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Morphology and Quantitative Monitoring of Gene Expression Patterns during Floral Induction and Early Flower Development in Dendrocalamus latiflorus

机译:枝花龙end花诱导和早期花发育过程中的基因表达模式的形态学和定量监测

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摘要

The mechanism of floral transition in bamboo remains unclear. Dendrocalamus latiflorus (Bambusease, Bambusoideae, Poaceae) is an economically and ecologically important clumping bamboo in tropical and subtropical areas. We evaluated morphological characteristics and gene expression profiling to study floral induction and early flower development in D. latiflorus. The detailed morphological studies on vegetative buds and floral organography were completed using paraffin sectioning and scanning electron microscopy. The 3 mm floral buds commence the development of stamen primordia and pistil primordium. Furthermore, homologs of floral transition-related genes, including AP1, TFL1, RFL, PpMADS1, PpMADS2, SPL9, FT, ID1, FCA, and EMF2, were detected and quantified by reverse transcriptase PCR and real-time PCR in vegetative and floral buds, respectively. Distinct expression profiles of ten putative floral initiation homologues that corresponded to the developmental stages defined by bud length were obtained and genes were characterized. Six of the genes (including DlTFL1, DlRFL, DlMADS2, DlID1, DlFCA, DlEMF2) showed statistically significant changes in expression during floral transition. DlAP1 demonstrated a sustained downward trend and could serve as a good molecular marker during floral transition in D. latiflorus. The combined analysis provided key candidate markers to track the transition from the vegetative to reproductive phase.
机译:竹中花过渡的机制仍不清楚。斑竹(Dendrocalamus latiflorus)(Bambusease,Bambusoideae,Poaceae)是一种在热带和亚热带地区具有重要经济和生态意义的成簇竹。我们评估了形态特征和基因表达谱,以研究D. latiflorus的花诱导和早期花发育。使用石蜡切片和扫描电子显微镜完成了对营养芽和花器官的详细形态学研究。 3毫米的花蕾开始发育雄蕊原基和雌蕊原基。此外,还通过逆转录酶PCR和实时PCR在植物和花蕾中检测和定量了与花序转换相关基因的同源物,包括AP1,TFL1,RFL,PpMADS1,PpMADS2,SPL9,FT,ID1,FCA和EMF2。 , 分别。获得了与芽长度定义的发育阶段相对应的十个推定花序起始同源物的不同表达谱,并对基因进行了表征。其中六个基因(包括DlTFL1,DlRFL,DlMADS2, DlID1 DlFCA DlEMF2 )在花期过渡期间显示出统计学上的显着变化。 DlAP1 表现出持续的下降趋势,并且可以作为 D中花期过渡的良好分子标记。拉提弗洛斯。组合分析提供了关键的候选标记,以追踪从营养期到生殖期的转变。

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