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Transcriptome profile analysis reveals the regulation mechanism of floral sex differentiation in Jatropha curcas L

机译:转录组谱分析揭示麻风树花性分化的调控机制

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The seeds of Jatropha curcas contain a high percentage of biodiesel. However, low seed yield which was limited by its poor female flowers was a bottleneck for its utilization. Here, we compared the transcriptomic profiles of five different samples during floral sex differentiation stages using Illumina Hiseq 4000. Our results showed that hundreds of differentially expressed genes (DEGs) were detected in floral sex initiation period, but thousands of DEGs were involved in the stamens and ovules development process. Moreover, the DEGs were mainly shown up-regulation in male floral initiation, but mainly down-regulation in female floral initiation. Male floral initiation was associated with the flavonoid biosynthesis pathway while female floral initiation was related to the phytohormone signal transduction pathway. Cytokinin (CTK) signaling triggered the initiation of female floral primordium, thereafter other phytohormones co-promoted the female floral development. In addition, the floral organ identity genes played important roles in floral sex differentiation process and displayed a general conservation of the ABCDE model in J. curcas. To the best of our knowledge, this data is the first comprehensive analysis of the underlying regulatory mechanism and the related genes during floral sex differentiation in J. curcas, which help in engineering high-yielding varieties of J. curcas.
机译:麻疯树的种子含有高百分比的生物柴油。然而,由于其雌花不佳而限制了种子产量的低下,这是其利用的瓶颈。在这里,我们使用Illumina Hiseq 4000比较了五个不同样品在花性分化阶段的转录组谱。我们的结果表明,在花性启动期检测到数百种差异表达基因(DEG),但数千个DEG参与了雄蕊。和胚珠的发育过程。此外,DEGs在雄性花序启动中主要表现为上调,而在雌性花序启动中主要表现为下调。雄性花序起始与黄酮类生物合成途径相关,而雌性花序起始与植物激素信号转导途径相关。细胞分裂素(CTK)信号触发了女性花原基的启动,此后其他植物激素共同促进了女性花的发育。此外,花器官同一性基因在花的性别分化过程中起着重要作用,并显示了J. curcas中ABCDE模型的一般保守性。据我们所知,该数据是对麻疯树花性分化过程中潜在调控机制和相关基因的首次综合分析,有助于工程化麻疯树的高产品种。

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