Department of Biology, Dalhousie University, 1355 Oxford Street, Halifax, NS, B3H 4R2, Canada.
Am J Bot. 2020 Apr;107(4):577-586. doi: 10.1002/ajb2.1463. Epub 2020 Apr 21.
Lace plant (Aponogeton madagascariensis) leaves are remodeled via developmental programmed cell death (PCD) to produce perforations located equidistantly between longitudinal and transverse veins. Auxin has been implicated in other developmental PCD processes in plants; however, the role of auxin in perforation formation in lace plant is unknown. Here the role of auxin in developmental PCD in lace plant was studied using two auxin inhibitors N-1-naphthylphthalamic acid (NPA), an auxin transport inhibitor, and auxinole, a potent auxin antagonist.
Sterile cultures of lace plants were propagated and treated with NPA or auxinole. Leaf length, leaf width, and number of perforations were then analyzed. Vein patterning and perforation area were further examined in NPA-treated plants. Downstream PCD transduction events were investigated via spectrophotometric assays, histochemical staining, and immuno-probing.
Lace plants treated with NPA or auxinole produced leaves with fewer perforations compared to their respective controls. Although NPA treatment was insufficient to completely alter vein patterning, NPA-treated leaves did have significantly more atypical areoles compared to control leaves. Events involved in perforation formation in lace plant leaves were altered following treatment with NPA, including anthocyanin production, reactive oxygen species (ROS) accumulation, and the release of mitochondrial cytochrome c.
Our results indicated that inhibition of auxin signaling disrupts several downstream features of the lace plant PCD signaling cascade and results in fewer or no perforations. Therefore, we concluded that auxin signaling is important for developmentally regulated PCD in lace plant leaves.
蔺草(Aponogeton madagascariensis)叶片通过发育性细胞程序性死亡(PCD)重塑,在纵向和横向叶脉之间等距产生穿孔。生长素已被牵涉到植物中其他发育性 PCD 过程中;然而,生长素在蔺草穿孔形成中的作用尚不清楚。本研究使用两种生长素抑制剂 N-1-萘基邻氨甲酰苯甲酸(NPA),一种生长素运输抑制剂,和生长素类似物 auxinole,研究生长素在蔺草发育性 PCD 中的作用。
蔺草无菌培养物进行繁殖并分别用 NPA 或 auxinole 处理。然后分析叶片长度、宽度和穿孔数量。进一步检查 NPA 处理植物中的叶脉模式和穿孔面积。通过分光光度法测定、组织化学染色和免疫探测研究下游 PCD 转导事件。
与各自对照相比,用 NPA 或 auxinole 处理的蔺草产生的叶片穿孔较少。尽管 NPA 处理不足以完全改变叶脉模式,但与对照叶片相比,NPA 处理的叶片具有明显更多的非典型泡状细胞。蔺草叶片中与穿孔形成相关的事件在 NPA 处理后发生改变,包括花青素的产生、活性氧(ROS)的积累和线粒体细胞色素 c 的释放。
我们的结果表明,生长素信号转导的抑制破坏了蔺草 PCD 信号级联的几个下游特征,导致穿孔减少或不存在。因此,我们得出结论,生长素信号对于蔺草叶片发育性调控的 PCD 很重要。