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番茄 SlIDA 通过调节活性氧稳态在番茄受精过程中起关键作用。

Tomato SlIDA has a critical role in tomato fertilization by modifying reactive oxygen species homeostasis.

机构信息

College of Horticulture, Shenyang Agricultural University, Shenyang, Liaoning, 110866, People's Republic of China.

Key Laboratory of Protected Horticulture of Ministry of Education, Shenyang, Liaoning Province, China.

出版信息

Plant J. 2020 Sep;103(6):2100-2118. doi: 10.1111/tpj.14886. Epub 2020 Jul 11.

Abstract

Anther development and pollen tube elongation are key steps for pollination and fertilization. The timing and spatial distribution of reactive oxygen species (ROS) and programmed cell death are central to these processes, but the regulatory mechanism of ROS production is not well understood. Inflorescence deficient in abscission (IDA) is implicated in many plant development and responses to environmental stimuli. However, their role in reproductive development is still unknown. We generated tomato knockout lines (CR-slida) of an IDA homolog (SlIDA), which is expressed in the tapetum, septum and pollen tube, and observed a severe defect in male gametes. Further analysis indicated that there was a programmed cell death defect in the tapetum and septum and a failure of anther dehiscence in the CR-slida lines, likely related to insufficient ROS signal. Liquid chromatography-tandem mass spectrometry identified mature SlIDA as a 14-mer EPIP peptide, which was shown to be secreted, and a complementation experiment showed that application of a synthetic 14-mer EPIP peptide rescued the CR-slida defect and enhanced the ROS signal. Moreover, the application of the ROS scavengers diphenyleneiodonium or Mn-TMPP suppressed peptide function. Collectively, our results revealed that SlIDA plays an essential role in pollen development and pollen tube elongation by modulating ROS homeostasis.

摘要

花药发育和花粉管伸长是授粉和受精的关键步骤。活性氧(ROS)和程序性细胞死亡的时间和空间分布是这些过程的核心,但 ROS 产生的调节机制还不清楚。花序缺失(IDA)参与了许多植物的发育和对环境刺激的反应。然而,它们在生殖发育中的作用仍然未知。我们生成了番茄 IDA 同源物(SlIDA)的敲除系(CR-slida),该基因在绒毡层、隔膜和花粉管中表达,并观察到雄性配子严重缺陷。进一步的分析表明,CR-slida 系中的绒毡层和隔膜存在程序性细胞死亡缺陷,以及花药开裂失败,这可能与 ROS 信号不足有关。液质联用鉴定出成熟的 SlIDA 是一种 14 肽的 EPIP 肽,它被证明是分泌的,并且互补实验表明,应用合成的 14 肽 EPIP 肽可挽救 CR-slida 的缺陷并增强 ROS 信号。此外,ROS 清除剂二苯并碘二酮或 Mn-TMPP 的应用抑制了肽的功能。总之,我们的结果表明,SlIDA 通过调节 ROS 动态平衡在花粉发育和花粉管伸长中发挥重要作用。

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