Transcriptional Regulatory Networks in Response to Abiotic Stresses in Arabidopsis and Grasses
Clicks: 5
ID: 296065
2009
Article Quality & Performance Metrics
Overall Quality
Not rated
Combines reader engagement with the AI quality analysis. This
article has not been analysed, so there is no overall score —
reader engagement is measured and shown alongside.
Reader Engagement
Popular Article
1.2
/100
5 views
4 readers
AI Quality Assessment
Not analyzed
Readership in this journal
PopularRanked #199 of 513 articles by views in Plant physiology and biochemistry : PPB
Most read
Least read
Bar heights use a square-root scale. Only the 120 most-read articles are drawn; the journal has 513 in total.
Mint this article as an NFT
Not yet mintedCreate a permanent, verifiable on-chain record of this article on the Scimatic Network. The NFT is held in your Journament account, and you can withdraw it to your own wallet at any time.
5
SUSD
one-off · no wallet required
Abstract
Various abiotic stresses such as drought, high salinity, high temperature, and low temperature negatively impact plant growth and productivity of crops.Plants have adapted to respond to these stresses at the molecular, cellular, physiological, and biochemical level, enabling them to survive.Various adverse environmental stresses induce the expression of a variety of genes in many plant species (Xiong et al., 2002;Shinozaki et al., 2003; Bartels and Sunkar, 2005).Numerous stress-induced genes have been identified using microarray experiments (Kreps et al., 2002;Seki et al., 2002).The products of these genes are thought to promote stress tolerance and to regulate gene expression through signal transduction pathways (Xiong et al., 2002;Shinozaki et al., 2003).Abscisic acid (ABA) is produced under water deficit conditions and plays an important role in the stress response and tolerance of plants to drought and high salinity.Exogenous application of ABA induces a number of genes that respond to dehydration and cold stress (Zhu, 2002;Shinozaki et al., 2003).Several reports have characterized genes that are induced by dehydration and cold stress, but do not respond to exogenous application of ABA in Arabidopsis (Arabidopsis thaliana;Zhu, 2002;Yamaguchi-Shinozaki and Shinozaki, 2006).This suggests the existence of ABAindependent and ABA-dependent signal transduction pathways that convert the initial stress signal into cellular responses.To better understand the molecular mechanisms regulating gene expression in response to abiotic stresses, including dehydration and cold stress, studies have initially focused on the analysis of Arabidopsis cis-and trans-acting elements and their role in mediating stress responses (Yamaguchi-Shinozaki and Shinozaki, 2006).Recently, abiotic stress-inducible genes and their cis-and trans-acting elements were
| Reference Key |
openalex_W2171724922
Use this key to autocite in the manuscript while using
SciMatic Manuscript Manager or Thesis Manager
|
|---|---|
| Authors | Kazuo Nakashima, Yusuke Ito, Kazuko Yamaguchi‐Shinozaki |
| Journal | Plant physiology and biochemistry : PPB |
| Year | 2009 |
| DOI |
10.1104/pp.108.129791
|
| URL | |
| Keywords | Keywords not found |
Citations
No citations found. To add a citation, contact the admin at info@scimatic.org
Comments
No comments yet. Be the first to comment on this article.