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一个 EjbHLH14-EjHB1-EjPRX12 模块参与茉莉酸甲酯缓解枇杷果实低温诱导的木质素沉积。

An EjbHLH14-EjHB1-EjPRX12 module is involved in methyl jasmonate alleviation of chilling-induced lignin deposition in loquat fruit.

机构信息

College of Agriculture and Biotechnology, Zhejiang University, Zijingang Campus, Hangzhou 310058, China.

Zhejiang Provincial Key Laboratory of Horticultural Plant Integrative Biology, Zhejiang University, Zijingang Campus, Hangzhou 310058, China.

出版信息

J Exp Bot. 2022 Mar 2;73(5):1668-1682. doi: 10.1093/jxb/erab511.

DOI:10.1093/jxb/erab511
PMID:34893804
Abstract

Loquat fruit are susceptible to chilling injuries induced by postharvest storage at low temperature. The major symptoms are increased lignin content and flesh firmness, which cause a leathery texture. Pretreatment with methyl jasmonate (MeJA) can alleviate this low-temperature-induced lignification, but the mechanism is not understood. In this study, we characterized a novel class III peroxidase, EjPRX12, and studied its relationship to lignification. Transcript levels of EjPRX12 were attenuated following MeJA pretreatment, consistent with the reduced lignin content in fruit. In vitro enzyme activity assay indicated that EjPRX12 polymerized sinapyl alcohol, and overexpression of EjPRX12 in Arabidopsis promoted lignin accumulation, indicating that it plays a functional role in lignin polymerization. We also identified an HD-ZIP transcription factor, EjHB1, repressed by MeJA pretreatment, which directly bound to and significantly activated the EjPRX12 promoter. Overexpression of EjHB1 in Arabidopsis promoted lignin accumulation with induced expression of lignin-related genes, especially AtPRX64. Furthermore, a JAZ-interacting repressor, EjbHLH14, was characterized, and it is proposed that MeJA pretreatment caused EjbHLH14 to be released to repress the expression of EjHB1. These results identified a novel regulatory pathway involving EjbHLH14-EjHB1-EjPRX12 and revealed the molecular mechanism whereby MeJA alleviated lignification of loquat fruit at low temperature.

摘要

枇杷果实易受低温贮藏引起的冷害。主要症状是木质素含量和果肉硬度增加,导致皮革状质地。用茉莉酸甲酯(MeJA)预处理可以减轻这种低温诱导的木质化,但机制尚不清楚。在这项研究中,我们鉴定了一个新型的类 III 过氧化物酶 EjPRX12,并研究了它与木质素形成的关系。MeJA 预处理后 EjPRX12 的转录水平降低,与果实木质素含量降低一致。体外酶活性测定表明 EjPRX12 聚合了松柏醇,并且 EjPRX12 在拟南芥中的过表达促进了木质素的积累,表明它在木质素聚合中发挥了功能作用。我们还鉴定了一个 HD-ZIP 转录因子 EjHB1,它被 MeJA 预处理抑制,直接结合并显著激活 EjPRX12 启动子。在拟南芥中过表达 EjHB1 促进了木质素的积累,并诱导了木质素相关基因的表达,特别是 AtPRX64。此外,还鉴定了一个 JAZ 相互作用的阻遏物 EjbHLH14,据推测,MeJA 预处理导致 EjbHLH14 释放,从而抑制 EjHB1 的表达。这些结果确定了一个涉及 EjbHLH14-EjHB1-EjPRX12 的新调控途径,并揭示了 MeJA 减轻低温下枇杷果实木质化的分子机制。

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