转录组
细胞外
生物
植物
细胞生物学
基因表达
遗传学
基因
作者
Chaemyeong Lim,Sae Hyun Lee,Haeun Lee,So‐Yon Park,Kiyoon Kang,Hyeryung Yoon,Tae‐Jin Yang,Gary Stacey,Nam‐Chon Paek,Sung‐Hwan Cho
出处
期刊:Rice Science
[Elsevier BV]
日期:2025-03-31
卷期号:32 (3): 380-399
标识
DOI:10.1016/j.rsci.2025.03.002
摘要
Herbivorous insects and pathogens cause severe damage to rice tissues, affecting yield and grain quality. Damaged cells trigger downstream defense responses through various signals. Extracellular ATP (eATP), a signaling molecule released during mechanical cell damage, is considered a constitutive damage-associated molecular pattern (DAMP), which is crucial for initiating plant defense responses. Thus, understanding how rice plants cope with DAMPs such as eATP is essential. Here, we found that exogenous ATP affected rice growth and development, cell wall composition, chloroplast development, and cell death. Subsequent global transcriptome analysis revealed that several pathways were involved in the eATP response, including genes related to cell surface receptors, cell wall organization, chlorophyll biosynthesis, heat and temperature stimulation, epigenetic regulation, and reactive oxygen species metabolism. Cell surface receptors, including members of the lectin receptor-like kinases (LecRKs), were found to participate in the eATP response. We further investigated ATP-induced genes in T-DNA activation mutants of OsLecRKs , demonstrating their involvement in eATP signaling in rice. This study confirms a DAMP-mediated transcriptional response in plants and provides novel candidates for advancing resistant rice breeding against insect herbivores and pathogens.
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