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Updated: Jun 27, 2025

Live Imaging of Arabidopsis Pollen Tube Reception and Double Fertilization Using the Semi-In Vitro Cum Septum Method
Published on: February 24, 2023
Pollen-expressed RLCKs control pollen tube burst
Yin-Jiao Xu1, Ting Luo1, Peng-Min Zhou1
1Center for Developmental Biology, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing 100101, China.
Researchers identified three receptor-like cytoplasmic kinases (RLCKs), called Delayed Burst (DEB1/2/3), crucial for pollen tube bursting in Arabidopsis. These RLCKs regulate calcium dynamics, ensuring timely fertilization and preventing polyspermy.
Area of Science:
- Plant reproductive biology
- Molecular signaling in fertilization
- Angiosperm gametophyte development
Background:
- Pollen tube reception by the synergid cell is essential for angiosperm fertilization.
- The precise molecular mechanisms and signal transducers initiating pollen tube rupture remain largely unknown.
- Understanding pollen tube bursting is critical for controlling plant reproduction and breeding.
Purpose of the Study:
- To identify key signal transducers regulating pollen tube bursting in Arabidopsis.
- To elucidate the molecular mechanisms underlying the interaction between pollen tubes and synergid cells.
- To investigate the role of specific kinases in controlling pollen tube rupture timing.
Main Methods:
- Identification and characterization of homologous receptor-like cytoplasmic kinases (RLCKs) in Arabidopsis pollen tubes.
- Analysis of knockout mutants (deb1/2/3) to assess the phenotypic consequences on pollen tube behavior.
- Biochemical assays to determine protein interactions and phosphorylation activity, focusing on Ca2+ dynamics.
Main Results:
- Three homologous RLCKs, Delayed Burst 1/2/3 (DEB1/2/3), were identified and found to be crucial for pollen tube bursting.
- DEB1/2/3 proteins are localized to the plasma membrane and their absence causes delayed bursting and polyspermy.
- DEBs interact with the Ca2+ pump ACA9, modulating cytoplasmic Ca2+ levels via phosphorylation in pollen tubes.
Conclusions:
- DEB1/2/3 RLCKs are essential signal transducers regulating timely pollen tube burst.
- The DEB-ACA9 signaling axis plays a critical role in controlling calcium dynamics during pollen tube reception.
- This study provides new insights into the molecular control of fertilization in angiosperms.
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