Agriculture Reference
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Din R, Qasim M, Ahmad K (2004) Radio sensitivity of various wheat genotypes in M1 generation.
Int J Agric Biol 6:898-900
Domingo C, Andres F, Talon M (2007) Rice cv. Bahia mutagenized population: a new resource for
rice breeding in the Mediterranean basin. Span J Agric Res 5:341-347
Drake JW, Charlesworth B, Charlesworth D, Crow JF (1998) Rates of spontaneous mutation.
Genetics 148:1667-1686
Dreisigacker S, Zhang P, Warburton ML, Van Ginkel M (2004) SSR and pedigree analyses of
genetic diversity among CIMMYT wheat lines targeted to different mega environments. Crop
Sci 44:381-388
Dribnenki JCP, Green AG, Atlin GN (1996) Linola TM 989 low linolenic flax. Can J Plant Sci
76:329-331
Eliot F, Cordeiro G, Bundock PC, Henry RJ (2008) SNP discovery by ECOTILLING using capil-
lary electrophoresis. Plant Genotyping 2: SNP Technol 5:78-87
Fasoula VA, Fasoula DA (2002) Principles underlying genetic improvement for high and stable
crop yield potential. Field Crops Res 75:191-209
Feix G, Hochholdinger F, Wulff D (1997) Genetic analysis of root formation in maize. In: Devel-
opmental pathways in plants: biotechnological implications. The Hebrew University of Jeru-
salem, Rehovot, p 10
Finnegan EJ, Peacock WJ, Dennis ES (1996) Reduced DNA methylation in Arabidopsis thaliana
results in abnormal plant development. Proc Natl Acad Sci U S A 93:8449-8454
Gahoonia TS, Nielsen NE (1997) Variation in root hairs of barley cultivars doubled soil phospho-
rous uptake. Euphytica 98:177-182
Gilchrist EJ, Haughn GW (2005) TILLING without a plough: a new method with applications for
reverse genetics. Curr Opin Plant Biol 8:211-215
Gnanamurthy S, Dhanavel D, Chidambaram ALA (2012) Frequency in germination studies of
chlorophyll mutants in effectiveness and efficiency using chemical mutagens. Int J Curr Life
Sci 2(3):23-27
Gowda MVC, Nadaf HL, Sheshagiri R (1996) The role of mutation in intraspecific differentiation
of groundnut (  Arachis hypogaea L.). Euphytica 90:105-113
Hase Y, Akita Y, Kitamura S, Narumi I, Tanaka A (2012) Development of an efficient mutagen-
esis technique using ion beams: Toward more controlled mutation breeding. Plant Biotechnol
29:193-200
Howard JT, Ward J, Watson JN, Roux KH (1999) Heteroduplex cleavage analysis using S1 nucle-
ase. Biotech 27:18-19
Islam SMS (2010) The effect of colchicine pretreatment on isolated microspore culture of wheat
(  Triticum aestivum L.). Aus J Crop Sci 4(9):660-665
Ismail MA, Heakal MY, Fayed A (1977) Improvement of yield through induced mutagenesis in
broad beans. Indian J Genet Plant Breed 36(3):347-350
Johnson HW, Robinson HF, Comstock RE (1955) Estimation of genetic and environmental vari-
ability in soybean. Agron J 47:314-318
Kang SY, Kim JB, Lee GJ, Kim DS (2010) Gamma phytotron: a new chronic gamma irradiation
facility. Plant Mut Rep 2(2):50-51
Kazama Y, Saito H, Yamamoto YY, Hayashi Y, Ichida H, Ryuto H, Fukunishi N, Abe T (2008)
LET-dependent effects of heavy-ion beam irradiation in Arabidopsis thaliana . Plant Biotech-
nol 25:113-117
Khan S, Goyal S (2009) Improvement of mungbean varieties through induced mutations. Afr J
Plant Sci 3:174-180
Khan S, Wani MR, Parveen K (2006) Sodium azide induced high yielding early mutant in lentil.
Agric Sci Digest 26(1):65-66
Khan S, Al-Qurainy F, Anwar F (2009) Sodium azide: a chemical mutagen for enhancement of
agronomic traits of crop plants. Environ Int J Sci Tech 4:1-21
Kharkwal MC, Shu QY (2009) The role of induced mutations in world food security. Shu QY
(eds) In: Induced plant mutations in the genomics era. Food and Agriculture Organization of
the United Nations, Rome, pp 33-38
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