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Current understanding of flowering pathways in plants: focusing on the vernalization pathway in Arabidopsis and several vegetable crop plants

机译:目前对植物开花途径的理解:专注于拟南芥和几种蔬菜植物的春化途径

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Over the decades, extensive studies have been performed to elucidate the molecular mechanisms underlying the floral transition process in model plants, as well as in crop plants. It has been demonstrated that floral integrator genes, such as FLOWERING LOCUS T and SUPPRESSOR OF OVEREXPRESSION OF CO 1, are highly conserved in most of the flowering plants. This finding has accelerated the identification and functional analyses of these orthologues involved in floral transition in flowering plant species. Even though the upstream regulator networks of the floral integrator genes seem to be quite diverged among plant species, they share four conserved flowering pathways, including the photoperiod, autonomous, gibberellin, and vernalization pathways. The comprehensive knowledge of the molecular mechanisms underlying floral transitions in the model plant Arabidopsis thaliana has helped us explore and elucidate the molecular mechanisms controlling floral transitions in other crop plants. This review highlights the current understandings of the flowering pathways elucidated in Arabidopsis, and mainly focuses on understanding the vernalization pathway in Arabidopsis as well as in several horticultural crop plants, including those of the genus Brassica.
机译:几十年来,已经进行了广泛的研究,以阐明模型植物中的花卉过渡过程以及作物植物的分子机制。已经证明,在大多数开花植物中,花卉积分剂基因如Flowing LocuS T和Co 1的过度表达的抑制器。该发现加速了在开花植物物种中涉及花卉过渡的这些原因造影的鉴定和功能分析。尽管植物物种的上游调节器网络似乎在植物物种中似乎相当偏差,但它们共享四个保守的开花途径,包括光周期,自主,赤霉素和春化途径。模型植物拟南芥在模型植物拟南芥中的分子机制的综合了解有助于我们探索并阐明了控制其他作物植物的花卉过渡的分子机制。本综述凸显了当前对拟南芥阐明的开花途径的谅解,主要侧重于了解拟南芥以及几种园艺作物植物中的春化途径,包括芸苔属的那些。

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