4.7 Article

The lncRNA39896-miR166b-HDZs module affects tomato resistance to Phytophthora infestans

期刊

JOURNAL OF INTEGRATIVE PLANT BIOLOGY
卷 64, 期 10, 页码 1979-1993

出版社

WILEY
DOI: 10.1111/jipb.13339

关键词

disease resistance; lncRNA; miRNA; Phytophthora infestans; target gene; tomato

资金

  1. National Natural Science Foundation of China [32072592, 31872116, 61872055]

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In tomato resistance to Phytophthora infestans, the long non-coding RNA Sl-lncRNA39896 acts as an endogenous target mimic for the microRNA Sl-miR166b. Silencing the target genes SlHDZ34/45 reduces pathogen accumulation in infected plants, and enhanced resistance is associated with increased levels of jasmonic acid and ethylene.
The yield and quality of tomatoes (Solanum lycopersicum) is seriously affected by Phytophthora infestans. The long non-coding RNA (lncRNA) Sl-lncRNA39896 is induced after P. infestans infection and was previously predicted to act as an endogenous target mimic (eTM) for the microRNA Sl-miR166b, which function in stress responses. Here, we further examined the role of Sl-lncRNA39896 and Sl-miR166b in tomato resistance to P. infestans. Sl-miR166b levels were higher in Sl-lncRNA39896-knockout mutants than in wild-type plants, and the mutants displayed enhanced resistance to P. infestans. A six-point mutation in the region of Sl-lncRNA39896 that binds to Sl-miR166b disabled the interaction, suggesting that Sl-lncRNA39896 acts as an eTM for Sl-miR166b. Overexpressing Sl-miR166b yielded a similar phenotype to that produced by Sl-lncRNA39896-knockout, whereas silencing of Sl-miR166b impaired resistance. We verified that Sl-miR166b cleaved transcripts of its target class III homeodomain-leucine zipper genes SlHDZ34 and SlHDZ45. Silencing of SlHDZ34/45 decreased pathogen accumulation in plants infected with P. infestans. Additionally, jasmonic acid and ethylene contents were elevated following infection in the plants with enhanced resistance. Sl-lncRNA39896 is the first known lncRNA to negatively regulate resistance to P. infestans in tomato. We propose a novel mechanism in which the lncRNA39896-miR166b-HDZ module modulates resistance to P. infestans.

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