The Key Laboratory of Plant Development and Environmental Adaptation Biology, Ministry of Education, School of Life Science, Shandong University, Qingdao, 266237, China.
Noble Research Institute, LLC, Ardmore, OK, 73401, USA.
Plant J. 2019 Nov;100(3):562-571. doi: 10.1111/tpj.14469. Epub 2019 Aug 23.
Leaves are derived from the shoot apical meristem with three distinct axes: dorsoventral, proximodistal and mediolateral. Different regulators are involved in the establishment of leaf polarity. Members of the class III homeodomain-leucine zipper (HD-ZIPIII) gene family are critical players in the determination of leaf adaxial identity mediated by microRNA165/166. However, their roles in compound leaf development are still unclear. By screening of a retrotransposon-tagged mutant population of the model legume plant Medicago truncatula, a mutant line with altered leaflet numbers was isolated and characterized. Mutant leaves partially lost their adaxial identity. Leaflet numbers in the mutant were increased along the proximodistal axis, showing pinnate pentafoliate leaves in most cases, in contrast to the trifoliate leaves of the wild type. Detailed characterization revealed that a lesion in a HD-ZIPIII gene, REVOLUTA (MtREV1), resulted in the defects of the mutant. Overexpression of MtMIR166-insensitive MtREV1 led to adaxialized leaves and ectopic leaflets along the dorsoventral axis. Accompanying the abnormal leaf patterning, the free auxin content was affected. Our results demonstrate that MtREV1 plays a key role in determination of leaf adaxial-abaxial polarity and compound leaf patterning, which is associated with proper auxin homeostasis.
叶片由茎尖分生组织衍生而来,具有三个明显的轴:背腹轴、近远轴和中侧轴。不同的调节因子参与了叶片极性的建立。III 类同源域-亮氨酸拉链(HD-ZIPIII)基因家族的成员是由 microRNA165/166 介导的叶片腹面身份决定的关键参与者。然而,它们在复叶发育中的作用仍不清楚。通过筛选模式豆科植物蒺藜苜蓿的逆转座子标签突变体群体,分离并鉴定了一个具有改变小叶数量的突变体系。突变体叶片部分丧失了腹面身份。在突变体中,小叶数量沿近远轴增加,在大多数情况下表现为羽状五叶,而野生型为三叶。详细的特征分析表明,一个 HD-ZIPIII 基因,REVOLUTA(MtREV1)的突变导致了突变体的缺陷。过量表达 MtMIR166 不敏感的 MtREV1 导致叶片腹面化和沿背腹轴异位小叶。伴随着异常的叶片图案,游离生长素含量受到影响。我们的结果表明,MtREV1 在叶片腹背极性和复叶图案的决定中起关键作用,这与适当的生长素稳态有关。