Rice Epigenetic Pathways: Great Genetic Variation and Implication for Rapid Rice Breeding

Yuan Li, Erik Persson
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Abstract

Rice, as one of the most important crops in the world, is facing an ever-accelerating challenge from climate change. Epigenetic modification with its substantially high epimutation rate and the possibility for some epigenetic variation to act as a heritable contributor to crop environmental adaptability may hold great potentials for rapid crop breeding. Epigenetic modification is controlled by epigenetic pathways, and mutations disturbing the epigenetic pathways may lead to significant epigenetic and/or genetic changes. This is especially true for rice, whose genome is rich in epigenetic modifications and transposable elements (TEs) that are generally epigenetically silenced. Here, in this paper, we first reviewed the pathways that establish, maintain and remove rice DNA methylation, which is the most well studied epigenetic marker, as well as the genes that are involved. We then discussed how TEs amplify the phenotypic impact of epigenetic changes that could be a result of epigenetic pathway disturbances. At last, we presented the enormous amount of rice genome data that are publically available, within which great genetic variation in the genes that are involved within the epigenetic pathways is embedded. This genetic variation awaits to be exploited for their potentials in generating a heritable source of variation for rapid environmental adaptation, which may hold tremendous importance for rice breeding in the face of climate change.
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水稻表观遗传途径:巨大遗传变异及其对水稻快速育种的启示
水稻作为世界上最重要的作物之一,正面临着气候变化日益加剧的挑战。表观遗传修饰具有很高的表观遗传率,并且一些表观遗传变异可能作为作物环境适应性的遗传因子,这对作物的快速育种具有很大的潜力。表观遗传修饰是由表观遗传途径控制的,干扰表观遗传途径的突变可能导致显著的表观遗传和/或遗传变化。水稻尤其如此,其基因组富含表观遗传修饰和转座因子(te),通常是表观遗传沉默的。在本文中,我们首先回顾了水稻DNA甲基化这一研究最为深入的表观遗传标记的建立、维持和去除途径,以及相关基因。然后,我们讨论了TEs如何放大表观遗传变化的表型影响,这可能是表观遗传途径紊乱的结果。最后,我们展示了大量公开的水稻基因组数据,其中包含了与表观遗传途径相关的基因的巨大遗传变异。这种遗传变异的潜力有待开发,以产生快速适应环境的可遗传变异源,这对面临气候变化的水稻育种可能具有巨大的重要性。
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