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- W2897853886 endingPage "163" @default.
- W2897853886 startingPage "117" @default.
- W2897853886 abstract "Although plant breeding has traditionally relied on exploiting genetic diversity, epigenetic variations are attracting new attentions in breeding design. Epigenetic modifications play a critical role in regulating gene expression during development and in response to environmental stimulation, and thereby contribute to phenotypic variation. When epigenetic modifications persist during reproduction and are stably transmitted to the next generation, transgenerational inheritance of epigenetic variations has a potential to produce heritable phenotypic diversity. In addition to naturally occurring epialleles, genetic variation due to organization of duplicated genes or transposon polymorphisms are a potential source for inducing epialleles. Furthermore, stress-induced activation and mobilization of transposable elements represent another promising avenue to create new genetic and epigenetic diversity that can be sexually or asexually propagated. Finally, methods for artificially creating epigenetic diversity in experimental models have been developed and applied to select crop species in some cases. With the advance in epigenome profiling techniques, dissection of epigenetic-based complex traits, and the development of molecular tools for locus-specific epigenome editing, the effects of epigenetics for underlying phenotypic traits can be unequivocally elucidated." @default.
- W2897853886 created "2018-10-26" @default.
- W2897853886 creator A5018497790 @default.
- W2897853886 creator A5031543082 @default.
- W2897853886 creator A5052752750 @default.
- W2897853886 creator A5063006064 @default.
- W2897853886 creator A5085025467 @default.
- W2897853886 date "2018-01-01" @default.
- W2897853886 modified "2023-10-18" @default.
- W2897853886 title "Sexual and Non-sexual Reproduction" @default.
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