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The authors describe four new Hox genes from the spider Cupiennius salei


Biology Articles » Zoology » Duplicated Hox genes in the spider Cupiennius salei » References

References
- Duplicated Hox genes in the spider Cupiennius salei

  1. Carroll SB: Homeotic genes and the evolution of arthropods and chordates.

    Nature 1995, 376:479-485.

  2. McGinnis W, Hart CP, Gehring WJ, Ruddle FH: Molecular cloning and chromosome mapping of a mouse DNA sequence homologous to homeotic genes of Drosophila.

    Cell 1984, 38:675-680.

  3. Lewis EB: A gene complex controlling segmentation in Drosophila.

    Nature 1978, 276:565-570.

  4. McGinnis B, Krumlauf R: Homeobox genes and axial patterning.

    Cell 1992, 68:283-302.

  5. Carroll SB, Grenier JK, Weatherbee SD: From DNA to diversity, Molecular Genetics and the evolution of animal design. 2nd edition. Malden MA: Blackwell Publishing; 2005.

  6. Pearson JC, Lemons D, McGinnis W: Modulating Hox gene function during animal body patterning.

    Nature Reviews Genetics 2005, 6:893-904.

  7. Chourrout D, Delsuc F, Chourrout P, Edvardsen RB, Rentzsch F, Renfer E, Jensen MF, Zhu B, de Jong P, Steele RE, Technau U: Minimal ProtoHox cluster inferred from bilaterian and cnidarian Hox complements.

    Nature 2006, 442:684-687.

  8. Cook CE, Jiménez E, Akam M, Saló E: The Hox gene complement of acoel flatworms, a basal bilaterian clade.

    Evol Dev 2004, 6:154-163.

  9. de Rosa R, Grenier JK, Andreeva T, Cook CE, Adoutte A, Akam M, Carroll SB, Balavoine G: Hox genes in brachiopods and priapulids and protostome evolution.

    Nature 1999, 399:772-776.

  10. Schubert FR, Nieselt-Struwe K, Gruss P: The Antennapedia-type homeobox genes have evolved from three precursors separated early in metazoan evolution.

    Proc Natl Acad Sci USA 1993, 90:143-147.

  11. Hoegg S, Meyer A: Hox clusters as models for vertebrate genome evolution.

    Trends Genet 2005, 21:421-424.

  12. Hughes CL, Kaufman TC: Hox genes and the evolution of the arthropod body plan.

    Evol Dev 2002, 4:459-499.

  13. Cartwright P, Dick M, Buss LW: HOM/Hox type homeoboxes in the chelicerate Limulus polyphemus.

    Mol Phyl Evol 1993, 2:185-192.

  14. Abzhanov A, Popadic A, Kaufman TC: Chelicerate Hox genes and the homology of arthropod segments.

    Evol Dev 1999, 1:77-89.

  15. Damen WGM, Hausdorf M, Seyfarth E-A, Tautz D: A conserved mode of head segmentation in arthropods revealed by the expression pattern of Hox genes in a spider.

    Proc Natl Acad Sci USA 1998, 95:10665-10670.

  16. Bastianello A, Ronco M, Burato PA, Minelli A: Hox gene sequences from the geophilomorph centipede Pachymerium ferrugineum (C. L. Koch, 1835) (Chilopoda: Geophilomorpha: Geophilidae): implications for the evolution of the Hox class genes of arthropods.

    Mol Phylogenet Evol 2002, 22:155-161.

  17. Damen WGM, Tautz D: A hox class 3 orthologue from the spider Cupiennius salei is expressed in a Hox-gene-like fashion.

    Dev Genes Evol 1998, 208:586-590.

  18. Damen WGM, Tautz D: Abdominal-B expression in a spider suggests a general role for Abdominal-B in specifying the genital structure.

    J Exp Zool 1999, 285:85-91.

  19. Damen WGM, Janssen R, Prpic N-M: Pair rule gene orthologs in spider segmentation.

    Evol Dev 2005, 7:618-628.

  20. Telford MJ, Thomas RH: Expression of homeobox genes shows chelicerate arthropods retain their deuterocerebral segment.

    Proc Natl Acad Sci USA 1998, 95:10671-10675.

  21. Manuel M, Jager M, Murienne J, Clabaut C, Le Guyader H: Hox genes in sea spiders (Pycnogonida) and the homology of arthropod head segments.

    Genes Evol 2006, 216:481-491.

  22. Hughes CL, Kaufman TC: Exploring the myriapod body plan: expression patterns of the ten Hox genes in a centipede.

    Development 2002, 129:1225-1238.

  23. Janssen R, Damen WGM: The ten Hox genes of the millipede Glomeris marginata.

    Dev Genes Evol 2006, 216:451-465.

  24. Krumlauf R: Hox genes in vertebrate development.

    Cell 1994, 78:191-201.

  25. Lynch M, Conery JS: The evolutionary fate and consequences of duplicate genes.

    Science 2000, 290:1151-1555.

  26. Falciani F, Hausdorf B, Schröder R, Akam M, Tautz D, Denell R, Brown S: Class 3 Hox genes in insects and the origin of zen.

    Proc Natl Acad Sci USA 1996, 93:8479-8484.

  27. Telford MJ: Evidence for the derivation of the Drosophila fushi tarazu gene from a Hox gene orthologous to lophotrochozoan Lox5.

    Curr Biol 2000, 10:349-253.

  28. Damen WGM: fushi tarazu: A Hox gene changes its role.

    BioEssays 2002, 24:992-995.

  29. Holland PWH, Garcia-Fernandez J: Hox Genes and Chordate Evolution.

    Dev Biol 1996, 173:382-395.

  30. Lynch VJ, Roth JJ, Wagner GP: Adaptive evolution of Hox-gene homeodomains after cluster duplications.

    BMC Evol Biol 2006, 6:86.

  31. Damen WGM: Parasegmental organization of the spider embryo implies that the parasegment is an evolutionary conserved entity in arthropod embryogenesis.

    Development 2002, 129:1239-1250.

  32. Prpic N-M, Janssen R, Wigand B, Klingler M, Damen WGM: Gene expression in spider appendages reveals reversal of exd/hth spatial specificity, altered leg gap gene dynamics, and suggests divergent distal morphogen signaling.

    Dev Biol 2003, 264:119-140.

  33. Stollewerk A: Recruitment of cell groups through Delta/Notch signalling during spider neurogenesis.

    Development 2002, 129:5339-5348.

  34. Schoppmeier M, Damen WGM: Suppressor of Hairless and Prenesilin phenotypes imply involvement of canonical Notch-signalling in segmentation of the spider Cupiennius salei.

    Dev Biol 2005, 280:211-224.

  35. Schoppmeier M, Damen WGM: Expression of Pax group III genes suggests a single-segmental periodicity for opisthosomal segment patterning in the spider Cupiennius salei .

    Evol Dev 2005, 7:160-169.

  36. Damen WGM, Saridaki T, Averof M: Diverse adaptations of an ancestral gill: a common evolutionary origin for wings, breathing organs and spinnerets.

    Curr Biol 2002, 12:1711-1716.

  37. Damen WGM, Weller M, Tautz D: Expression patterns of hairy, even-skipped, and runt in the spider Cupiennius salei imply that these genes were segmentation genes in a basal arthropod.

    Proc Natl Acad Sci USA 2000, 97:4515-4519.

  38. Damen WGM, Tautz D: Comparative molecular embryology of arthropods: the expression of Hox genes in the spider Cupiennius salei.

    Invertebrate Reproduction and Development 1999, 36:203-209.

  39. McGinnis W, Krumlauf R: Homeobox genes and axial patterning.

    Cell 1992, 68:283-302.

  40. Mahfooz NS, Li H, Popadic A: Differential expression patterns of the hox gene are associated with differential growth of insect hind legs.

    Proc Natl Acad Sci USA 2004, 101:4877-4882.

  41. Foelix RF: Biology of spiders. 2nd edition. New York: Oxford University Press; 1996.

  42. Wu X, Vasisht V, Kosman D, Reinitz J, Small S: Thoracic patterning by the Drosophila gap gene hunchback.

    Dev Biol 2001, 237:79-92.

  43. Bucher G, Klingler M: Divergent segmentation mechanism in the short germ insect Tribolium revealed by giant expression and function.

    Development 2004, 131:1729-1740.

  44. Cerny AC, Bucher G, Schröder R, Klingler M: Breakdown of abdominal patterning in the Tribolium Krüppel mutant jaws.

    Development 2005, 132:5353-5363.

  45. Martinez-Arias A, Lawrence PA: Parasegments and compartments in the Drosophila embryo.

    Nature 1985, 313:639-642.


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