水稻小花气孔发育及基因表达。

Lígia T Bertolino, Robert S Caine, Nicholas Zoulias, Xiaojia Yin, Caspar C C Chater, Akshaya Biswal, William P Quick, Julie E Gray
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引用次数: 1

摘要

气孔在调节植物与大气之间的气体交换中起着重要作用。这些微观结构在叶表皮上大量形成,也存在于花上。虽然对叶片气孔的研究较多,但对花气孔的发育和功能研究较少。本文对籼稻品种IR64花气孔的空间分布和发育进行了详细的描述。我们发现气孔复合体在外稃、古稃和花药的特定区域以低密度存在,并且在形态上与在叶片上发现的气孔不同。我们发现,在苞片状器官中,气孔发育遵循与水稻叶片相同的细胞系转变,并证明气孔发育调节因子OsEPFL9-1和OsEPF1的过表达导致水稻花器官中气孔密度的巨大变化,产生气孔数量大约两倍的外稃(OsEPFL9-1_oe)或几乎没有气孔的外稃(OsEPF1_oe)。发育小花的转录组学分析也表明,花气孔发育过程中的细胞转变受到与水稻叶片相同的遗传网络的调控。最后,尽管我们无法检测到花气孔密度变化对植物繁殖的影响,但我们报告了在过表达OsEPF1的品系中全球基因表达的变化,并讨论了我们的结果如何反映花气孔的可能作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stomatal Development and Gene Expression in Rice Florets.

Stomata play a fundamental role in modulating the exchange of gases between plants and the atmosphere. These microscopic structures form in high numbers on the leaf epidermis and are also present on flowers. Although leaf stomata are well studied, little attention has been paid to the development or function of floral stomata. Here, we characterize in detail the spatial distribution and development of the floral stomata of the indica rice variety IR64. We show that stomatal complexes are present at low density on specific areas of the lemma, palea and anthers and are morphologically different compared to stomata found on leaves. We reveal that in the bract-like organs, stomatal development follows the same cell lineage transitions as in rice leaves and demonstrate that the overexpression of the stomatal development regulators OsEPFL9-1 and OsEPF1 leads to dramatic changes in stomatal density in rice floral organs, producing lemma with approximately twice as many stomata (OsEPFL9-1_oe) or lemma where stomata are practically absent (OsEPF1_oe). Transcriptomic analysis of developing florets also indicates that the cellular transitions during the development of floral stomata are regulated by the same genetic network used in rice leaves. Finally, although we were unable to detect an impact on plant reproduction linked to changes in the density of floral stomata, we report alterations in global gene expression in lines overexpressing OsEPF1 and discuss how our results reflect on the possible role(s) of floral stomata.

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