Cargando…

Integrated Framework of the Immune-Defense Transcriptional Signatures in the Arabidopsis Shoot Apical Meristem

The growing tips of plants grow sterile; therefore, disease-free plants can be generated from them. How plants safeguard growing apices from pathogen infection is still a mystery. The shoot apical meristem (SAM) is one of the three stem cells niches that give rise to the above ground plant organs. T...

Descripción completa

Detalles Bibliográficos
Autores principales: Naseem, Muhammad, Osmanoğlu, Özge, Kaltdorf, Martin, Alblooshi, Afnan Ali M. A., Iqbal, Jibran, Howari, Fares M., Srivastava, Mugdha, Dandekar, Thomas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7460820/
https://www.ncbi.nlm.nih.gov/pubmed/32796535
http://dx.doi.org/10.3390/ijms21165745
_version_ 1783576684336775168
author Naseem, Muhammad
Osmanoğlu, Özge
Kaltdorf, Martin
Alblooshi, Afnan Ali M. A.
Iqbal, Jibran
Howari, Fares M.
Srivastava, Mugdha
Dandekar, Thomas
author_facet Naseem, Muhammad
Osmanoğlu, Özge
Kaltdorf, Martin
Alblooshi, Afnan Ali M. A.
Iqbal, Jibran
Howari, Fares M.
Srivastava, Mugdha
Dandekar, Thomas
author_sort Naseem, Muhammad
collection PubMed
description The growing tips of plants grow sterile; therefore, disease-free plants can be generated from them. How plants safeguard growing apices from pathogen infection is still a mystery. The shoot apical meristem (SAM) is one of the three stem cells niches that give rise to the above ground plant organs. This is very well explored; however, how signaling networks orchestrate immune responses against pathogen infections in the SAM remains unclear. To reconstruct a transcriptional framework of the differentially expressed genes (DEGs) pertaining to various SAM cellular populations, we acquired large-scale transcriptome datasets from the public repository Gene Expression Omnibus (GEO). We identify here distinct sets of genes for various SAM cellular populations that are enriched in immune functions, such as immune defense, pathogen infection, biotic stress, and response to salicylic acid and jasmonic acid and their biosynthetic pathways in the SAM. We further linked those immune genes to their respective proteins and identify interactions among them by mapping a transcriptome-guided SAM-interactome. Furthermore, we compared stem-cells regulated transcriptome with innate immune responses in plants showing transcriptional separation among their DEGs in Arabidopsis. Besides unleashing a repertoire of immune-related genes in the SAM, our analysis provides a SAM-interactome that will help the community in designing functional experiments to study the specific defense dynamics of the SAM-cellular populations. Moreover, our study promotes the essence of large-scale omics data re-analysis, allowing a fresh look at the SAM-cellular transcriptome repurposing data-sets for new questions.
format Online
Article
Text
id pubmed-7460820
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-74608202020-09-03 Integrated Framework of the Immune-Defense Transcriptional Signatures in the Arabidopsis Shoot Apical Meristem Naseem, Muhammad Osmanoğlu, Özge Kaltdorf, Martin Alblooshi, Afnan Ali M. A. Iqbal, Jibran Howari, Fares M. Srivastava, Mugdha Dandekar, Thomas Int J Mol Sci Article The growing tips of plants grow sterile; therefore, disease-free plants can be generated from them. How plants safeguard growing apices from pathogen infection is still a mystery. The shoot apical meristem (SAM) is one of the three stem cells niches that give rise to the above ground plant organs. This is very well explored; however, how signaling networks orchestrate immune responses against pathogen infections in the SAM remains unclear. To reconstruct a transcriptional framework of the differentially expressed genes (DEGs) pertaining to various SAM cellular populations, we acquired large-scale transcriptome datasets from the public repository Gene Expression Omnibus (GEO). We identify here distinct sets of genes for various SAM cellular populations that are enriched in immune functions, such as immune defense, pathogen infection, biotic stress, and response to salicylic acid and jasmonic acid and their biosynthetic pathways in the SAM. We further linked those immune genes to their respective proteins and identify interactions among them by mapping a transcriptome-guided SAM-interactome. Furthermore, we compared stem-cells regulated transcriptome with innate immune responses in plants showing transcriptional separation among their DEGs in Arabidopsis. Besides unleashing a repertoire of immune-related genes in the SAM, our analysis provides a SAM-interactome that will help the community in designing functional experiments to study the specific defense dynamics of the SAM-cellular populations. Moreover, our study promotes the essence of large-scale omics data re-analysis, allowing a fresh look at the SAM-cellular transcriptome repurposing data-sets for new questions. MDPI 2020-08-11 /pmc/articles/PMC7460820/ /pubmed/32796535 http://dx.doi.org/10.3390/ijms21165745 Text en © 2020 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
Naseem, Muhammad
Osmanoğlu, Özge
Kaltdorf, Martin
Alblooshi, Afnan Ali M. A.
Iqbal, Jibran
Howari, Fares M.
Srivastava, Mugdha
Dandekar, Thomas
Integrated Framework of the Immune-Defense Transcriptional Signatures in the Arabidopsis Shoot Apical Meristem
title Integrated Framework of the Immune-Defense Transcriptional Signatures in the Arabidopsis Shoot Apical Meristem
title_full Integrated Framework of the Immune-Defense Transcriptional Signatures in the Arabidopsis Shoot Apical Meristem
title_fullStr Integrated Framework of the Immune-Defense Transcriptional Signatures in the Arabidopsis Shoot Apical Meristem
title_full_unstemmed Integrated Framework of the Immune-Defense Transcriptional Signatures in the Arabidopsis Shoot Apical Meristem
title_short Integrated Framework of the Immune-Defense Transcriptional Signatures in the Arabidopsis Shoot Apical Meristem
title_sort integrated framework of the immune-defense transcriptional signatures in the arabidopsis shoot apical meristem
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7460820/
https://www.ncbi.nlm.nih.gov/pubmed/32796535
http://dx.doi.org/10.3390/ijms21165745
work_keys_str_mv AT naseemmuhammad integratedframeworkoftheimmunedefensetranscriptionalsignaturesinthearabidopsisshootapicalmeristem
AT osmanogluozge integratedframeworkoftheimmunedefensetranscriptionalsignaturesinthearabidopsisshootapicalmeristem
AT kaltdorfmartin integratedframeworkoftheimmunedefensetranscriptionalsignaturesinthearabidopsisshootapicalmeristem
AT alblooshiafnanalima integratedframeworkoftheimmunedefensetranscriptionalsignaturesinthearabidopsisshootapicalmeristem
AT iqbaljibran integratedframeworkoftheimmunedefensetranscriptionalsignaturesinthearabidopsisshootapicalmeristem
AT howarifaresm integratedframeworkoftheimmunedefensetranscriptionalsignaturesinthearabidopsisshootapicalmeristem
AT srivastavamugdha integratedframeworkoftheimmunedefensetranscriptionalsignaturesinthearabidopsisshootapicalmeristem
AT dandekarthomas integratedframeworkoftheimmunedefensetranscriptionalsignaturesinthearabidopsisshootapicalmeristem