Variation of RAPD patterns between Male and Female Genomic DNAs in Dioecious Rumex acetosa L.

자웅이주 식물 수영 (Rumex acetosa L.)에서 암.수에 따른 RAPD pattern의 다양성 분석

  • 김동순 (충남대학교 자연과학대학 생물학과) ;
  • 구달회 (충남대학교 자연과학대학 생물학과) ;
  • 허윤강 (충남대학교 자연과학대학 생물학과) ;
  • 방재욱 (충남대학교 자연과학대학 생물학과)
  • Published : 2003.02.01

Abstract

The genetic variation of random amplified polymorphic DNA (RAPD) patterns of genomic DNAs was investigated in dioecious plant Rumex acetosa L., which carries different sex chromosome complements in female (2n=12A+XX) and male (2n=12A+XY$_1$Y$_2$). One hundred and twenty random primers consisted of 10-mer were used for PCR amplification. Polymorphic bands were found in 24 primers. Specific bands for female and male were 16 and 18, respectively. Especially, a band of 1,440 bp from the OPC-10 primer was male specific. These sex specific RAPD markers are used to understanding the sex determination mechanism in plants.

$.$수 개체 사이에 상이한 성염색체 조성을 지니는 자웅 이주 식물인 수영 (Rumex acetsa L.)에서 120개 의 10-mer random primer를 이용하여 RAPD 분석을 수행하였다. 적용한 primer들 중 24개의 primer 에서 34개의 암$.$수 특이 밴드가 관찰되었다 암 개체 특이 밴드는 16개였으며, 수 개체 특이 밴드는 18개로 나타났다. 특히 OPC-10 primer로부터 얻은 1,440 bp인 DNA 단편은 수 개체 특이적으로 나타났다. 본 연구에서 얻어진 성 특이적인 RAPD 마커들은 식물에서 성 결정 메커니즘 구명의 기본 자료로 활용될 수 있을 것이다.

Keywords

References

  1. Journal of Heredity v.89 Identification of aRAPD marker linked to sex determination in the basket willow (Salix viminalis L.) Alstrom-Rapaport C.;Lascoux,M.;Wang,Y.C.;Roberts,G.;Tuskan G.A. https://doi.org/10.1093/jhered/89.1.44
  2. Moleclae characterization of inter-and intra-specific somatic hybrids of potato using randomly amplified polymorphic DNA madrkers v.223 Baird,E.;Cooper-Bland,S.;Wangh,R.;Demaine,M.;Powell,W.
  3. Royal Botanic Gardens Rew v.1 Vascular plant families and genera Burmmit,R.K.
  4. Heredity v.69 Detection of genetic variation between and within population of Gliricidia sepium and G. maculata using RAPD markers Chalmers,K.J.;Waugh,R.;Sprent,J.;I.Simons,A.J.;Powell,W.
  5. Plant Mol. Biol.Rep. v.1 A plant DNA minipreoaration: version Ⅱ dellaporta,S.L.;Wood,J.;Hicks,J.B.
  6. Cytometry v.19 Sex determination in dioecious plants Melandrium album and Mrubrum using high-resolution flow cytometry Dolezel,J.;Gohde,w. https://doi.org/10.1002/cyto.990190203
  7. Genetics v.151 Sexual Dimorphism in White Campion: Deletion om the Y chromosome results in a floral asexual phenotype Faebos,I.;Veuskens,J.;Vyskot,B.;Oliverira,M.;Hinnisdaels,S.;Aghmir,A.;Mouras,A.;Negrutiu,L.
  8. Plant Cell Reperts v.12 RAPD markers for coustructing intraspecific tomato genetic maps Foolad,M.R.;Jones,R.A.;Rodriquez,R.L.
  9. Plant Mol. Biol. Rep. v.11 Constancy of RAPD primer amplification strength among distantly related taxa of flowering plants Fritsch,P.;Hanson,M.A.;Spore,C.D.;Pack,P.E.;Rieseberg,L.H. https://doi.org/10.1007/BF02670555
  10. Bot. Mag. v.37 Cytological studies on Rumea I. Chromosomes of Rumea actosa L Kihara,H.;Ono,T. https://doi.org/10.15281/jplantres1887.37.435_84
  11. Bot. Mag. v.37 Cytological studies on Rumea Ⅱ . On the relstion of chromosomes number and sexes in Rumex acetosa L Kihara,H.;Ono,T. https://doi.org/10.15281/jplantres1887.37.438_147
  12. Zeitschrift Indukt. Abstamm. und Vererbngslehre v.39 The sex cromosomes of Rumex acetosa. Kihara,H.;Ono,T. https://doi.org/10.1007/BF01961517
  13. Illustrated Flora of Korea Lee,C.B.
  14. Korea J. Genetics v.13 Karyotype and chromosomal polymorphism in Rumex acetosa L Lee,M.K.;Choi,H.W.;Bang,J.W.
  15. Z. Pflanzenzchtung v.82 Identification of the sex chromosome pair in Asparaqus (Asparaqus officinalis L.) Loptien,H.
  16. Nature v.152 A Y-Oinked inheritance of asynapsis in Rumex acetosa Love,A.
  17. Silence latifolia. Plant cell Physiol v.40 Semiautomatics laser beam micodissection of the Y chromosome and analysis of Y chromosome DNA in a dioecious plant Matsunaga,S.;Kawano,S.;Michmoto,T.;Higashiyama,T.;Nakao,S.;Sakai,A.;Kuroiwa,T. https://doi.org/10.1093/oxfordjournals.pcp.a029475
  18. Marchantia Ppolymorpha. Chromosome Res. v.9 Additional locus rDNA sequence specific to the X chromosome of the liverwort Nakayama,S.;Fuishita,M.;Sone,T.;Ohyama,K. https://doi.org/10.1023/A:1011676328165
  19. Sci. Rep.Tohoku Imp. Univ. v.10 Chromosome und Sexualitat von Rumex Acetosa One,T.
  20. Hereditas v.129 Genetic sex determination and RAPD marker segregation in the dioecious species sea Buckthorn (Hippophae rhamnoides L.) Persson,H.A.;Nybom,H. https://doi.org/10.1111/j.1601-5223.1998.00045.x
  21. Amer. J. Bot. v.5 Male-specific DNA in the dioecious species Atriplex garrettii(Chenopodiaceae) Ruas,C.F.;Fairbanks,D.J.;Evans,R.P.;Stutz,H.C.;Andersen,W.R.;Ruas,P.M.
  22. Genome v.40 Laser isolation of plant sex chromosomes: Studies on the DNA composition of the X and Y sex chromosome of Silene latifolia Scutt,C.P.;Kamisugi,Y.;Sakai,F.;Gilmartin,P.M. https://doi.org/10.1139/g97-793
  23. Chromosoma v.108 Chromosome painthing of Y chromosomes and isolation of a Ychromosome specific repetitive sequence in the dioecious plant Rumex acetosa Shibata,F.;Hizume,M.;Kuroki,Y.
  24. Chromosome Research v.8 Differentiation and the polymorphic nature of thw Y chromosomes revealed by repetitive sequences in the diocious plant, Rumec acetosa Shibata,F.;Hizume,M.;Kuroki,Y. https://doi.org/10.1023/A:1009252913344
  25. Genome v.41 Genome-specific repetitive DNA and RAPD markers for genome idntification in Elymus and Hordelymus Svitashev,S.;Bryngelsson,T.;Li,X.;Wang,R.C. https://doi.org/10.1139/gen-41-1-120
  26. Advanced Grnrtics v.9 The mechanism of sex determination in dioecious flowering plants Westergaard,M. https://doi.org/10.1016/S0065-2660(08)60163-7
  27. Heredity v.57 Continuous variation in Y-chromosome structure of Rumex acetosa Wilby,A.S.;Parker,J.S. https://doi.org/10.1038/hdy.1986.115
  28. Heredity v.59 Population structure of hypervariable Y-chromosomes in Rumex acetosa Wilby,A.S. https://doi.org/10.1038/hdy.1987.105
  29. Theor. Appl.Genet. v.86 Random amplified polymorphic DNA (RAPD) markers for genetic analysis in Allium Wikie,S.E.;Issac,P.G.;Slater,R.J. https://doi.org/10.1007/BF00838566
  30. Genome v.41 Analysis of the sex chromosomes of the Mefiterranean fruit fly by microdissected DNA probes Willhoeft,U.;Murller-Navia,J.;Franz,G. https://doi.org/10.1139/gen-41-1-74
  31. Nucleic Acid Res. v.18 DNA polymorphisms amplified by arbitrary primers are useful as genetic makers Willianms,J.G.K.;Kubelik,A.R.;Livak,K.J.;Rafalski,J.A.;Tingey,S.V. https://doi.org/10.1093/nar/18.22.6531
  32. Plant Sci. v.80 Sex determination in the dioecious Melandrium. The X/Y chromosome system allows complementary cloning strategies Ye,D. https://doi.org/10.1016/0168-9452(91)90275-D
  33. Acta Soc. Bot. Pol. v.32 An investigation on polyploidy and sex determination within the genus Rumex Zuk,J.