Systemic jasmonic acid modulation in mycorrhizal tomato plants and its role in induced resistance against Alternaria alternata

茉莉酸 生物 交替链格孢 水杨酸 茉莉酸甲酯 茉莉酸 植物 微生物学 病菌 系统获得性抵抗 丛枝菌根 植物抗病性 植物对草食的防御 细菌 基因 生物化学 共生 遗传学 拟南芥 突变体
作者
Abhinav Nair,Swati P. Kolet,Hirekodathakallu V. Thulasiram,S. Bhargava
出处
期刊:Plant Biology [Wiley]
卷期号:17 (3): 625-631 被引量:84
标识
DOI:10.1111/plb.12277
摘要

Abstract Tomato plants colonised with the arbuscular mycorrhizal ( AM ) fungus Glomus fasciculatum show systemic induced resistance to the foliar pathogen Alternaria alternata , as observed in interactions of other AM ‐colonised plants with a range of pathogens. The role of jasmonic ( JA ) and salicylic ( SA ) acid in expression of this mycorrhiza‐induced resistance ( MIR ) against A. alternata was studied by measuring: (i) activity of enzymes reported to be involved in their biosynthesis, namely lipoxygenase ( LOX ) and phenylammonia lyase ( PAL ); and (ii) levels of methyl jasmonate (Me JA ) and SA . Transcript abundance of some defence genes associated with JA and SA response pathways were also studied. Both LOX and PAL activity increased twofold in response to pathogen application to control plants. AM ‐colonised plants had three‐fold higher LOX activity compared to control plants, but unlike controls, this did not increase further in response to pathogen application. Higher LOX activity in AM ‐colonised plants correlated with four‐fold higher Me JA in leaves of AM ‐colonised plants compared to controls. Treatment of plants with the JA biosynthesis inhibitor salicylhydroxamic acid ( SHAM ) led to 50% lower Me JA in both control and AM ‐colonised plants and correlated with increased susceptibility to A. alternata , suggesting a causal role for JA in expression of MIR against the pathogen. Genes involved in JA biosynthesis ( OPR 3 ) and response ( COI 1 ) showed six‐ and 42‐fold higher expression, respectively, in leaves of AM ‐colonised plants compared to controls. AM ‐colonised plants also showed increased expression of the SA response gene PR 1 and that of the wound‐inducible polypeptide prosystemin. Our results suggest that the systemic increase in JA in response to AM colonisation plays a key role in expression of MIR against A. alternata .
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