African Journal of
Biotechnology

  • Abbreviation: Afr. J. Biotechnol.
  • Language: English
  • ISSN: 1684-5315
  • DOI: 10.5897/AJB
  • Start Year: 2002
  • Published Articles: 12487

Full Length Research Paper

Molecular characterization of induced mutagenesis through gamma radiation using RAPD markers in Jatropha curcas L.

R. S. Dhillon1*,
  • R. S. Dhillon1*,
  • Department of Forestry, CCS Haryana Agricultural University, Hisar-125004, India.
  • Google Scholar
R. P. Saharan2,
  • R. P. Saharan2,
  • Department of Genetics and Plant Breeding, CCS Haryana Agricultural University, Hisar-125004, India.
  • Google Scholar
M. Jattan2,
  • M. Jattan2,
  • Department of Genetics and Plant Breeding, CCS Haryana Agricultural University, Hisar-125004, India.
  • Google Scholar
T. Rani3,
  • T. Rani3,
  • Department of Molecular Biology and Biotechnology, CCS Haryana Agricultural University, Hisar-125004, India.
  • Google Scholar
R. N. Sheokand4,
  • R. N. Sheokand4,
  • Computer Section, CCS Haryana Agricultural University, Hisar-125004, India.
  • Google Scholar
V. Dalal1
  • V. Dalal1
  • Department of Forestry, CCS Haryana Agricultural University, Hisar-125004, India.
  • Google Scholar
George Von Wuehlisch5
  • George Von Wuehlisch5
  • Federal Research Institute for Rural Areas, Forestry and Fisheries, Institute for Forest Genetics, Grosshansdorf, Germany.
  • Google Scholar


  •  Accepted: 03 February 2014
  •  Published: 12 February 2014

References

Achten WMJ, Verchot L, Franken YJ, Mathijs E, Singh VP, Aerts R, Muys B (2008). Jatropha bio-diesel production and use. Biomass Bioenergy 32:1063-1084.
Crossref
 
Akhaury KDN, Singh AK (1993). Effect of Gamma-rays on the seed output of Vicia species. Neo Botanica 1 (1&2):63-67.
 
Basha SD, Sujatha M (2007). Inter and intra-population variability of Jatropha curcas (L.) characterized by RAPD and ISSR markers and development of population-specific SCAR markers. Euphytica 156:375-386.
Crossref
 
Bhagwat A, Krishna TG, Bhatia CR (1997). RAPD analysis of induced mutants of groundnut (Arachis hypogaea L.). J. Genet. 76(3):201-208.
Crossref
 
Charbaji T, Nabulsi I (1999). Effect of low doses of gamma irradiation on in vitro growth of grapevine. Plant Cell Tissue Organ Cult. 57:129-132.
Crossref
 
Chauhan YS (1978). Gamma rays-induced variation in the development of S. khasianum Clarke. J. Indian Bot. Soc. 57:347-352.
 
Chopra VL (2005). Mutagenesis: Investigating the process and processing the outcome for crop improvement. Curr. Sci. 89:353-359.
 
Dhakshanamoorthy D, Selvaraj R, Chidambaram ALA (2011). Induced mutagenesis in Jatropha curcas L. using gamma rays and detection of DNA polymorphism through RAPD marker. Comptes Rendus Biologies 334:24-30.
Crossref
 
Dhillon RS, Hooda MS, Jattan M, Chawla V, Bhardwaj M, Goyal SC (2009). Development and molecular characterization of interspecific hybrids of Jatropha curcas × J. integerrima. Indian J. Biotechnol. 8:384-390.
 
Dhillon RS, Jattan M, Singh C, Rizvi RH, Rani T (2012). Assessment of genetic diversity in Jatropha curcas (L.) germplasm from India using RAPD markers. The Indian Forester 138:491-497.
 
Divakara BN, Upadhyana HD, Wani SP, Gowda CLL (2010) Biology and genetic improvement of Jatropha curcas L.: A review. Appl. Energy 87:732-742.
Crossref
 
Dwimahyani I, Ishak (2004). Induced mutation on jatropha (Jatropha curcas L.) for improvement of agronomic characters variability
 
Fritsch P, Hanson MA, Spore, CD, Pack PE, Riseberg H (1993). Constancy of RAPD primer amplification strength among distantly related taxa of flowering plants. Plant Mol. Biol. Rep.11:10-20.
Crossref
 
Gunckel JE, Sparrow AH (1991). Ionizing radiation: biochemical, physiological and morphological aspects of their effects on plants. W. Ruland (Ed.), Plant Physiolo. XVI, Springer Verlag, Berlin. pp. 555-611.
 
Khawale RN, Yerramilli V, Singh SK (2007). Molecular marker-assisted selection of in vitro chemical mutagen-induced grapevine mutants. Curr. Sci. 92:1056 -1060.
 
Kumar A, Mishra MN (2004). Effect of gamma-rays, EMS and NMU on germination, seedling vigour, pollen viability and plant survival in M1and M2 generation of Okra (Abelmoschus esculentus (L.) Moench). Adv. Plant Sci. 17:295-297.
 
Kumar A, Sharma S (2008). An evaluation of multipurpose oil seed crop for industrial uses (Jatropha curcas L.): A review. Ind. Crops Prod. 28:1-10.
Crossref
 
Kumar RS, Parthiban KT, Hemalatha P, Kalaiselvi T, Rao MG (2009). Investigation on cross-compatibility barriers in the biofuel crop Jatropha curcas L. with wild Jatropha species. Crop Sci. 49:1667-1674.
Crossref
 
Kumar S, Prasad KV, Choudhary ML (2006). Detection of genetic variability among Chrysanthemum radiomutants using RAPD markers. Curr. Sci. 90:1103-1118.
 
Lilley R. (2008). NZ airline flies jetliner partly run on biofuel. New Zealand Herald 
 
Melki M, Marouani A (2009). Effects of gamma rays irradiation on seed germination and growth of hard wheat. Environ. Chem. Lett.
Crossref
 
Murry M, Thompson WF (1980). Rapid isolation of high molecular weight plant DNA. Nuc. Aci. Res. 8:4321-4325.
Crossref
 
Pandey RK, Datta SK (1995). Gamma ray induced cotyledonary variability's in Jatropha curcas L. J. Nucl. Agric. Biol. 6:24-62
 
Panse VG, Sukhatme PV (1978). Statistical methods for agricultural workers New Delhi. ICAR Publication.
 

Popluechai S, Breviario D, Sujatha M, Makkar HPS, Raorane M, Reddy AR, Palchetti E, Gatehouse AMR, Syers JK, Donnell AGO, Kohli A (2009). Narrow genetic and apparent phenetic diversity in Jatropha curcas: initial success with generating low phorbol ester interspecific hybrids. Nature Precedings

Crossref

 
Punia MS (2007). Current status of research and development on Jatropha (Jatropha curcas) for sustainable biofuel production in India. In: USDA Global Conference on Agricultural Biofuels: Research and Economics, Minneopolis, Minnesota. pp. 20-22.
 
Rohlf FJ (1990). NTSYS-PC Numerical Taxonomy and Multivariate Analysis System. Version 1.60 (Exeter Publications, New York).
 
Ruminska JL, Zalewska M, Sadoch Z (2004). Radio-mutants of Chrysanthemum (Dendranthema grandiflora Tzvelev) of the lady group: RAPD analysis of the genetic diversity. Plant Breed. 123:290-293.
Crossref
 
Sakaguchi S, Somabhi M (1987). Exploitation of promising crops of northeast Thailand Siriphan offset. Thailand: Khon Kaen.
 
Sambrook J, Frietch EF, Maniatis T (1989). Molecular Cloning: a laboratory manual 2nd ed. Cold Spring Harbour Laboratory, New York.
 
Selvi BS, Ponnuswami V, Sumathi T (2007). Identification of DNA polymorphism induced by gamma ray irradiation in Amla (Emblica officinalis Gaertn.) grafts of V1 M1 and V2 M1 generation. J. Appl. Sci. Res. 3:1933-1935.
 
Songsri P, Suriharn B, Sanitchon J, Srisawangwong S, Kesmala.T (2011). Effect of gamma radiation on germination and growth characterstics of physic nut (Jatropha curcas L.). J. Biol. Sci. 11:268-274.
Crossref
 
Tanya P, Taeprayoon P, Hadkam Y, Srinives P (2011). Genetic diversity among jatropha and jatropha related species based on ISSR markers. Plant Mol. Biol. Rep. 29:252-264.
Crossref
 
Taylor FG (1968). Some effect of acute gamma radiation in giant sequoia seedlings. Radiat. Bot. 8:67-70.
Crossref
 
Teng N, Chen F, Jiang Z, Fang W, Chen T (2008). Detection of genetic variation by RAPD among Chrysanthemum plantlets regenerated from irradiated calli. Acta Hortic. 766:413-420.
 
Thapa CB (1999). Effect of acute exposure of gamma rays on seed germination of Pinus kesiya Gord and P. wallichiana A.B. Jacks, Botanica orientalis. J. Plant Sci. 120-121.
 

Thapa CB (2004). Effect of acute exposure of gamma rays on seed germination and seedling growth of Pinus kesiya Gord and P. wallichiana A.B. Jacks. Our Nature 2:13-17.

View

 
Zaka R, Chenal C, Misset MT (2004). Effect of low doses of short-term gamma radiation on growth and development through two generations of Pisum sativum. Sci. Total Environ. 320:121-129.
Crossref