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PMID: 15799777 Published · epublish English Journal Article Research Support, U.S. Gov't, Non-P.H.S.

Floral gene resources from basal angiosperms for comparative genomics research.

BMC plant biology ·Vol. 5 ·2005-03-30 ·Pages 5

Albert VA, Soltis DE, Carlson JE, Farmerie WG, Wall PK, Ilut DC, Solow TM, Mueller LA, Landherr LL, Hu Y, Buzgo M, Kim S, Yoo MJ, Frohlich MW, Perl-Treves R, Schlarbaum SE, Bliss BJ, Zhang X, Tanksley SD, Oppenheimer DG, Soltis PS, Ma H, DePamphilis CW, Leebens-Mack JH

Abstract

The Floral Genome Project was initiated to bridge the genomic gap between the most broadly studied plant model systems. Arabidopsis and rice, although now completely sequenced and under intensive comparative genomic investigation, are separated by at least 125 million years of evolutionary time, and cannot in isolation provide a comprehensive perspective on structural and functional aspects of flowering plant genome dynamics. Here we discuss new genomic resources available to the scientific community, comprising cDNA libraries and Expressed Sequence Tag (EST) sequences for a suite of phylogenetically basal angiosperms specifically selected to bridge the evolutionary gaps between model plants and provide insights into gene content and genome structure in the earliest flowering plants. Random sequencing of cDNAs from representatives of phylogenetically important eudicot, non-grass monocot, and gymnosperm lineages has so far (as of 12/1/04) generated 70,514 ESTs and 48,170 assembled unigenes. Efficient sorting of EST sequences into putative gene families based on whole Arabidopsis/rice proteome comparison has permitted ready identification of cDNA clones for finished sequencing. Preliminarily, (i) proportions of functional categories among sequenced floral genes seem representative of the entire Arabidopsis transcriptome, (ii) many known floral gene homologues have been captured, and (iii) phylogenetic analyses of ESTs are providing new insights into the process of gene family evolution in relation to the origin and diversification of the angiosperms. Initial comparisons illustrate the utility of the EST data sets toward discovery of the basic floral transcriptome. These first findings also afford the opportunity to address a number of conspicuous evolutionary genomic questions, including reproductive organ transcriptome overlap between angiosperms and gymnosperms, genome-wide duplication history, lineage-specific gene duplication and functional divergence, and analyses of adaptive molecular evolution. Since not all genes in the floral transcriptome will be associated with flowering, these EST resources will also be of interest to plant scientists working on other functions, such as photosynthesis, signal transduction, and metabolic pathways.

MeSH Terms
Biodiversity Computational Biology Conserved Sequence DNA, Complementary/genetics Databases, Nucleic Acid Expressed Sequence Tags Flowers/genetics Gene Library Genes, Plant Genome, Plant Genomics/methods Internet Magnoliopsida/classification,genetics Phylogeny
Chemicals
DNA, Complementary
Authors & Affiliations
24 authors, click to expand affiliations / ORCID
Albert Victor A
Natural History Museum, University of Oslo, NO-0318 Oslo, Norway. [email protected] <[email protected]>
Soltis Douglas E
Carlson John E
Farmerie William G
Wall P Kerr
Ilut Daniel C
Solow Teri M
Mueller Lukas A
Landherr Lena L
Hu Yi
Buzgo Matyas
Kim Sangtae
Yoo Mi-Jeong
Frohlich Michael W
Perl-Treves Rafael
Schlarbaum Scott E
Bliss Barbara J
Zhang Xiaohong
Tanksley Steven D
Oppenheimer David G
Soltis Pamela S
Ma Hong
DePamphilis Claude W
Leebens-Mack James H
References (55)
55 references, click to expand
  1. Coding sequence divergence between two closely related plant species: Arabidopsis thaliana and Brassica rapa ssp. pekinensis.
    J Mol Evol. 2002 Jun;54(6):746-53 PMID: 12029356
  2. Gramene: a resource for comparative grass genomics.
    Nucleic Acids Res. 2002 Jan 1;30(1):103-5 PMID: 11752266
  3. Darwin's abominable mystery: Insights from a supertree of the angiosperms.
    Proc Natl Acad Sci U S A. 2004 Feb 17;101(7):1904-9 PMID: 14766971
  4. Genomic approaches to plant stress tolerance.
    Curr Opin Plant Biol. 2000 Apr;3(2):117-24 PMID: 10712956
  5. T-Coffee: A novel method for fast and accurate multiple sequence alignment.
    J Mol Biol. 2000 Sep 8;302(1):205-17 PMID: 10964570
  6. Missing links: the genetic architecture of flowers [correction of flower] and floral diversification.
    Trends Plant Sci. 2002 Jan;7(1):22-31; dicussion 31-4 PMID: 11804823
  7. Genome-wide analysis of spatial gene expression in Arabidopsis flowers.
    Plant Cell. 2004 May;16(5):1314-26 PMID: 15100403
  8. Evolution of the APETALA3 and PISTILLATA lineages of MADS-box-containing genes in the basal angiosperms.
    Mol Biol Evol. 2004 Mar;21(3):506-19 PMID: 14694075
  9. Selection on rapidly evolving proteins in the Arabidopsis genome.
    Genetics. 2003 Feb;163(2):723-33 PMID: 12618409
  10. The Gene Ontology (GO) database and informatics resource.
    Nucleic Acids Res. 2004 Jan 1;32(Database issue):D258-61 PMID: 14681407
  11. MUSCLE: a multiple sequence alignment method with reduced time and space complexity.
    BMC Bioinformatics. 2004 Aug 19;5:113 PMID: 15318951
  12. PlantGDB, plant genome database and analysis tools.
    Nucleic Acids Res. 2004 Jan 1;32(Database issue):D354-9 PMID: 14681433
  13. A draft sequence of the rice genome (Oryza sativa L. ssp. japonica).
    Science. 2002 Apr 5;296(5565):92-100 PMID: 11935018
  14. Type I MADS-box genes have experienced faster birth-and-death evolution than type II MADS-box genes in angiosperms.
    Proc Natl Acad Sci U S A. 2004 Feb 17;101(7):1910-5 PMID: 14764899
  15. Maize R2R3 Myb genes: Sequence analysis reveals amplification in the higher plants.
    Genetics. 1999 Sep;153(1):427-44 PMID: 10471724
  16. The automatic detection of homologous regions (ADHoRe) and its application to microcolinearity between Arabidopsis and rice.
    Genome Res. 2002 Nov;12(11):1792-801 PMID: 12421767
  17. Comparative genomics of chalcone synthase and Myb genes in the grass family.
    Genes Genet Syst. 2000 Feb;75(1):1-16 PMID: 10846616
  18. Secret life of genes.
    Nature. 2002 Feb 14;415(6873):741 PMID: 11845189
  19. Base-calling of automated sequencer traces using phred. II. Error probabilities.
    Genome Res. 1998 Mar;8(3):186-94 PMID: 9521922
  20. Protein families and TRIBES in genome sequence space.
    Nucleic Acids Res. 2003 Aug 1;31(15):4632-8 PMID: 12888524
  21. Isolation of a MADS-box gene (ERAF17) and correlation of its expression with the induction of formation of female flowers by ethylene in cucumber plants (Cucumis sativus L.).
    Planta. 2001 Oct;213(6):943-52 PMID: 11722131
  22. A draft sequence of the rice genome (Oryza sativa L. ssp. indica).
    Science. 2002 Apr 5;296(5565):79-92 PMID: 11935017
  23. Functional annotation of the Arabidopsis genome using controlled vocabularies.
    Plant Physiol. 2004 Jun;135(2):745-55 PMID: 15173566
  24. The early evolution of the angiosperm flower.
    Trends Ecol Evol. 1987 Oct;2(10):300-4 PMID: 21227870
  25. A decade of progress in plant molecular phylogenetics.
    Trends Genet. 2003 Dec;19(12):717-24 PMID: 14642753
  26. Phylogeny and diversification of B-function MADS-box genes in angiosperms: evolutionary and functional implications of a 260-million-year-old duplication.
    Am J Bot. 2004 Dec;91(12):2102-18 PMID: 21652358
  27. Widespread paleopolyploidy in model plant species inferred from age distributions of duplicate genes.
    Plant Cell. 2004 Jul;16(7):1667-78 PMID: 15208399
  28. Duplication and diversification in the APETALA1/FRUITFULL floral homeotic gene lineage: implications for the evolution of floral development.
    Genetics. 2003 Oct;165(2):821-33 PMID: 14573491
  29. A survey of tricolpate (eudicot) phylogenetic relationships.
    Am J Bot. 2004 Oct;91(10):1627-44 PMID: 21652313
  30. Rate heterogeneity among lineages of tracheophytes: integration of molecular and fossil data and evidence for molecular living fossils.
    Proc Natl Acad Sci U S A. 2002 Apr 2;99(7):4430-5 PMID: 11917101
  31. The major clades of MADS-box genes and their role in the development and evolution of flowering plants.
    Mol Phylogenet Evol. 2003 Dec;29(3):464-89 PMID: 14615187
  32. Basic local alignment search tool.
    J Mol Biol. 1990 Oct 5;215(3):403-10 PMID: 2231712
  33. Molecular evidence on plant divergence times.
    Am J Bot. 2004 Oct;91(10):1656-65 PMID: 21652315
  34. The origin and diversification of angiosperms.
    Am J Bot. 2004 Oct;91(10):1614-26 PMID: 21652312
  35. Whole genome sequence comparisons and "full-length" cDNA sequences: a combined approach to evaluate and improve Arabidopsis genome annotation.
    Genome Res. 2004 Mar;14(3):406-13 PMID: 14993207
  36. Fossils and plant phylogeny.
    Am J Bot. 2004 Oct;91(10):1683-99 PMID: 21652317
  37. An efficient algorithm for large-scale detection of protein families.
    Nucleic Acids Res. 2002 Apr 1;30(7):1575-84 PMID: 11917018
  38. Missing data, incomplete taxa, and phylogenetic accuracy.
    Syst Biol. 2003 Aug;52(4):528-38 PMID: 12857643
  39. The MADS box gene family in tomato: temporal expression during floral development, conserved secondary structures and homology with homeotic genes from Antirrhinum and Arabidopsis.
    Plant J. 1991 Sep;1(2):255-66 PMID: 1688249
  40. The Pfam protein families database.
    Nucleic Acids Res. 2004 Jan 1;32(Database issue):D138-41 PMID: 14681378
  41. Evolution of the angiosperms: calibrating the family tree.
    Proc Biol Sci. 2001 Nov 7;268(1482):2211-20 PMID: 11674868
  42. Ancient polyploidization predating divergence of the cereals, and its consequences for comparative genomics.
    Proc Natl Acad Sci U S A. 2004 Jun 29;101(26):9903-8 PMID: 15161969
  43. The TIGR Gene Indices: analysis of gene transcript sequences in highly sampled eukaryotic species.
    Nucleic Acids Res. 2001 Jan 1;29(1):159-64 PMID: 11125077
  44. Analysis of the genome sequence of the flowering plant Arabidopsis thaliana.
    Nature. 2000 Dec 14;408(6814):796-815 PMID: 11130711
  45. The evolution of the SEPALLATA subfamily of MADS-box genes: a preangiosperm origin with multiple duplications throughout angiosperm history.
    Genetics. 2005 Apr;169(4):2209-23 PMID: 15687268
  46. Evidence that rice and other cereals are ancient aneuploids.
    Plant Cell. 2003 Sep;15(9):2192-202 PMID: 12953120
  47. CLUSTAL W: improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position-specific gap penalties and weight matrix choice.
    Nucleic Acids Res. 1994 Nov 11;22(22):4673-80 PMID: 7984417
  48. Dating the monocot-dicot divergence and the origin of core eudicots using whole chloroplast genomes.
    J Mol Evol. 2004 Apr;58(4):424-41 PMID: 15114421
  49. Gene ontology: tool for the unification of biology. The Gene Ontology Consortium.
    Nat Genet. 2000 May;25(1):25-9 PMID: 10802651
  50. CAP3: A DNA sequence assembly program.
    Genome Res. 1999 Sep;9(9):868-77 PMID: 10508846
  51. Role of SUPERMAN in maintaining Arabidopsis floral whorl boundaries.
    Nature. 1995 Nov 9;378(6553):199-203 PMID: 7477325
  52. Unravelling angiosperm genome evolution by phylogenetic analysis of chromosomal duplication events.
    Nature. 2003 Mar 27;422(6930):433-8 PMID: 12660784
  53. Orthology, paralogy and proposed classification for paralog subtypes.
    Trends Genet. 2002 Dec;18(12):619-20 PMID: 12446146
  54. Patterns of gene duplication and functional evolution during the diversification of the AGAMOUS subfamily of MADS box genes in angiosperms.
    Genetics. 2004 Feb;166(2):1011-23 PMID: 15020484
  55. Expression of multiple AGAMOUS-like genes in male and female flowers of cucumber (Cucumis sativus L.).
    Plant Cell Physiol. 1998 Jul;39(7):701-10 PMID: 9729894
Article Info
Journal
BMC plant biology
Abbr.
BMC Plant Biol
ISSN
1471-2229
Published
2005-03-30
Epub
2005-00-30
Pages
5
Language
English
Region
England
NLM ID
100967807
PMCID
PMC1083416
Subset
IM
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