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Molecular processes underlying the floral transition in the soybean shoot apical meristem

机译:大豆芽顶端分生组织中花序过渡的分子过程

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摘要

The transition to flowering is characterized by a shift of the shoot apical meristem (SAM) from leaf production to the initiation of a floral meristem. The flowering process is of vital importance for agriculture, but the associated events or regulatory pathways in the SAM are not well understood, especially at a system level. To address this issue, we have used a GeneChip® containing 37 744 probe sets to generate a temporal profile of gene expression during the floral initiation process in the SAM of the crop legume, soybean (Glycine max). A total of 331 transcripts displayed significant changes in their expression profiles. The in silico and RT-PCR analysis on differentially regulated transcripts implies the intriguing involvement of sugar, auxin or abscisic acid (ABA) in events prior to the induction of floral homeotic transcripts. The novel involvement of ABA in the floral transition is further implicated by immunoassay, suggesting an increase in ABA levels in the SAM during this developmental transition. Furthermore, in situ localization, together with in silico data demonstrating a marked enhancement of abiotic stress-related transcripts, such as trehalose metabolism genes in SAMs, points to an overlap of abiotic stress and floral signalling pathways.
机译:向花期的转变的特征在于,茎尖分生组织(SAM)从叶片产生向花分生组织的起始转移。开花过程对农业至关重要,但是SAM中的相关事件或调控途径尚未得到很好的理解,特别是在系统级别。为了解决这个问题,我们使用了包含37 744个探针集的GeneChip®来在农作物豆类大豆SAM(Glycine max)的花序启动过程中生成基因表达的时间概况。总共331个转录本在其表达谱中显示出显着变化。差异调控转录本的计算机模拟和RT-PCR分析表明,在诱导花序同源转录本之前,糖,生长素或脱落酸(ABA)确实参与了事件。免疫测定进一步暗示了ABA在花序过渡中的新参与,这表明在该发育过渡过程中SAM中ABA的含量增加。此外,原位定位以及计算机模拟数据表明非生物胁迫相关转录本(例如SAM中的海藻糖代谢基因)显着增强,这表明非生物胁迫和花卉信号通路重叠。

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