John Innes Centre, Norwich, NR4 7UH, UK.
J Exp Bot. 2012 Sep;63(14):5233-43. doi: 10.1093/jxb/ers184. Epub 2012 Jul 12.
Leaves develop as planar organs, with a morphology that is specialized for photosynthesis. Development of a planar leaf requires genetic networks that set up opposing adaxial and abaxial sides of the leaf, which leads to establishment of dorsoventral polarity. While many genes have been identified that regulate adaxial and abaxial fate there is little information on how this is integrated with cellular function. EMBRYO DEFECTIVE DEVELOPMENT1 (EDD1) is a nuclear gene that encodes a plastid and mitochondrial localized glycyl-tRNA synthetase. Plants with partial loss of EDD1 function have changes in patterning of margin and distal regions of the leaf. In combination with mutations in the MYB domain transcription factor gene ASYMMETRIC LEAVES1 (AS1), partial loss of EDD1 function results in leaves with reduced adaxial fate. EDD1 may influence leaf dorsoventral polarity through regulating the abaxial fate genes KANADI1 (KAN1) and ETTIN (ETT)/AUXIN RESPONSE FACTOR3 (ARF3) since these genes are upregulated in the edd1 as1 double mutant. SCABRA3 (SCA3), a nuclear gene that encodes the plastid RNA polymerase is also required for leaf adaxial fate in the absence of AS1. These results add a novel component to networks of genetic regulation of leaf development and suggest that organelles, particularly plastids, are required in leaf patterning. Potentially, signalling from organelles is essential for coordination of different cell fates within the developing leaf.
叶片作为平面器官发育,具有专门用于光合作用的形态。平面叶片的发育需要建立叶片的正反两面的遗传网络,从而导致背腹极性的建立。虽然已经鉴定出许多调节正反两面命运的基因,但关于如何将其与细胞功能整合在一起的信息却很少。胚发育缺陷 1(EDD1)是一种核基因,编码定位于质体和线粒体的甘氨酰-tRNA 合成酶。EDD1 功能部分缺失的植物,其叶片边缘和远端区域的模式发生变化。与 MYB 结构域转录因子基因不对称叶片 1(AS1)的突变相结合,EDD1 功能的部分缺失导致叶片的正命运减少。EDD1 可能通过调节背腹命运基因 KANADI1(KAN1)和 ETTIN(ETT)/生长素反应因子 3(ARF3)来影响叶片的背腹极性,因为这些基因在 edd1 as1 双突变体中上调。SCABRA3(SCA3)是一种核基因,编码质体 RNA 聚合酶,在没有 AS1 的情况下也是叶片正命运所必需的。这些结果为叶片发育的遗传调控网络增加了一个新的组成部分,并表明细胞器,特别是质体,在叶片模式形成中是必需的。可能,细胞器的信号对于协调发育中叶中不同的细胞命运是必不可少的。