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- W1581276110 abstract "Our understanding of genome organization has its roots in postwar interest inthe effects of radiation. Observations on the relationship between doses ofionizing radiation and the frequency of mutations (Abrahamson et ai., 1 973;Trujillo and Dugan, 1 975) indicated that the size of the genetic targetreceiving the radiation dose varied considerably between organisms. By thebeginning of the 1 970s, this phenomenon had come to be known as the Cvalueparadox (Thomas, 1 97 1 ). The paradox was that the total genome size,or C-value, varied widely within a given clade of organisms and bore norelationship to organismal complexity. For example, two legumes within thesame genus, Vida/aba and Vida sativa, have haploid genomes of 1 3. 1 x 1 09and 2.2 x109 respectively, but differ very little morphologically. Thisobservation has been fully confIrmed by the large-scale determination ofgenome sizes of many plants (http://www. rbgkew.org.uk/cvalues), withinwhich genome size varies from about 107 bp in Cardamine and Arabidopsisamong the Crucifereae to nearly 1 011 bp in Fritillaria among the Lilliaceae.Within the cereals, rice (Oryza sativa) has a compact genome of 4.8 x 1 08 bp,ranging upwards through sorghum (7.35 x 1 08), maize (26.7 x 1 08), andbarley (54.4 x 1 08 bp)......" @default.
- W1581276110 created "2016-06-24" @default.
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- W1581276110 creator A5035127382 @default.
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- W1581276110 date "2006-01-19" @default.
- W1581276110 modified "2023-09-30" @default.
- W1581276110 title "Organization of Retrotransposons and Microsatellites in Cereal Genomes" @default.
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