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The genome and transcriptome of Phalaenopsis yield insights into floral organ development and flowering regulation

机译:蝴蝶兰的基因组和转录组可深入了解花器官发育和开花调控

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摘要

The Phalaenopsis orchid is an important potted flower of high economic value around the world. We report the 3.1 Gb draft genome assembly of an important winter flowering Phalaenopsis ‘KHM190’ cultivar. We generated 89.5 Gb RNA-seq and 113 million sRNA-seq reads to use these data to identify 41,153 protein-coding genes and 188 miRNA families. We also generated a draft genome for Phalaenopsis pulcherrima ‘B8802,’ a summer flowering species, via resequencing. Comparison of genome data between the two Phalaenopsis cultivars allowed the identification of 691,532 single-nucleotide polymorphisms. In this study, we reveal that the key role of PhAGL6b in the regulation of labellum organ development involves alternative splicing in the big lip mutant. Petal or sepal overexpressing PhAGL6b leads to the conversion into a lip-like structure. We also discovered that the gibberellin pathway that regulates the expression of flowering time genes during the reproductive phase change is induced by cool temperature. Our work thus depicted a valuable resource for the flowering control, flower architecture development, and breeding of the Phalaenopsis orchids.
机译:蝴蝶兰兰花是世界范围内具有重要经济价值的重要盆栽花卉。我们报告了一种重要的冬季开花蝴蝶兰“ KHM190”品种的3.1 Gb草图基因组装配。我们生成了89.5 Gb RNA-seq和1.13亿sRNA-seq读数,以使用这些数据来鉴定41,153个蛋白质编码基因和188个miRNA家族。通过重新测序,我们还为夏季开花的蝴蝶兰“ B8802”生成了基因组草图。比较两个蝴蝶兰品种的基因组数据可以鉴定出691,532个单核苷酸多态性。在这项研究中,我们揭示了PhAGL6b在调控小舌器官发育中的关键作用涉及大嘴唇突变体的选择性剪接。花瓣或萼片过表达PhAGL6b导致转化为唇状结构。我们还发现,凉爽的温度诱导了在繁殖期变化期间调节开花时间基因表达的赤霉素途径。因此,我们的工作描述了用于开花控制,花卉结构发展和蝴蝶兰育种的宝贵资源。

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