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Global Transcriptome Profiling Analysis of Inhibitory Effects of Paclobutrazol on Leaf Growth in Lily (Lilium Longiflorum-Asiatic Hybrid)

机译:全球多效唑分析对多效唑对百合叶片生长的抑制作用分析(长百合-亚洲杂种)

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摘要

As a popular ornamental flower, potted lily is an important object of lily breeding. Paclobutrazol, a chemical growth retardation compound, is often used to dwarf plant in producing potted lilies. However, in recent years, the plants with inherited dwarf traits by using genetic engineer breeding technology are being developed. The studies on molecular basis of lily dwarfism will offer some target genes which have profound dwarf effect for genetic engineer breeding. Here, we confirmed that paclobutrazol inhibited plant height and leaf size in Lilium Longiflorum-Asiatic hybrid, and then RNA-Seq technique was employed to analyze gene transcripts of Lilium Longiflorum-Asiatic hybrid leaves by paclobutrazol treatment in order to get a deeper insight into dwarfism mechanism of lily. Approximately 38.6 Gb data was obtained and assemble into 53,681 unigenes. Annotation, pathways, functional classification and phylogenetic classification of these data were analyzed based on Nr, Nt, Swiss-Prot, KEGG, COG, and GO databases. 2704 differentially expressed genes were screened by comparing paclobutrazol-treated samples with untreated samples and quantitative real-time PCR was performed to validate expression profiles. By analyzing dynamic changes of differentially expressed genes, nine metabolic pathways and signal transduction pathways were significantly enriched and many potentially interesting genes were identified that encoded putative regulators or key components of cell division, cell expansion, GA metabolism and signaling transduction and these genes were highlighted to reveal their importance in regulation of plant size. These results will provide a better understanding of the molecular mechanism on lily dwarfism and some potential genes related to lily organ size, which will lay the foundation for molecular breeding of potted lilies. These transcriptome data will also serve as valuable public genomic resources for other genetic research in lily.
机译:盆栽百合作为一种流行的观赏花卉,是百合育种的重要对象。多效唑是一种化学生长迟缓化合物,通常用于生产盆栽百合时使植物矮化。然而,近年来,正在开发通过使用遗传工程育种技术来遗传具有矮化性状的植物。百合矮化的分子基础研究将为遗传工程育种提供一些具有深远的矮化作用的靶基因。在这里,我们证实多效唑抑制了亚洲百合中的植物高度和叶片大小,然后采用RNA-Seq技术通过多效唑处理来分析了亚洲百合叶片的基因转录本,从而对侏儒症有了更深入的了解。百合的机制。获得了大约38.6 Gb数据,并将其组装成53,681个单基因。基于Nr,Nt,Swiss-Prot,KEGG,COG和GO数据库分析了这些数据的注释,途径,功能分类和系统发育分类。通过将多效唑处理的样品与未处理的样品进行比较,筛选了2704个差异表达基因,并进行了定量实时PCR验证表达谱。通过分析差异表达基因的动态变化,显着丰富了九种代谢途径和信号转导途径,并鉴定了许多潜在有趣的基因,这些基因编码了假定的调节子或细胞分裂,细胞扩增,GA代谢和信号转导的关键成分,并突出了这些基因。揭示它们在调节植物大小中的重要性。这些结果将使人们对百合矮化的分子机制以及与百合器官大小有关的一些潜在基因有更好的了解,这将为盆栽百合的分子育种奠定基础。这些转录组数据还将作为百合的其他遗传研究的宝贵公共基因组资源。

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