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CHLOROPLAST.UOREGON.EDU

Translational Dynamics of Leaf and Chloroplast Development in Maize

This project is funded by the National Science Foundation, grant IOS-1339130. Translational Dynamics of Leaf and. Chloroplast Development in Maize. Mu Insertion Search Interface. Mu-Illumina Gene Identification Service. Outreach at U Oregon. Outreach at Danforth Center. The goals of this project are to:. Use a large-scale forward genetic strategy to assign molecular and physiological functions to 100 genes in maize that are required for photosynthesis. 6000 new sequence-indexed Mu insertions which can be...

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Translational Dynamics of Leaf and Chloroplast Development in Maize | chloroplast.uoregon.edu Reviews
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This project is funded by the National Science Foundation, grant IOS-1339130. Translational Dynamics of Leaf and. Chloroplast Development in Maize. Mu Insertion Search Interface. Mu-Illumina Gene Identification Service. Outreach at U Oregon. Outreach at Danforth Center. The goals of this project are to:. Use a large-scale forward genetic strategy to assign molecular and physiological functions to 100 genes in maize that are required for photosynthesis. 6000 new sequence-indexed Mu insertions which can be...
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1 barkan lab
2 brutnell lab
3 resources
4 protocols
5 pogs2 database
6 pml mutant collection
7 useful links
8 c3/c4 project
9 plant proteome database
10 maizegdb
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barkan lab,brutnell lab,resources,protocols,pogs2 database,pml mutant collection,useful links,c3/c4 project,plant proteome database,maizegdb,maize efp browser,publicatons,outreach,tutorials for students,personnel,welcome
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Translational Dynamics of Leaf and Chloroplast Development in Maize | chloroplast.uoregon.edu Reviews

https://chloroplast.uoregon.edu

This project is funded by the National Science Foundation, grant IOS-1339130. Translational Dynamics of Leaf and. Chloroplast Development in Maize. Mu Insertion Search Interface. Mu-Illumina Gene Identification Service. Outreach at U Oregon. Outreach at Danforth Center. The goals of this project are to:. Use a large-scale forward genetic strategy to assign molecular and physiological functions to 100 genes in maize that are required for photosynthesis. 6000 new sequence-indexed Mu insertions which can be...

LINKS TO THIS WEBSITE

pml.uoregon.edu pml.uoregon.edu

Barkan Lab

http://pml.uoregon.edu/outreachsk.html

Institute of Molecular Biology. Tutorials for High School Students on Genetics and Photosynthesis. What is photosynthesis and what can we learn about it from mutant corn plants? Where do mutant corn plants come from? Do they have mutant siblings? See how genetics can help answer these questions. Barkan Lab - 255 Klamath Hall - abarkan@uoregon.edu.

pml.uoregon.edu pml.uoregon.edu

Barkan Lab

http://pml.uoregon.edu/photosyntheticml.html

Institute of Molecular Biology. Table listing mutants recovered from the PML collection whose underlying Mu insertion has been identified. Barkan Lab - 255 Klamath Hall - abarkan@uoregon.edu.

teosinte.uoregon.edu teosinte.uoregon.edu

Mu-Illumina

http://teosinte.uoregon.edu/mu-illumina

Back To Home Page. Insertion Site: Click to view sequence. Position in Gene (exon, intron, UTR). Most closely related gene in:. Search for Mu insertions near your gene of interest. This interface provides access to a subset of the Mu insertions detected by Mu-Illumina ( PubMed. Sequencing during mutant cloning efforts involving the Photosynthesis Mutant Library ( PML. Insertions that map more distant to genes rarely disrupt gene expression; due to limited resources, we are not making these available.

pml.uoregon.edu pml.uoregon.edu

Barkan Lab

http://pml.uoregon.edu/index.html

Institute of Molecular Biology. BS, Massachusetts Institute of Technology. PhD, University of Wisconsin. Member of: Institute of Molecular Biology. Office: 255A Klamath Hall. Lab: 255 Klamath Hall. Our research combines genetic and biochemical approaches to identify relevant genes, define their in vivo functions, and elucidate the underlying mechanisms. Tools we have developed for this work include: (i) the Photosynthetic Mutant Library. Barkan Lab - 255 Klamath Hall - abarkan@uoregon.edu.

pml.uoregon.edu pml.uoregon.edu

Barkan Lab

http://pml.uoregon.edu/publications2.html

Institute of Molecular Biology. Barkan A, Small I (2014) Pentatricopeptide Repeat Proteins in Plants. Annu. Rev. Plant Biol 65: 415-442. Hammani K, Barkan A. (2014) An mTERF Domain Protein Functions in Group II Intron Splicing in Maize Chloroplasts. Nucl Acids Res 42:5033-42. Willians-Carrier R., Zoschke R, Belcher S, Pfalz J, Barkan A. (2014) A major role for the plastid-encoded RNA polymerase complex in the expression of plastid tRNAs. Plant Physiol. 164: 239-48. Feiz L, Williams-Carrier R, Wostrikoff ...

pml.uoregon.edu pml.uoregon.edu

Barkan Lab

http://pml.uoregon.edu/personnel2.html

Institute of Molecular Biology. Professor of Biology and Member, Institute of Molecular Biology. Postdoctoral Research Associate, Biochemistry of protein facilitated splicing. Postdoctoral fellow, Translational dynamics of leaf and chloroplast development. Research Associate, Maize Genetics, Outreach Coordinator. Research Associate, RNA/protein interactions underlying protein facilitated group II intron splicing. Research Associate, Bioinformatics. Graduate Student, PPR protein functions and mechanisms.

pml.uoregon.edu pml.uoregon.edu

Barkan Lab

http://pml.uoregon.edu/protocols.html

Institute of Molecular Biology. Preparation of DNA samples for analysis by Mu-Illumina. Protein/Protein and Protein/RNA Co-Immunoprecipitations. RIP-chip analysis of RNAs bound to Chloroplast RNA Binding Proteins. Barkan Lab - 255 Klamath Hall - abarkan@uoregon.edu.

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Translational Dynamics of Leaf and Chloroplast Development in Maize

This project is funded by the National Science Foundation, grant IOS-1339130. Translational Dynamics of Leaf and. Chloroplast Development in Maize. Mu Insertion Search Interface. Mu-Illumina Gene Identification Service. Outreach at U Oregon. Outreach at Danforth Center. The goals of this project are to:. Use a large-scale forward genetic strategy to assign molecular and physiological functions to 100 genes in maize that are required for photosynthesis. 6000 new sequence-indexed Mu insertions which can be...

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