Jasmonate‐mediated polyamine oxidase 6 drives herbivore‐induced polyamine catabolism in rice

多胺 茉莉酸 亚精胺 多胺氧化酶 分解代谢 生物化学 精胺 腐胺 生物 细胞生物学 褐飞虱 化学 突变体 拟南芥 基因
作者
Hongyue Zu,Jing Zhang,Weiwei Bai,Peng Kuai,Jing‐Li Cheng,Jing Lü,Yonggen Lou,Ran Li
出处
期刊:Plant Journal [Wiley]
标识
DOI:10.1111/tpj.17094
摘要

SUMMARY Polyamines (PAs) along with their conjugated forms, are important mediators of plant defense mechanisms against both biotic and abiotic stresses. Flavin‐containing polyamine oxidases (PAOs) regulate PA levels through terminal oxidation. To date, the role of PAOs in plant–herbivore interaction remains poorly understood. We discovered that infestation by the brown planthopper (BPH) disrupts PA homeostasis within the leaf sheaths of rice plants, which co‐occurs with the upregulation of OsPAO6 , a tissue‐specific inducible, apoplast‐localized enzyme that regulates the terminal catabolism of spermidine (Spd) and spermine. Functional analysis using CRISPR‐Cas9 genome‐edited plants revealed that pao6 mutants accumulated significantly higher levels of Spd and phenylpropanoid‐conjugated Spd in response to BPH infestation compared to wild‐type controls. In addition, BPH feeding on pao6 mutants led to increased honeydew excretion and plant damage by female adults, consistent with in vitro experiments in which Spd enhanced BPH feeding. Furthermore, OsPAO6 transcription is regulated by jasmonate (JA) signaling, and it is dependent on MYC2, which directly binds to the G‐box‐like motif in the OsPAO6 promoter. Our findings reveal an important role of OsPAO6 in regulating polyamine catabolism in JA‐induced responses triggered by herbivore attacks in rice.
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