Epigenetic repression and resetting of a floral repressor, FLC, in the life cycle of winter-annual Arabidopsis

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7

초록

Plants have established highly sensitive systems to sense environmental cues and optimize their development accordingly. Long-term cold exposure in winter elicits flowering in many biennial and perennial plants, which is termed vernalization. Vernalized plants transition from the vegetative stage in winter to the reproductive stage in the subsequent spring season. In terms of molecular mechanisms, vernalization promotes floral transition by repressing floral repressor genes [i.e., FLOWERING LOCUS C (FLC)] that prevent plant bolting. Recent intensive studies enhanced our understanding of the mechanisms underlying the epigenetic suppression of FLC as well as resetting vernalization requirements in the next generation. This review describes recent advances in our understanding of vernalization-triggered epigenetic repression and resetting events of a floral repressor, FLC, in the lifecycle of winter-annual Arabidopsis. © 2021, Korean Society for Plant Biotechnology.

키워드

Arabidopsis; Chromatin; Flowering Locus C; Flowering time; Vernalization; LOCUS-C EXPRESSION; MADS BOX GENE; HISTONE H3; VERNALIZATION RESPONSE; TRANSCRIPTION FACTOR; REGULATORY NETWORK; FLOWERING TIME; SWR1 COMPLEX; ANNUAL HABIT; REQUIRES
제목
Epigenetic repression and resetting of a floral repressor, FLC, in the life cycle of winter-annual Arabidopsis
저자
Kim, Dong-Hwan
DOI
10.1007/s11816-021-00717-x
발행일
2022-04
유형
Review
저널명
Plant Biotechnology Reports
권
16
호
2
페이지
133 ~ 143