GENETIC CONTROL OF FLOWERING TIME IN ARABIDOPSIS.

Maarten Koornneef, Carlos Alonso-Blanco, Anton J. M. Peeters, Wim Soppe
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引用次数: 536

Abstract

The timing of the transition from vegetative to reproductive development is of great fundamental and applied interest but is still poorly understood. Recently, molecular-genetic approaches have been used to dissect this process in Arabidopsis. The genetic variation present among a large number of mutants with an early- or late-flowering phenotype, affecting the control of both environmental and endogenous factors that influence the transition to flowering, is described. The genetic, molecular, and physiological analyses have led to identification of different components involved, such as elements of photoperception and the circadian rhythm. Furthermore, elements involved in the signal transduction pathways to flowering have been identified by the cloning of some floral induction genes and their target genes.

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拟南芥开花时间的遗传调控。
从营养发育到生殖发育的过渡时间具有重大的基础和应用意义,但仍然知之甚少。最近,分子遗传学方法已被用于分析拟南芥的这一过程。描述了大量具有早花或晚花表型的突变体中存在的遗传变异,影响影响开花过渡的环境和内源因素的控制。遗传、分子和生理分析导致识别不同的组成部分,如光觉和昼夜节律的元素。此外,通过克隆一些花诱导基因及其靶基因,已经鉴定了与开花信号转导通路相关的元件。
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CIRCADIAN RHYTHMS IN PLANTS. MOLECULAR ENGINEERING OF C4 PHOTOSYNTHESIS. ISOPRENE EMISSION FROM PLANTS. CHLAMYDOMONAS AS A MODEL ORGANISM. THE PLASTID DIVISION MACHINE.
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