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Title: Decipher the Molecular Response of Plant Single Cell Types to Environmental Stresses

Abstract

The analysis of the molecular response of entire plants or organs to environmental stresses suffers from the cellular complexity of the samples used. Specifically, this cellular complexity masks cell-specific responses to environmental stresses and logically leads to the dilution of the molecular changes occurring in each cell type composing the tissue/organ/plant in response to the stress. Therefore, to generate a more accurate picture of these responses, scientists are focusing on plant single cell type approaches. Several cell types are now considered as models such as the pollen, the trichomes, the cotton fiber, various root cell types including the root hair cell, and the guard cell of stomata. Among them, several have been used to characterize plant response to abiotic and biotic stresses. Lastly, in this review, we are describing the various -omic studies performed on these different plant single cell type models to better understand plant cell response to biotic and abiotic stresses.

Authors:
ORCiD logo [1]; ORCiD logo [1]
  1. Univ. of Oklahoma, Norman, OK (United States). Dept. of Microbiology and Plant Biology
Publication Date:
Research Org.:
Univ. of Oklahoma, Norman, OK (United States). Dept. of Microbiology and Plant Biology
Sponsoring Org.:
USDOE Office of Science (SC)
OSTI Identifier:
1254487
Grant/Contract Number:  
SC0012629; IOS-1339194; IOS-1453613
Resource Type:
Journal Article: Accepted Manuscript
Journal Name:
BioMed Research International
Additional Journal Information:
Journal Volume: 2016; Journal ID: ISSN 2314-6133
Country of Publication:
United States
Language:
English
Subject:
59 BASIC BIOLOGICAL SCIENCES

Citation Formats

Nourbakhsh-Rey, Mehrnoush, and Libault, Marc. Decipher the Molecular Response of Plant Single Cell Types to Environmental Stresses. United States: N. p., 2016. Web. doi:10.1155/2016/4182071.
Nourbakhsh-Rey, Mehrnoush, & Libault, Marc. Decipher the Molecular Response of Plant Single Cell Types to Environmental Stresses. United States. https://doi.org/10.1155/2016/4182071
Nourbakhsh-Rey, Mehrnoush, and Libault, Marc. 2016. "Decipher the Molecular Response of Plant Single Cell Types to Environmental Stresses". United States. https://doi.org/10.1155/2016/4182071. https://www.osti.gov/servlets/purl/1254487.
@article{osti_1254487,
title = {Decipher the Molecular Response of Plant Single Cell Types to Environmental Stresses},
author = {Nourbakhsh-Rey, Mehrnoush and Libault, Marc},
abstractNote = {The analysis of the molecular response of entire plants or organs to environmental stresses suffers from the cellular complexity of the samples used. Specifically, this cellular complexity masks cell-specific responses to environmental stresses and logically leads to the dilution of the molecular changes occurring in each cell type composing the tissue/organ/plant in response to the stress. Therefore, to generate a more accurate picture of these responses, scientists are focusing on plant single cell type approaches. Several cell types are now considered as models such as the pollen, the trichomes, the cotton fiber, various root cell types including the root hair cell, and the guard cell of stomata. Among them, several have been used to characterize plant response to abiotic and biotic stresses. Lastly, in this review, we are describing the various -omic studies performed on these different plant single cell type models to better understand plant cell response to biotic and abiotic stresses.},
doi = {10.1155/2016/4182071},
url = {https://www.osti.gov/biblio/1254487}, journal = {BioMed Research International},
issn = {2314-6133},
number = ,
volume = 2016,
place = {United States},
year = {Fri Jan 01 00:00:00 EST 2016},
month = {Fri Jan 01 00:00:00 EST 2016}
}

Journal Article:
Free Publicly Available Full Text
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Cited by: 6 works
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Works referenced in this record:

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Functional genomics of cell elongation in developing cotton fibers
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Proteomic identification of differentially expressed proteins in mature and germinated maize pollen
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Analysis of abscisic acid responsive proteins in Brassica napus guard cells by multiplexed isobaric tagging
journal, February 2010


Single cell technology
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journal, April 2011


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journal, October 2009


ABA-Regulated G Protein Signaling in Arabidopsis Guard Cells: A Proteomic Perspective
journal, April 2010


Metabolite profiling for plant functional genomics
journal, November 2000


Speak, friend, and enter: signalling systems that promote beneficial symbiotic associations in plants
journal, March 2013


Effect of trehalose on survival of Bradyrhizobium japonicum during desiccation
journal, September 2003


Glutathione biosynthesis in Arabidopsis trichome cells
journal, September 2000


Cell sampling and analysis (SiCSA): metabolites measured at single cell resolution
journal, April 2001


ABA, hydrogen peroxide and nitric oxide signalling in stomatal guard cells
journal, November 2003


Microgenomics: gene expression analysis at the tissue-specific and single-cell levels
journal, January 2005


Laser microdissection-assisted analysis of the functional fate of iron deficiency-induced root hairs in cucumber
journal, February 2008


Identification of Major Proteins in Maize Egg Cells
journal, October 2004


Proteomic Analysis of Soybean Root Hairs After Infection by Bradyrhizobium japonicum
journal, May 2005


Developmental Transcript Profiling of Cyst Nematode Feeding Cells in Soybean Roots
journal, May 2007


Transcriptional Profiling of Arabidopsis Tissues Reveals the Unique Characteristics of the Pollen Transcriptome
journal, September 2003


Transcript Analysis of Early Nodulation Events in Medicago truncatula
journal, December 2005


Soybean Metabolites Regulated in Root Hairs in Response to the Symbiotic Bacterium Bradyrhizobium japonicum
journal, June 2010


Nitrated Cyclic GMP Modulates Guard Cell Signaling in Arabidopsis
journal, February 2013


Metabolic Profiling Allows Comprehensive Phenotyping of Genetically or Environmentally Modified Plant Systems
journal, January 2001


Cell type-specific responses to salinity - the epidermal bladder cell transcriptome of Mesembryanthemum crystallinum
journal, May 2015


A Gene Expression Map of the Arabidopsis Root
journal, December 2003


A High-Resolution Root Spatiotemporal Map Reveals Dominant Expression Patterns
journal, November 2007


Cell Identity Mediates the Response of Arabidopsis Roots to Abiotic Stress
journal, May 2008


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journal, June 2006


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Metabolic profiling of laser microdissected vascular bundles of Arabidopsis thaliana
journal, August 2005


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journal, October 2005


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journal, June 2013


Transcriptional profiling of Arabidopsis root hairs and pollen defines an apical cell growth signature
journal, August 2014


Identification of Proteins Enriched in Rice Egg or Sperm Cells by Single-Cell Proteomics
journal, July 2013


Stomata Prioritize Their Responses to Multiple Biotic and Abiotic Signal Inputs
journal, July 2014


System approaches to study root hairs as a single cell plant model: current status and future perspectives
journal, May 2015


The female gametophyte: an emerging model for cell type-specific systems biology in plant development
journal, November 2015


Proteasome targeting of proteins in Arabidopsis leaf mesophyll, epidermal and vascular tissues
text, January 2015


Works referencing / citing this record:

Element content and expression of genes of interest in guard cells are connected to spatiotemporal variations in stomatal conductance
journal, August 2019