PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
2012 | 34 | 2 |

Tytuł artykułu

Simple, rapid and reliable methods to obtain high quality RNA and genomic DNA from Quercus ilex L. leaves suitable for molecular biology studies

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Isolation of high-quality RNA and genomic DNA (gDNA) from many samples is a necessary step before accomplishing molecular biology studies. The particular composition of Quercus ilex leaves, specially hard and rich in cell wall material, polyphenolics and secondary metabolites, usually results in preparations contaminated with non-nucleic acid compounds. Although many methods have been developed, each case of study demands a protocol adapted to the specific plant sample and the pursued research objectives. We have evaluated several protocols to establish the methodology that best suited to our current genetic and molecular studies on Q. ilex. Our priority was to select the simplest methods reducing the plant starting material and the time employed, without compromising yield, quality and integrity of the isolated nucleic acids. Our results point to two protocols based on silicamembrane purification, as the most convenient for Q. Ilex leaf tissue, and both procedures are greatly improved by adding insoluble polyvinyl polypyrrolidone during the isolation process. The protocols optimized here can be completed at the microfuge scale and allow a researcher to process 48 samples in 1 h, producing high quality preparations suitable for the routinely molecular biology applications with higher efficiency than other more labour and time-consuming protocols.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

34

Numer

2

Opis fizyczny

p.793-805,fig.,ref.

Twórcy

  • Agricultural and Plant Biochemistry and Proteomic Research Group, Cordoba, Spain
  • Department of Biochemistry and Molecular Biology, Agrifood Campus of International Excellence, University of Cordoba, 14071 Cordoba, Spain
autor
  • Department of Biochemistry and Molecular Biology, Agrifood Campus of International Excellence, University of Cordoba, 14071 Cordoba, Spain
  • Department of Biochemistry and Molecular Biology, Agrifood Campus of International Excellence, University of Cordoba, 14071 Cordoba, Spain
  • Agricultural and Plant Biochemistry and Proteomic Research Group, Cordoba, Spain
  • Department of Biochemistry and Molecular Biology, Agrifood Campus of International Excellence, University of Cordoba, 14071 Cordoba, Spain
  • Agricultural and Plant Biochemistry and Proteomic Research Group, Cordoba, Spain
  • Department of Biochemistry and Molecular Biology, Agrifood Campus of International Excellence, University of Cordoba, 14071 Cordoba, Spain

Bibliografia

  • Aljanabi SM, Forget L, Dookun A (1999) An improved rapid protocol for the isolation of polysaccharide and polyphenol-free sugarcane DNA. Plant Mol Biol Rep 17:1–8
  • Asif MH, Dhawan P, Nath P (2000) A simple procedure for the isolation of high quality RNA from ripening banana fruit. Plant Mol Biol Rep 18:109–115
  • Barzegari A, Vahed SZ, Atashpaz S, Khani S, Omidi Y (2010) Rapid and simple methodology for isolation of high quality genomic DNA from coniferous tissues (Taxus baccata). Mol Biol Rep 37:833–837
  • Basak J, Das M, Ghose TK, Pal A (2004) An efficient and high yielding method of PCR compatible DNA isolation for biotechnological investigations from economically important plants. In: D’Souza L, Anuradha M, Shashikiran N, Hegde S, Rajendra K (eds) Biotechnology for a better future. SAC Publications, Mangalore, pp 99–105
  • Bilgin DD, DeLucia EH, Clough SJ (2009) A robust plant RNA isolation method suitable for Affymetrix GeneChip analysis and quantitative real-time RTPCR. Nat Protoc 4:333–340
  • Boss PK, Davies C, Robinson SP (1996) Analysis of the expression of anthocyanin pathway genes in developing Vitis vinifera L. cv Shiraz grape berries and the implications for pathway regulation. Plant Physiol 111:1059–1066
  • Box MS, Coustham V, Dean C, Mylne JS (2011) Protocol: a simple phenol-based method for 96-well extraction of high quality RNA from Arabidopsis. Plant Methods 7:7. doi:10.1186/1746-4811-7-7
  • Brasier CM (1996) Phytophthora cinnamomi and oak decline in Southern Europe. Environmental contraints including climate change. Ann Des Sci For 53:347–358
  • Brennan CA, Van Cleve MD, Gumport RI (1986) The effects of base analogue substitutions on the Cleavagbey the EcoRI restriction endonuclease of octadeoxyribonucleotides containing modified EcoRI recognition sequences. J Biol Chem 261:7270–7278
  • Bugos RC, Chiang VL, Zhang XH, Campbell ER, Podila GK, Campbell WH (1995) RNA isolation from plant tissues recalcitrant to extraction in guanidine. Biotechniques 19: 734–737
  • Cameron RK, Dixon RA, Lamb CJ (1994) Biologically induced systemic acquired resistance in Arabidopsis thaliana. Plant J 5:715–725
  • Chang S, Puryear J, Cairney J (1993) A simple and efficient method for isolating RNA from pine trees. Plant Mol Biol Rep 11: 113–116
  • Chomczynski P, Sacchi N (1987) Single-step method of RNA isolation by acid guanidinium thiocyanate-phenol-chloroform extraction. Anal Biochem 162:156–159
  • Clarke JD (2009) Cetyltrimethyl ammonium bromide (CTAB) DNA miniprep for plant DNA isolation. Adapted from Arabidopsis: a laboratory manual. Cold Spring Harbor, CSHL Press, NY, USA. 2002
  • Cobos JM, Montoya R, Tuset JJ (1992) New damages of the Quercus woodlands in Spain. In: Proceedings of international congress recent advances in studies on oak decline, Brindisi, Italy, pp 163–169
  • Coelho AC, Lima MB, Neves D, Cravador A (2006) Genetic diversity of two evergreen Oaks [Quercus suber (L.) and Quercus ilex subsp. Rotundifolia (Lam.)] in Portugal using AFLP markers. Sil Genet 55:105–118
  • Derory J, Léger P, Garcia V, Schaeffer J, Hauser M-T, Salin F, Luschnig C, Plomion C, Glössl J, Kremer A (2006) Transcriptome analysis of bud burst in sessile oak (Quercus petraea). New Phytol 170:723–738
  • Dow BD, Ashley MV, Howe HF (1995) Characterization of highly variable (GA/CT)n microsatellites in the bur oak, Quercus macrocarpa. Theor Appl Genet 91:137–141
  • Doyle JJ, Doyle JL (1987) A rapid isolation procedure for small quantities of fresh leaf tissue. Phytochem Bull 19:11–15
  • Dumolin S, Demesure B, Petit RJ (1995) Inheritance of chloroplast and mitochondrial genomes in pedunculate oak investigated with an efficient PCR method. Theor Appl Genet 91:1253–1256
  • Echevarría-Zomeño S, Ariza D, Jorge I, Lenz C, Del Campo A, Jorrín JV, Navarro RM (2009) Changes in the protein profile of Quercus ilex leaves in response to drought stress and recovery. J Plant Physiol 166:233–245
  • Fang G, Hammar S, Grumet R (1992) A quick and inexpensive method for removing polysaccharides from plant genomic DNA. Biotechniques 13:52–57
  • Fernández JF, Sork VL, Gallego G, López J, Bohorques A, Tohme J (2000) Cross-amplification of microsatellite loci in a neotropical Quercus species and standardization of DNA extraction from mature leaves dried in silica gel. Plant Mol Biol Rep 18:397a–397e
  • Gallego FJ, Perez De Algaba A, Fernandez-Escobar R (1999) Etiology of oak decline in Spain. Eur J For Pathol 29:17–27
  • Gambino G, Gribaudo I, Leopold S, Schartl A, Laimer M (2005) Molecular characterization of grapevine plants transformed with GFLV resistance genes: I. Plant Cell Rep 24:655–662
  • Gambino G, Bondaz J, Gribaudo I (2006) Detection and elimination of viruses in callus, somatic embryos and regenerated plantlets of grapevine. Eur J Plant Pathol 114:397–404
  • Gambino G, Gribaudo I (2006) Simultaneous detection of nine grapevine viruses by multiplex reverse transcription-polymerase chain reaction with coamplification of a plant RNA as internal control. Phytopathology 96:1223–1229
  • Gasic KS, Hernandez A, Korban S (2004) RNA extraction from different apple tissues rich in polyphenols and polysaccharides for cDNA library construction. Plant Mol Biol Rep 22:437a–437g
  • Ghangal R, Raghuvanshi S, Sharma PC (2009) Isolation of good quality RNA from a medicinal plant seabuckthorn, rich in secondary metabolites. Plant Physiol Biochem 47:1113–1115
  • Hanania U, Velcheva M, Sahar N, Perl A (2004) An improved method for isolating high-quality DNA from Vitis vinifera nuclei. Plant Mol Biol Rep 22:173–177
  • Hedgpeth J, Goodman HM, Boyer HW (1972) DNA nucleotide sequence restricted by the ri endonuclease. Proc Natl Acad Sci USA 69:3448–3452
  • Iandolino AB, da Silva FG, Lim H, Choi H, Williams LE, Cook DR (2004) High-quality RNA, cDNA and derived EST libraries from grapevine (Vitis vinifera L.). Plant Mol Biol Rep 22:269–278
  • Jiménez P, Agúndez D, Alía R, Gil L (1999) Genetic variation in central and marginal populations of Quercus suber L. Sil Genet 48:278–284
  • Jimenez P, López. de Heredia U, Collada C, Lorenzo Z, Gil L (2004) High variability of chloroplast DNA in three Mediterranean evergreen oaks indicates complex evolutionary history. Heredity 93:510–515
  • John ME (1992) An efficient method for isolation of RNA and DNA from plants containing polyphenolics. Nucl Acids Res 20:2381
  • Jorge I, Navarro RM, Lenz C, Porras C, Jorrín J (2005) The Holm oak leaf proteome: analytical and biological variability in the protein expression level assessed by 2-DE and protein identification tandem mass spectrometry de novo sequencing and sequence similarity searching. Proteomics 5:222–234
  • Jorge I, Navarro RM, Lenz C, Ariza D, Jorrín J (2006) Variation in the Holm oak leaf proteome at different plant developmental stages, between provenances and in response to drought stress. Proteomics 6(Suppl 1):S207–S214
  • Kampfer S, Lexer C, Glossl J, Steinkellner H (1998) Characterization of (GA)n microsatellite loci from Quercus robur. Hereditas 129:183–186
  • Karakousis A, Langridge P (2003) A high-throughput Plant DNA extraction method for marker analysis. Plant Mol Biol Rep 21:95a–95f
  • Khazaal K, Boza J, Ørskov ER (1994) Assessment of phenolicsrelated antinutritive effects in Mediterranean browse: a comparison between the use of the in vitro gas production technique with or without insoluble polyvinylpolypyrrolidone or nylon bag. Animal Feed Sci Technol 49:133–149
  • Kim CS, Lee CH, Shin JS, Chung YS, Hyung NI (1997) A simple and rapid method for isolation of high quality genomic DNA from fruit trees and conifers using PVP. Nucl Acids Res 25:1085–1086
  • Kolosova N, Miller B, Ralph S, Ellis BE, Douglas C, Ritland K, Bohlmann J (2004) Isolation of high-quality RNA from gymnosperm and angiosperm trees. Biotechniques 36:821–824
  • Kuiters AT, Sarink HM (1986) Leaching of phenolic compounds from leaf and needle litter of several deciduous and coniferous trees. Soil Biol Biochem 18:475–480
  • Lee M, Fonseca B, Gonzalez S, Baezayates R (2005) A rapid and efficient method for purifying high quality total RNA from peaches (Prunus persica) for functional genomics analyses. Biol Res 38:83–88
  • Lefort F, Douglas GC (1999) An efficient micro-method of DNA isolation from mature leaves of four hardwood tree species Acer, Fraxinus, Prunus and Quercus. Ann For Sci 56:259–263
  • Leininger TD (1996) Oak physiology under temperature and drought stress as it relates to the oak decline syndrome. Annu Abstr Phytopathol 86:387
  • le Provost G, Herrera R, Paiva JA, Chaumeil P, Salin F, Plomion C (2007) A micromethod for high throughput RNA extraction in forest trees. Biol Res 40:291–297
  • Liu JJ, Goh C-J, Loh C-S, Liu P, Pua E-C (1998) A method for isolation of total RNA from fruit tissues of banana. Plant Mol Biol Rep 16:1–6
  • Lodhi MA, Ye G-N, Weeden F, Reisch BI (1994) A simple and efficient method for DNA extraction from grapevine cultivars, Vitis species and Ampelopsis. Plant Mol Biol Rep 12:6–13
  • Loomis WD, Battaile J (1966) Plant phenolic compounds and the isolation of plant enzymes. Phytochemistry 5:423–438
  • Mace ES, Buhariwalla HK, Crouch JH (2003) A high-throughput DNA extraction protocol for tropical molecular breeding programs. Plant Mol Biol Rep 21:459a–459h
  • Manos PS, Doyle JJ, Nixon KC (1999) Phylogeny, biogeography, and processes of molecular differentiation in Quercus subgenus Quercus (Fagaceae). Mol Phylogenet Evol 12:333–349
  • Michiels A, Van den Ende W, Tucker M, Van Riet L, Van Laere A (2003) Extraction of high-quality genomic DNA from latexcontaining plants. Anal Biochem 315:85–89
  • Murray MG, Thompson WF (1980) Rapid isolation of high molecular weight plant DNA. Nucl Acids Res 8:4321–4325
  • Pandey RN, Adams RP, Flournoy LE (1996) Inhibition of random amplified polymorphic DNAs (RAPDs) by plant polysaccharides. Plant Mol Biol Rep 14:17–22
  • Porebski S, Bailey LG, Baum R (1997) Modification of a CTAB DNA extraction protocol for plants containing high polysaccharide and polyphenol components. Plant Mol Biol Rep 15:8–15
  • Pulido FJ, Díaz M, Hidalgo SJ (2001) Size structure and regeneration of Spanish Holm oak Quercus ilex forests and dehesas: effects of agroforestry use on their long-term sustainability. For Ecol Manag 146:1–13
  • Rachmayanti Y, Leinemann L, Gailing O, Finkeldey R (2006) Extraction, amplification and characterization of wood DNA from Dipterocarpaceae. Plant Mol Biol Report 24:45–55
  • Rachmayanti Y, Leinemann L, Gailing O, Finkeldey R (2009) DNA from processed and unprocessed wood: factors influencing the isolation success. For Sci Int Genet 3:185–192
  • Rott ME, Jelkmann W (2001) Characterization and detection of several filamentous viruses of cherry: adaptation of an alternative cloning method (DOP-PCR), and modification of an RNA extraction protocol. Eur J Plant Pathol 107:411–420
  • Sambrook J, Russell DW (2001) Molecular cloning: a laboratory manual. Cold Spring Harbor Laboratory Press, Cold Spring Harbor
  • Sánchez ME, Caetano P, Ferraz J, Trapero A (2002) Phytophthora disease of Quercus ilex in south-western Spain. For Pathol 32:5–18
  • Scotti-Saintagne C, Mariette S, Porth I, Goicoechea PG, Barreneche T, Bodénès C, Burg K, Kremer A (2004) Genome scanning for interspecific differentiation between two closely related oak species [Quercus robur L. and Q. petraea (Matt.) Liebl.]. Genetics 168:1615–1626
  • Sharma KK, Lavanya M, Anjaiah V (2000) A method for isolation and purification of peanut genomic DNA suitable for analytical applications. Plant Mol Biol Rep 18:393a–393h
  • Soto A, Lorenzo Z, Gil L (2007) Differences in fine-scale genetic structure and dispersal in Quercus ilex L. and Q. suber L.: consequences for regeneration of Mediterranean open woods. Heredity 99:601–607
  • Steinkellner H, Fluch S, Turetschek E, Lexer C, Streiff R, Kremer A, Burg K, Glössl J (1997) Identification and characterization of (GA/CT)n-microsatellite loci from Quercus petraea. Plant Mol Biol Rep 33:1093–1096
  • Suzuki Y, Hibino T, Kawazu T, Wada T, Kihara T, Koyama H (2003) Extraction of total RNA from leaves of Eucalyptus and other woody and herbaceous plants using sodium isoascorbate. Biotechniques 34(988–990):983–992
  • Toader VA, Moldovan IC, Sofletea N, Abrudan IV, Curtu AL (2009) DNA isolation and amplification in oak spacies (Quercus spp.). Bulletin of the Transilvania University of Brasov Series II 2, pp 45–50
  • Tomassini J, Ranajit R, Ray W, Roberts RJ (1978) Recognition sequence of restriction endonuclease KpnI from Klebsiella pneumoniae. Nucl Acids Res 5:4055–4064
  • Valenzuela-Avendaño JP, Estrada Mota IA, Lizama-Uc G, Valenzuela-Soto EM, Zúñiga-Aguilar JJ (2005) Use of a simple method to isolate intact RNA from partially hydrated Selaginella lepidophylla Plants. Plant Mol Biol Rep 23:199a–199g
  • Valero-Galván J, Valledor L, Navarro Cerrillo RM, Gil Pelegrín E, Jorrín-Novo JV (2011) Studies of variability in Holm oak (Quercus ilex subsp. ballota [Desf.] Samp.) through acorn protein profile analysis. J Prot (in press). doi:10.1016/ j.jprot.2011.05.003
  • Varma A, Padh H, Shrivastava N (2007) Plant genomic DNA isolation: an art or a science. Biotechnol J 2:386–392
  • Wang M, Rhee H (2001) Improved technique for isolating RNA from tobacco tissues. Plant Mol Biol Rep 19:187a–187f
  • Wang R, Guegler K, LaBrie ST, Crawford NM (2000) Genomic analysis of a nutrient response in Arabidopsis reveals diverse expression patterns and novel metabolic and potential regulatory genes induced by nitrate. Plan Cell 12:1491–1510
  • Wang X-D, Wang Z-P, Zou Y-P (1996) An improved procedure for the isolation of nuclear DNA from leaves of wild grapevine dried with silica gel. Plant Mol Biol Rep 14:369–373
  • Williams C, Ronald PC (1994) Rapid, homogenization-free isolation of rice DNA for PCR. Nucl Acids Res 22:1917–1918

Uwagi

Rekord w opracowaniu

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-5a74a2fd-bf0e-45c7-b7a9-bf7f3d30ae06
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.