Difference between revisions of "Os02g0818000"

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*School of Biotechnology and Environmental Engineering,  Myongji University, Yongin 449-728, Korea
 
*School of Biotechnology and Environmental Engineering,  Myongji University, Yongin 449-728, Korea
  
==References==
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==Structured Information==
<references>
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    [[Category:Genes]][[Category:Oryza Sativa Japonica Group]][[Category:Japonica Chromosome 2]]
* <ref name="ref1">
 
Park S H, Jeong J S, Redillas M C F R, et al. Transgenic overexpression of UIP1, an interactor of the 3′ untranslated region of the Rubisco small subunit mRNA, increases rice tolerance to drought[J]. Plant biotechnology reports, 2013, 7(1): 83-90.
 
</ref>
 
* <ref name="ref2">
 
Park S H, Chung P J, Juntawong P, et al. Posttranscriptional control of photosynthetic mRNA decay under stress conditions requires 3′ and 5′ untranslated regions and correlates with differential polysome association in rice[J]. Plant physiology, 2012, 159(3): 1111-1124.
 
</references>
 
  
 
==Structured Information==
 
==Structured Information==

Revision as of 06:54, 14 May 2015

UIP1 (3'-UTR-interacting protein 1) acts as a chaperone protein of RbcS1 transcripts by associating with the RbcS1 3'-UTR in an event of SMD leading them to either PBs or SGs[1].

Annotated Information

Function

The CBS domain of UIP1 is necessary for binding to 3' RbcS. UIP1 interacts with 3' untranslated region of RbcS1 mRNA and increases tolerance of transgenic overexpressors to drought stress[1].

Mutation

transgenic and nontransgenic (NT) control plants[1]:

  • During drought stress conditions, NT plants started to show visual symptoms of drought-induced damage such as leaf rolling and wilting with a concomitant loss of chlorophylls at an earlier stage than the OsCc1:UIP1 plants.
  • Upon rewatering, transgenic plants recovered well compared to the NT plants. Consequently, NT plants remained severely affected by drought stress while transgenic lines partially recovered after 3 days of rewatering.
  • The Fv/Fm values of the OsCc1:UIP1 plants were higher than those of the NT plants under the time course of stress treatments.

Expression

  • Transgenic overexpression of UIP1 in rice resulted in an increase in tolerance to drought stress at the vegetative stage of growth. Under drought, high salt and low temperature conditions, the maximum photochemical efficiency of photosystem II (Fv/Fm) of UIP1 plants was higher than those of the nontransgenic plants[1].
  • Interestingly, the effect of UIP1 overexpression on tolerance to stress was much more pronounced under drought than under high salt and low temperature conditions[1].

Knowledge Extension

The 3'RbcS is the major mRNA region involved in a phenomenon referred to as stress-induced mRNA decay (SMD) under drought and salt stress conditions. SMD was observed on the mRNAs of photosynthetic genes (e.g., RbcS1, Cab1, and PCY) that are rapidly degraded when plants are exposed to stress[2].

Labs working on this gene

  • School of Biotechnology and Environmental Engineering, Myongji University, Yongin 449-728, Korea

Structured Information

Structured Information

  1. 1.0 1.1 1.2 1.3 1.4 Cite error: Invalid <ref> tag; no text was provided for refs named ref1
  2. Cite error: Invalid <ref> tag; no text was provided for refs named ref2