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Histone Modification and Chromatin Remodeling During the Seed Life Cycle

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FRONTIERS IN PLANT SCIENCE
卷 13, 期 -, 页码 -

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FRONTIERS MEDIA SA
DOI: 10.3389/fpls.2022.865361

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histone modification; chromatin remodeling; seed development; seed dormancy; seed germination; seedling establishment

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Seeds play a crucial role in plant reproduction and dispersal, undergoing a life cycle from seed development to seedling establishment regulated by physiological and biochemical mechanisms. Recent research has focused intensively on the role of epigenetics in seed behavior, particularly in model plants like rice and Arabidopsis. Emphasis is placed on the impact of epigenetics on tissue formation, gene expression, and environmental responses during the seed life cycle.
Seeds are essential for the reproduction and dispersion of spermatophytes. The seed life cycle from seed development to seedling establishment proceeds through a series of defined stages regulated by distinctive physiological and biochemical mechanisms. The role of histone modification and chromatin remodeling in seed behavior has been intensively studied in recent years. In this review, we summarize progress in elucidating the regulatory network of these two kinds of epigenetic regulation during the seed life cycle, especially in two model plants, rice and Arabidopsis. Particular emphasis is placed on epigenetic effects on primary tissue formation (e.g., the organized development of embryo and endosperm), pivotal downstream gene expression (e.g., transcription of DOG1 in seed dormancy and repression of seed maturation genes in seed-to-seedling transition), and environmental responses (e.g., seed germination in response to different environmental cues). Future prospects for understanding of intricate interplay of epigenetic pathways and the epigenetic mechanisms in other commercial species are also proposed.

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