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Flowering

机译:开花

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摘要

The transition from vegetative growth to flowering in higher plants is controlled by environmental conditions and developmental regulation. The complexity of this transition is created by an intricate network of signalling pathways that monitor the developmental state of the plant as well as environmental conditions (light, temperature, and photoperiod). Arabidopsis thaliana (Brassicaceae family) is an excellent model system in which to approach this complexity. Currently four genetic pathways have been identified: the light-dependent, the autonomous, the vernalization and the gibberellin pathway, all integrated by the function of regulatory genes at the integration pathway. The integrated signal of the floral induction is transmitted to the floralmeristem identity genes and floral morphogenesis is performed. The promotion of flowering, by both increasing the number of flowers and advancing time of flowering, as well as creating novelty in the flower structure, are major desirable traits in ornamental plant breeding. The possibility of using molecular techniques to transfer genes in major ornamentals has greatly increased the resources available to plant breeders. Moreover, native genes can be over expressed or suppressed. The recent explanationsof the mechanisms of flowering in Arabidopsis have led new sets oi genes to be available. These include genes which affect flowering and flower architecture. In a few cases these genes can change the flowering time of species unrelated to the plant fromwhich they were isolated.
机译:高等植物从营养生长到开花的过渡受环境条件和发育调控的控制。这种转换的复杂性是由复杂的信号通路网络组成的,这些信号通路监测植物的发育状态以及环境条件(光照,温度和光周期)。拟南芥(芸苔科)是解决这种复杂性的极好的模型系统。目前已鉴定出四个遗传途径:光依赖性,自主性,春化和赤霉素途径,它们均通过整合途径中调控基因的功能整合。花诱导的整合信号被传递至花分生组织同一性基因,并进行花形态发生。通过增加花的数量和提前的开花时间以及在花的结构中创造新颖性来促进开花是观赏植物育种的主要期望特征。使用分子技术在主要观赏植物中转移基因的可能性大大增加了植物育种者可利用的资源。而且,天然基因可以被过度表达或抑制。最近对拟南芥开花机制的解释导致了新的基因组可用。这些包括影响开花和花的结构的基因。在某些情况下,这些基因可以改变与分离它们的植物无关的物种的开花时间。

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