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Research Project: USING FUNCTIONAL AND APPLIED GENOMICS TO IMPROVE STRESS AND DISEASE RESISTANCE IN FRUIT TREES

Location: Appalachian Fruit Research Laboratory: Innovative Fruit Production, Improvement and Protection

Title: Cajal bodies and plant RNA metabolism

Author

Submitted to: Critical Reviews in Plant Sciences
Publication Type: Review Article
Publication Acceptance Date: October 11, 2011
Publication Date: May 1, 2012
Citation: Bassett, C.L. 2012. Cajal bodies and plant RNA metabolism. Critical Reviews in Plant Sciences. DOI: 10.1080/07352689.2011.645431.

Technical Abstract: Intracellular location of components associated with RNA metabolism is a key feature of gene expression regulation, although it is often neglected in favor of more direct factors influencing expression. A number of nuclear and subnuclear compartments exist, each carrying out specific functions. This article focuses on Cajal bodies, a dynamic body composed of numerous proteins and small RNAs. Cajal bodies, or CBs, are universal entities found in both the nucleolus and nucleoplasm of most living cells. Their function relates to RNA metabolism, including transcription, splicing, stable RNA modification, small RNA biogenesis, gene silencing, nonsense mediated decay, and telomere maintenance. It is generally thought that CBs form docking stations for each of the functions so that the individual processes proceed quickly and in an organized manner. A brief introduction on what is known about the function and composition of CBs in animal cells is provided, followed by highlights of the lastest research on CBs in plants.

   

 
Project Team
Wisniewski, Michael
Norelli, John (jay) - Jay
Artlip, Timothy - Tim
Bassett, Carole
 
Publications
   Publications
 
Related National Programs
  Plant Genetic Resources, Genomics and Genetic Improvement (301)
 
Related Projects
   STRESS GENE PROMOTERS IN FRUIT
   DEVELOPING MOLECULAR RESOURCES USING NEXT GENERATION SEQUENCING AND EVALUATION OF PEACH NCGR GERMPLASM FOR DROUGHT RESISTANCE
   GENETIC & TRANSCRIPTOMIC ANALYSIS OF POSTHARVEST DECAY RESISTANCE IN M. SIEVERSII & IDENTIFICATION OF PATHOGENICITY EFFECTORS IN P. EXPANSUM
 
 
Last Modified: 05/20/2013
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