表观遗传学
生物
利用
转化式学习
后生
适应(眼睛)
重编程
计算生物学
生物技术
神经科学
遗传学
DNA甲基化
计算机科学
心理学
基因
基因表达
教育学
计算机安全
作者
Yan Xue,Xiaofeng Cao,Xiangsong Chen,Xian Deng,Xing Wang Deng,Yong Ding,Aiwu Dong,Cheng‐Guo Duan,Xiaofeng Fang,Lei Gong,Zhizhong Gong,Xiaofeng Gu,Chongsheng He,Hang He,Shengbo He,Xin‐Jian He,Yan He,Yuehui He,Guifang Jia,Danhua Jiang
标识
DOI:10.1007/s11427-024-2784-3
摘要
Abstract Epigenetic mechanisms are integral to plant growth, development, and adaptation to environmental stimuli. Over the past two decades, our comprehension of these complex regulatory processes has expanded remarkably, producing a substantial body of knowledge on both locus-specific mechanisms and genome-wide regulatory patterns. Studies initially grounded in the model plant Arabidopsis have been broadened to encompass a diverse array of crop species, revealing the multifaceted roles of epigenetics in physiological and agronomic traits. With recent technological advancements, epigenetic regulations at the single-cell level and at the large-scale population level are emerging as new focuses. This review offers an in-depth synthesis of the diverse epigenetic regulations, detailing the catalytic machinery and regulatory functions. It delves into the intricate interplay among various epigenetic elements and their collective influence on the modulation of crop traits. Furthermore, it examines recent breakthroughs in technologies for epigenetic modifications and their integration into strategies for crop improvement. The review underscores the transformative potential of epigenetic strategies in bolstering crop performance, advocating for the development of efficient tools to fully exploit the agricultural benefits of epigenetic insights.
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