PubMed 40344303

PubMed ID: 40344303

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OsPRK1/2/3-mediated reactive oxygen species signaling is required for pollen tube germination in rice.
Authors: Kim Eui-Jung, Son Ye-Jin, Kim Ji-Hyun, Hong Woo-Jong, Lee Su Kyoung, Kim Sun Tae, Liang Wanqi, Moon Sunok, Kim Yu-Jin, Jung Ki-Hong
Journal: Journal of integrative plant biology (J Integr Plant Biol), Vol.67(7), 2025‑Jul

DOI: 10.1111/jipb.13921 PMCID: PMC3871813

Abstract
Pollen hydration, germination, and tube growth are vital processes for the successful fertilization of flowering plants. These processes involve complex signaling pathways. Reactive oxygen species (ROS) generated in apoplast involves signaling for the cell wall expansion during tube growth, however molecular regulators are less known. We identified pollen-specific receptor-like kinase (OsPRK) family genes from rice (Oryza sativa), which have conserved leucine-rich repeat (LRR) and kinase domains. To understand the function of these genes, we produced single and triple mutations for OsPRK1, OsPRK2, and OsPRK3 using the clustered regularly interspaced palindromic repeats (CRISPR/Cas9) system. Among these mutants, triple knockout (KO) lines (osprk1/2/3) exhibited the male-sterile phenotype with normal vegetative growth and floret formation. Through cytological analysis, we confirmed that the reduced seed fertility was due to defects in pollen hydration and germination with low ROS accumulation. This defect of pollen germination was partially recovered by treatment with exogenous H2O2. We also confirmed that OsPRKs could interact with the LRR extension protein. Our results suggest that rice PRKs redundantly play a role in ROS signaling for pollen hydration and germination, and fertility can be controlled by exogenous application.
Publication Types
Journal Article
Keywords
CRISPR/Cas9 Oryza sativa pollen tube germination pollen‐specific receptor‐like kinase (PRK) reactive oxygen species
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