhizobacterium Stenotrophomonas maltophilia BJ01 augments endurance against N(2) starvation by modulating physiology and biochemical activities of Arachis hypogea |
title_fullStr | Plant growth promoting rhizobacterium Stenotrophomonas maltophilia BJ01 augments endurance against N(2) starvation by modulating physiology and biochemical activities of Arachis hypogea |
title_full_unstemmed | Plant growth promoting rhizobacterium Stenotrophomonas maltophilia BJ01 augments endurance against N(2) starvation by modulating physiology and biochemical activities of Arachis hypogea |
title_short | Plant growth promoting rhizobacterium Stenotrophomonas maltophilia BJ01 augments endurance against N(2) starvation by modulating physiology and biochemical activities of Arachis hypogea |
title_sort | plant growth promoting rhizobacterium stenotrophomonas maltophilia bj01 augments endurance against n(2) starvation by modulating physiology and biochemical activities of arachis hypogea |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6742461/ https://www.ncbi.nlm.nih.gov/pubmed/31513643 http://dx.doi.org/10.1371/journal.pone.0222405 |
work_keys_str_mv | AT alexanderankita plantgrowthpromotingrhizobacteriumstenotrophomonasmaltophiliabj01augmentsenduranceagainstn2starvationbymodulatingphysiologyandbiochemicalactivitiesofarachishypogea AT singhvijaykumar plantgrowthpromotingrhizobacteriumstenotrophomonasmaltophiliabj01augmentsenduranceagainstn2starvationbymodulatingphysiologyandbiochemicalactivitiesofarachishypogea AT mishraavinash plantgrowthpromotingrhizobacteriumstenotrophomonasmaltophiliabj01augmentsenduranceagainstn2starvationbymodulatingphysiologyandbiochemicalactivitiesofarachishypogea AT jhabhavanath plantgrowthpromotingrhizobacteriumstenotrophomonasmaltophiliabj01augmentsenduranceagainstn2starvationbymodulatingphysiologyandbiochemicalactivitiesofarachishypogea |