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首页> 外文期刊>Acta Biochimica Polonica >MicroRNA-mediated regulation of flower development in grasses
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MicroRNA-mediated regulation of flower development in grasses

机译:MicroRNA介导的草花发育调控

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Flower structure in grasses is very unique. There are no petals or sepals like in eudicots but instead flowers develop bract-like structures - palea and lemma. Reproductive organs are enclosed by round lodicule that not only protects reproductive organs but also plays an important role during flower opening. The first genetic model for floral organ development was proposed 25 years ago and it was based on the research on model eudicots. Since then, studies have been carried out to answer the question whether this model could be applicable in the case of monocots. Genes from all classes found in eudicots have been also identified in genomes of such monocots like rice, maize or barley. What's more, it seems that miRNA-mediated regulation of floral organ genes that was observed in the case of Arabidopsis thaliana also takes place in monocots. MiRNA172, miRNA159, miRNA171 and miRNA396 regulate expression of floral organ identity genes in barley, rice and maize, affecting various features of the flower structure, ranging from formation of lemma and palea to the development of reproductive organs. A model of floral development in grasses and its genetic regulation is not yet fully characterized. Further studies on both, the model eudicots and grasses, are needed to unravel this topic. This review provides general overview of genetic model of flower organ identity specification in monocots and it's miRNA-mediated regulation.
机译:草中的花结构非常独特。没有像在双子叶植物中那样的花瓣或萼片,而是花朵长成片状的结构-古蕾和外。生殖器官被圆形lo包围,不仅保护生殖器官,而且在花朵开放过程中也起着重要作用。 25年前提出了第一个用于花卉器官发育的遗传模型,该模型基于对模型双子叶植物的研究。从那时起,已经进行了研究以回答该模型是否适用于单子叶植物的问题。在双子叶植物如水稻,玉米或大麦的基因组中,还发现了在双子叶植物中发现的所有类别的基因。而且,在拟南芥中观察到的miRNA介导的花器官基因调控似乎也发生在单子叶植物中。 MiRNA172,miRNA159,miRNA171和miRNA396调节大麦,水稻和玉米中花器官身份基因的表达,影响花结构的各种特征,从外lem和内脏到生殖器官的发育。草中的花卉发育模型及其遗传调控尚未完全表征。需要进一步研究模型双子叶植物和草,以阐明该主题。这篇综述提供了单子叶植物中花器官同一性规范的遗传模型及其由miRNA介导的调控的概述。

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