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PMID: 17999063 Published · ppublish English Journal Article Research Support, U.S. Gov't, Non-P.H.S.

High-efficiency Agrobacterium-mediated transformation of Brachypodium distachyon inbred line Bd21-3.

Plant cell reports ·Vol. 27 ·No. 3 ·2008-03-00 ·Pages 471-8

Vogel J, Hill T

Abstract

Brachypodium distachyon (Brachypodium) is a small grass with biological attributes (rapid generation time, small genome, diploid accessions, small stature and simple growth requirements) that make it suitable for use as a model system. In addition, a growing list of genomic resources have been developed or are currently under development including: cDNA libraries, BAC libraries, EST sequences, BAC end sequences, a physical map, genetic markers, a linkage map and, most importantly, the complete genome sequence. To maximize the utility of Brachypodium as a model grass it is necessary to develop an efficient Agrobacterium-mediated transformation system. In this report we describe the identification of a transformable inbred diploid line, Bd21-3, and the development of a transformation method with transformation efficiencies as high as 41% of co-cultivated calluses producing transgenic plants. Conducting the co-cultivation step under desiccating conditions produced the greatest improvement in transformation efficiency.

MeSH Terms
Blotting, Southern DNA, Plant/genetics Genome, Plant/genetics Plants, Genetically Modified Poaceae/genetics Rhizobium/genetics Sequence Analysis, DNA Transformation, Genetic/genetics
Chemicals
DNA, Plant
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Vogel John
USDA Western Regional Research Center, Albany, CA 94710, USA. jvogel@pw.usda.gov
Hill Theresa
References (11)
11 references, click to expand
  1. Construction and characterization of two BAC libraries from Brachypodium distachyon, a new model for grass genomics.
    Genome. 2006 Sep;49(9):1099-108 PMID: 17110990
  2. Brachypodium distachyon. A new model system for functional genomics in grasses.
    Plant Physiol. 2001 Dec;127(4):1539-55 PMID: 11743099
  3. Alignment of the genomes of Brachypodium distachyon and temperate cereals and grasses using bacterial artificial chromosome landing with fluorescence in situ hybridization.
    Genetics. 2006 May;173(1):349-62 PMID: 16489232
  4. The nuclear genome of Brachypodium distachyon: analysis of BAC end sequences.
    Funct Integr Genomics. 2008 May;8(2):135-47 PMID: 17985162
  5. Transgene integration, organization and interaction in plants.
    Plant Mol Biol. 2003 May;52(2):247-58 PMID: 12856933
  6. A DNA transformation-competent Arabidopsis genomic library in Agrobacterium.
    Biotechnology (N Y). 1991 Oct;9(10):963-7 PMID: 1368724
  7. EST sequencing and phylogenetic analysis of the model grass Brachypodium distachyon.
    Theor Appl Genet. 2006 Jul;113(2):186-95 PMID: 16791686
  8. T-DNA insertional mutagenesis for functional genomics in rice.
    Plant J. 2000 Jun;22(6):561-70 PMID: 10886776
  9. Rice transformation for crop improvement and functional genomics.
    Plant Sci. 2000 Sep 8;158(1-2):1-18 PMID: 10996240
  10. Nuclear DNA amounts in angiosperms: progress, problems and prospects.
    Ann Bot. 2005 Jan;95(1):45-90 PMID: 15596457
  11. A rapid and efficient transformation protocol for the grass Brachypodium distachyon.
    Plant Cell Rep. 2005 Mar;23(10-11):751-8 PMID: 15503032
Article Info
Journal
Plant cell reports
Abbr.
Plant Cell Rep
ISSN
0721-7714
Published
2008-03-00
Epub
2007-00-13
Pages
471-8
Language
English
Region
Germany
NLM ID
9880970
Subset
IM
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