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Genome-wide annotation, expression profiling, and protein interaction studies of the core cell-cycle genes in Phalaenopsis aphrodite

机译:蝴蝶兰阿芙罗狄蒂核心细胞周期基因的全基因组注释,表达谱和蛋白质相互作用研究

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Orchidaceae is one of the most abundant and diverse families in the plant kingdom and its unique developmental patterns have drawn the attention of many evolutionary biologists. Particular areas of interest have included the co-evolution of pollinators and distinct floral structures, and symbiotic relationships with mycorrhizal flora. However, comprehensive studies to decipher the molecular basis of growth and development in orchids remain scarce. Cell proliferation governed by cell-cycle regulation is fundamental to growth and development of the plant body. We took advantage of recently released transcriptome information to systematically isolate and annotate the core cell-cycle regulators in the moth orchid Phalaenopsis aphrodite. Our data verified that Phalaenopsis cyclin-dependent kinase A (CDKA) is an evolutionarily conserved CDK. Expression profiling studies suggested that core cell-cycle genes functioning during the G1/S, S, and G2/M stages were preferentially enriched in the meristematic tissues that have high proliferation activity. In addition, subcellular localization and pairwise interaction analyses of various combinations of CDKs and cyclins, and of E2 promoter-binding factors and dimerization partners confirmed interactions of the functional units. Furthermore, our data showed that expression of the core cell-cycle genes was coordinately regulated during pollination-induced reproductive development. The data obtained establish a fundamental framework for study of the cell-cycle machinery in Phalaenopsis orchids.
机译:兰科是植物界中数量最多,种类最多的科之一,其独特的发育方式引起了许多进化生物学家的关注。特别令人感兴趣的领域包括授粉媒介和独特花结构的共同进化,以及与菌根菌群的共生关系。但是,缺乏全面的研究来破译兰花生长发育的分子基础。由细胞周期调控控制的细胞增殖是植物体生长发育的基础。我们利用最近发布的转录组信息,系统地分离和注释了蝴蝶兰蝴蝶兰阿芙罗狄蒂中的核心细胞周期调节因子。我们的数据证实蝴蝶兰细胞周期蛋白依赖性激酶A(CDKA)是进化上保守的CDK。表达谱研究表明,在G1 / S,S和G2 / M阶段起作用的核心细胞周期基因优先富集于具有高增殖活性的分生组织中。此外,CDK和细胞周期蛋白的各种组合,以及E2启动子结合因子和二聚化伙伴的亚细胞定位和成对相互作用分析证实了功能单元的相互作用。此外,我们的数据表明,在授粉诱导的生殖发育过程中,核心细胞周期基因的表达受到协调调节。获得的数据建立了研究蝴蝶兰兰花细胞周期机制的基本框架。

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