Sankaranarayanan Subramanian, Venkatesan Sowmiya D, Davis Thomas C, Kessler Sharon A
Department of Botany and Plant Pathology, Purdue University, West Lafayette, IN, 47907, USA.
Center for Plant Biology, Purdue University, West Lafayette, IN, 47907, USA.
Plant Reprod. 2025 Jun 5;38(2):14. doi: 10.1007/s00497-025-00524-2.
Superoxide accumulates during early stigma papillae growth stages in Arabidopsis. Highly specialized stigma papillae cells play a critical role in plant reproduction. Their main purpose is to catch and interact with pollen, to mediate compatibility responses, to regulate pollen germination, and to guide pollen tubes to the transmitting tract so that the sperm cells carried in the pollen can be delivered to the female gametophyte to achieve double fertilization. In Arabidopsis thaliana, the stigma consists of single-celled stigma papillae that emerge from the apex of the fused carpels. Despite their critical function in plant reproduction, the molecular mechanisms that govern growth and maturation of stigma papillae remain poorly understood. Reactive Oxygen Species (ROS) have been implicated in stigma receptivity, but their roles in papillae development are less explored. Here we show that reactive oxygen species (ROS) also play different roles in stigma papillae development, with superoxide accumulating during the initiation and growth phase and hydrogen peroxide accumulating in mature papillae that are receptive to pollen. Reducing superoxide levels in the stigma by pharmacological treatments or over-expressing superoxide dismutase enzymes under an early stigma promoter inhibited stigma papillae growth, suggesting that ROS homeostasis is critical to papillae growth and differentiation for optimal pollination.
在拟南芥中,超氧化物在柱头乳突早期生长阶段积累。高度特化的柱头乳突细胞在植物繁殖中起关键作用。它们的主要功能是捕获花粉并与花粉相互作用,介导亲和反应,调节花粉萌发,并引导花粉管进入花粉管通道,以便花粉携带的精细胞能够传递到雌配子体以实现双受精。在拟南芥中,柱头由从合生心皮顶端伸出的单细胞柱头乳突组成。尽管它们在植物繁殖中具有关键功能,但控制柱头乳突生长和成熟的分子机制仍知之甚少。活性氧(ROS)与柱头的可受性有关,但其在乳突发育中的作用研究较少。在这里,我们表明活性氧(ROS)在柱头乳突发育中也发挥不同作用,超氧化物在起始和生长阶段积累,而过氧化氢在对花粉有接受能力的成熟乳突中积累。通过药物处理降低柱头中的超氧化物水平或在早期柱头启动子下过表达超氧化物歧化酶会抑制柱头乳突生长,这表明ROS稳态对于乳突生长和分化以实现最佳授粉至关重要。