| Literature DB >> 24804192 |
Bhaskar Gupta1, Bingru Huang2.
Abstract
Salinity is a major abiotic stress limitingEntities:
Year: 2014 PMID: 24804192 PMCID: PMC3996477 DOI: 10.1155/2014/701596
Source DB: PubMed Journal: Int J Genomics ISSN: 2314-436X Impact factor: 2.326
Figure 1Model of SOS pathway for salinity stress responses.
Examples of upregulated genes in response to salinity stress.
| Species | NaCl concentration (mM) | Gene name | Gene functions | References |
|---|---|---|---|---|
|
| 25 and 50 |
| (i) Plasma membrane | [ |
|
| ||||
|
| 50 |
| (i) Proline-rich proteins and cell-wall | [ |
|
| ||||
|
| 100 |
| Heat-shock proteins, molecular chaperones, folding, assembling, and transporting proteins. | [ |
|
| ||||
|
| 150 |
| Transcription factor, transcriptional pre-initiation, splicing, and polyadenylation. | [ |
|
| ||||
|
| 200 |
| Heat-shock proteins, molecular chaperones, and folding, assembling, and transporting proteins. | [ |
|
| ||||
| Carrot | 300 |
| Cell viability and membrane stability under heat stress. | [ |
|
| ||||
|
| 300 |
| Transcription factor | [ |
Improving plant salt tolerance through engineering genes for various membrane antiporters.
| Transgenic host | Gene engineered | Source | Improved functions under salinity stress | References |
|---|---|---|---|---|
| Arabidopsis | Vacuolar | Alfalfa ( | Increased osmotic balance. | [ |
|
| ||||
| Rice | Vacuolar |
| Elaborate root system. | [ |
|
| ||||
| Wheat | Vacuolar |
| Increase in grain yield and biomass production. | [ |
|
| ||||
| Tobacco | Vacuolar |
| Na+ compartmentalization. | [ |
|
| ||||
| Tomato | Vacuolar |
| Over production of vacuolar Na+/H+ antiporter. | [ |
|
| ||||
| Tobacco | Vacuolar |
| Compartmentalization of Na in roots. | [ |
|
| ||||
| Brassica | Vacuolar |
| Increased proline content. | [ |
|
| ||||
| Arabidopsis | Plasma membrane Na+/H+
|
| Improved germination rate, root growth, and chlorophyll content. | [ |
|
| ||||
| Maize | Vacuolar |
| Increased rate of germination. | [ |