RNA-Seq Provides New Insights into the Gene Expression Changes in <i>Azoarcus olearius</i> BH72 under Nitrogen-Deficient and Replete Conditions beyond the Nitrogen Fixation Process

<i>Azoarcus olearius</i> BH72 is an endophyte capable of biological nitrogen fixation (BNF) and of supplying nitrogen to its host plant. Our previous microarray approach provided insights into the transcriptome of strain BH72 under N<sub>2</sub>-fixation in comparison to ammo...

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Main Authors: Shanmugam Solaiyappan Mani, Barbara Reinhold-Hurek
Format: Article
Language:English
Published: MDPI AG 2021-09-01
Series:Microorganisms
Subjects:
Online Access:https://www.mdpi.com/2076-2607/9/9/1888
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spelling doaj-3ba438ff151147abab4a1f55361dbe072021-09-26T00:43:43ZengMDPI AGMicroorganisms2076-26072021-09-0191888188810.3390/microorganisms9091888RNA-Seq Provides New Insights into the Gene Expression Changes in <i>Azoarcus olearius</i> BH72 under Nitrogen-Deficient and Replete Conditions beyond the Nitrogen Fixation ProcessShanmugam Solaiyappan Mani0Barbara Reinhold-Hurek1Department of Microbe-Plant Interactions, Faculty of Biology and Chemistry, University of Bremen, P.O. Box 330440, 28334 Bremen, GermanyDepartment of Microbe-Plant Interactions, Faculty of Biology and Chemistry, University of Bremen, P.O. Box 330440, 28334 Bremen, Germany<i>Azoarcus olearius</i> BH72 is an endophyte capable of biological nitrogen fixation (BNF) and of supplying nitrogen to its host plant. Our previous microarray approach provided insights into the transcriptome of strain BH72 under N<sub>2</sub>-fixation in comparison to ammonium-grown conditions, which already indicated the induction of genes not related to the BNF process. Due to the known limitations of the technique, we might have missed additional differentially expressed genes (DEGs). Thus, we used directional RNA-Seq to better comprehend the transcriptional landscape under these growth conditions. RNA-Seq detected almost 24% of the annotated genes to be regulated, twice the amount identified by microarray. In addition to confirming entire regulated operons containing known DEGs, the new approach detected the induction of genes involved in carbon metabolism and flagellar and twitching motility. This may support N<sub>2</sub>-fixation by increasing energy production and by finding suitable microaerobic niches. On the other hand, energy expenditures were reduced by suppressing translation and vitamin biosynthesis. Nonetheless, strain BH72 does not appear to be content with N<sub>2</sub>-fixation but is primed for alternative economic N-sources, such as nitrate, urea or amino acids; a strong gene induction of machineries for their uptake and assimilation was detected. RNA-Seq has thus provided a better understanding of a lifestyle under limiting nitrogen sources by elucidating hitherto unknown regulated processes.https://www.mdpi.com/2076-2607/9/9/1888biological nitrogen fixationRNA-Seqendophyte
collection DOAJ
language English
format Article
sources DOAJ
author Shanmugam Solaiyappan Mani
Barbara Reinhold-Hurek
spellingShingle Shanmugam Solaiyappan Mani
Barbara Reinhold-Hurek
RNA-Seq Provides New Insights into the Gene Expression Changes in <i>Azoarcus olearius</i> BH72 under Nitrogen-Deficient and Replete Conditions beyond the Nitrogen Fixation Process
Microorganisms
biological nitrogen fixation
RNA-Seq
endophyte
author_facet Shanmugam Solaiyappan Mani
Barbara Reinhold-Hurek
author_sort Shanmugam Solaiyappan Mani
title RNA-Seq Provides New Insights into the Gene Expression Changes in <i>Azoarcus olearius</i> BH72 under Nitrogen-Deficient and Replete Conditions beyond the Nitrogen Fixation Process
title_short RNA-Seq Provides New Insights into the Gene Expression Changes in <i>Azoarcus olearius</i> BH72 under Nitrogen-Deficient and Replete Conditions beyond the Nitrogen Fixation Process
title_full RNA-Seq Provides New Insights into the Gene Expression Changes in <i>Azoarcus olearius</i> BH72 under Nitrogen-Deficient and Replete Conditions beyond the Nitrogen Fixation Process
title_fullStr RNA-Seq Provides New Insights into the Gene Expression Changes in <i>Azoarcus olearius</i> BH72 under Nitrogen-Deficient and Replete Conditions beyond the Nitrogen Fixation Process
title_full_unstemmed RNA-Seq Provides New Insights into the Gene Expression Changes in <i>Azoarcus olearius</i> BH72 under Nitrogen-Deficient and Replete Conditions beyond the Nitrogen Fixation Process
title_sort rna-seq provides new insights into the gene expression changes in <i>azoarcus olearius</i> bh72 under nitrogen-deficient and replete conditions beyond the nitrogen fixation process
publisher MDPI AG
series Microorganisms
issn 2076-2607
publishDate 2021-09-01
description <i>Azoarcus olearius</i> BH72 is an endophyte capable of biological nitrogen fixation (BNF) and of supplying nitrogen to its host plant. Our previous microarray approach provided insights into the transcriptome of strain BH72 under N<sub>2</sub>-fixation in comparison to ammonium-grown conditions, which already indicated the induction of genes not related to the BNF process. Due to the known limitations of the technique, we might have missed additional differentially expressed genes (DEGs). Thus, we used directional RNA-Seq to better comprehend the transcriptional landscape under these growth conditions. RNA-Seq detected almost 24% of the annotated genes to be regulated, twice the amount identified by microarray. In addition to confirming entire regulated operons containing known DEGs, the new approach detected the induction of genes involved in carbon metabolism and flagellar and twitching motility. This may support N<sub>2</sub>-fixation by increasing energy production and by finding suitable microaerobic niches. On the other hand, energy expenditures were reduced by suppressing translation and vitamin biosynthesis. Nonetheless, strain BH72 does not appear to be content with N<sub>2</sub>-fixation but is primed for alternative economic N-sources, such as nitrate, urea or amino acids; a strong gene induction of machineries for their uptake and assimilation was detected. RNA-Seq has thus provided a better understanding of a lifestyle under limiting nitrogen sources by elucidating hitherto unknown regulated processes.
topic biological nitrogen fixation
RNA-Seq
endophyte
url https://www.mdpi.com/2076-2607/9/9/1888
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