春化的遗传和表观遗传机制。

The arabidopsis book Pub Date : 2014-02-12 eCollection Date: 2014-01-01 DOI:10.1199/tab.0171
Dong-Hwan Kim, Sibum Sung
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引用次数: 79

摘要

植物已经进化出许多监测系统来感知周围环境,并相应地协调它们的生长和发育。春化是一个例子,在植物暴露于长期低温(即冬季)后,开花被促进。在许多植物物种中,春化导致了抑制花转化的花抑制基因的抑制。在这里,我们描述了我们对拟南芥和其他开花植物春化介导的开花促进的理解的最新进展。在拟南芥中,春化反应包括染色质修饰复合物对花抑制因子的募集,从而导致抑制性组蛋白标记的富集,从而确保花抑制基因的稳定抑制。低温暴露后,花抑制基因位点组蛋白修饰的变化得以稳定维持,从而建立了来年春天开花的能力。我们还讨论了拟南芥和其他植物春化反应调控回路的异同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Genetic and epigenetic mechanisms underlying vernalization.

Genetic and epigenetic mechanisms underlying vernalization.

Genetic and epigenetic mechanisms underlying vernalization.

Genetic and epigenetic mechanisms underlying vernalization.

Plants have evolved a number of monitoring systems to sense their surroundings and to coordinate their growth and development accordingly. Vernalization is one example, in which flowering is promoted after plants have been exposed to a long-term cold temperature (i.e. winter). Vernalization results in the repression of floral repressor genes that inhibit the floral transition in many plant species. Here, we describe recent advances in our understanding of the vernalization-mediated promotion of flowering in Arabidopsis and other flowering plants. In Arabidopsis, the vernalization response includes the recruitment of chromatin-modifying complexes to floral repressors and thus results in the enrichment of repressive histone marks that ensure the stable repression of floral repressor genes. Changes in histone modifications at floral repressor loci are stably maintained after cold exposure, establishing the competence to flower the following spring. We also discuss similarities and differences in regulatory circuits in vernalization responses among Arabidopsis and other plants.

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