Peaucelle Alexis, Morin Halima, Traas Jan, Laufs Patrick
Laboratoire de Biologie Cellulaire UR501, Institut J. P. Bourgin, INRA, F-78000 Versailles, France.
Development. 2007 Mar;134(6):1045-50. doi: 10.1242/dev.02774. Epub 2007 Jan 24.
In plants, the arrangement of organs along the stem (phyllotaxy) follows a predictable pattern. Recent studies have shown that primordium position at the meristem is governed by local auxin gradients, but little is known about the subsequent events leading to the phyllotaxy along the mature stem. We show here that plants expressing a miR164-resistant CUP-SHAPED COTYLEDON2 (CUC2) gene have an abnormal phyllotactic pattern in the fully grown stem, despite the pattern of organ initiation by the meristem being normal. This implies that abnormal phyllotaxy is generated during stem growth. These plants ectopically express CUC2 in the stem, suggesting that the proper timing of CUC2 expression is required to maintain the pattern initiated in the meristem. Furthermore, by carefully comparing the phyllotaxy in the meristem and along the mature inflorescence in wild types, we show that such deviation also occurs during wild-type development, although to a smaller extent. We therefore suggest that the phyllotactic pattern in a fully grown stem results not only from the organogenetic activity of the meristem, but also from the subsequent growth pattern during stem development.
在植物中,器官沿茎的排列方式(叶序)遵循可预测的模式。最近的研究表明,分生组织处原基的位置受局部生长素梯度的控制,但对于导致成熟茎上叶序形成的后续事件却知之甚少。我们在此表明,尽管分生组织的器官起始模式正常,但表达抗miR164的杯状子叶2(CUC2)基因的植物在完全成熟的茎上具有异常的叶序模式。这意味着异常叶序是在茎生长过程中产生的。这些植物在茎中异位表达CUC2,这表明需要CUC2表达的适时性来维持分生组织起始的模式。此外,通过仔细比较野生型分生组织和成熟花序上的叶序,我们发现这种偏差在野生型发育过程中也会出现,尽管程度较小。因此,我们认为完全成熟茎上的叶序模式不仅源于分生组织的器官发生活性,还源于茎发育过程中的后续生长模式。