Hydrogen sulfide enhances kiwifruit resistance to soft rot by regulating jasmonic acid signaling pathway

茉莉酸 苹果轮纹病 采后 生物 植物抗病性 生物合成 熏蒸 转录因子 生物化学 基因 植物 园艺
作者
Tenghuan Huang,Bing Duan,Xiaoxia Zuo,Huaying Du,Jing Wang,Zhipeng Cai,Yonggen Shen,Wei Zhang,Jinyin Chen,Liqin Zhu,Zengyu Gan
出处
期刊:Plant Physiology and Biochemistry [Elsevier BV]
卷期号:214: 108880-108880 被引量:8
标识
DOI:10.1016/j.plaphy.2024.108880
摘要

As the third active gas signal molecule in plants, hydrogen sulfide (H2S) plays important roles in physiological metabolisms and biological process of fruits and vegetables during postharvest storage. In the present study, the effects of H2S on enhancing resistance against soft rot caused by Botryosphaeria dothidea and the involvement of jasmonic acid (JA) signaling pathway in kiwifruit during the storage were investigated. The results showed that 20 μL L-1 H2S fumigation restrained the disease incidence of B. dothidea-inoculated kiwifruit during storage, and delayed the decrease of firmness and the increase of soluble solids (SSC) content. H2S treatment increased the transcription levels of genes related to JA biosynthesis (AcLOX3, AcAOS, AcAOC2, and AcOPR) and signaling pathway (AcCOI1, AcJAZ5, AcMYC2, and AcERF1), as well as the JA accumulation. Meanwhile, H2S promoted the expression of defense-related genes (AcPPO, AcSOD, AcGLU, AcCHI, AcAPX, and AcCAT). Correlation analysis revealed that JA content was positively correlated with the expression levels of JA biosynthesis and defense-related genes. Overall, the results indicated that H2S could promote the increase of endogenous JA content and expression of defense-related genes by regulating the transcription levels of JA pathway-related genes, which contributed to the inhibition on the soft rot occurrence of kiwifruit.
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