表观遗传学
生物
表观基因组
进化生物学
DNA甲基化
遗传多样性
遗传变异
计算生物学
变化(天文学)
遗传学
生物技术
基因
人口
基因表达
人口学
社会学
物理
天体物理学
作者
Nathan M. Springer,Robert J. Schmitz
摘要
Plant breeding has traditionally relied on combining the genetic diversity present within a species to develop combinations of alleles that provide desired traits. Epigenetic diversity may provide additional sources of variation within a species that could be captured or created for crop improvement. It will be important to understand the sources of epigenetic variation and the stability of newly formed epigenetic variants over generations to fully use the potential of epigenetic variation to improve crops. The development and application of methods for widespread epigenome profiling and engineering may generate new avenues for using the full potential of epigenetics in crop improvement.
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