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Limonene’s Bacteriostatic Activity against Ralstonia solanacearum by Compromised Membrane Integrity: A Transcriptomic and Metabolomic Analysis
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作者 Ruya Zhang Honghao Zhang +9 位作者 Linfeng Li Yuchen Feng Lin Yang Jiaxin Liu Senfeng Gao Zihao Zhou Yong Yang Haibo Xiang Mei Li Jun Yu 《Journal of Agricultural Chemistry and Environment》 2024年第3期312-324,共13页
Ralstonia solanacearum, the causative agent of bacterial wilt, is a soil-borne pathogen that poses a widespread threat to plants in the Solanaceae family. To elucidate the mechanism by which limonene exerts its effect... Ralstonia solanacearum, the causative agent of bacterial wilt, is a soil-borne pathogen that poses a widespread threat to plants in the Solanaceae family. To elucidate the mechanism by which limonene exerts its effects on R. solanacearum, we first assessed the impact of limonene on the physiological indicators of the pathogen and subsequently analyzed its transcriptome and metabolome. Our findings indicate that limonene has a potent inhibitory effect on R. solanacearum, and it also suppresses the formation of the bacterial community biofilm. Limonene primarily regulates the terpene biosynthesis pathway in R. solanacearum, thereby potentially affecting signal transduction in the pathogen and disrupting its normal growth and development. These results significantly enhance our understanding of limonene’s response to the induction of bacterial wilt and provide a reference for further prevention and control of R. solanacearum. 展开更多
关键词 LIMONENE Transcriptome METABOLOME Ralstonia solanacearum terpenoid backbone biosynthesis
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