Transcriptional landscape of pathogen‐responsive lncRNAs in tomato unveils the role of hydrolase encoding genes in response to Botrytis cinerea invasion

灰葡萄孢菌 基因沉默 生物 基因 RNA干扰 水解酶 基因表达 几丁质酶 植物抗病性 遗传学 核糖核酸 植物 生物化学
作者
Daoguo Chen,Zhanquan Zhang,Yong Chen,Boqiang Li,Tong Chen,Shiping Tian
出处
期刊:Plant Cell and Environment [Wiley]
卷期号:47 (2): 651-663 被引量:6
标识
DOI:10.1111/pce.14757
摘要

Abstract LncRNAs have gained increasing attention owing to their important regulatory roles on growth and stress responses of plants. However, the mechanisms underlying the functions of lncRNAs in fruit‐pathogen interaction are still largely unknown. In this study, a total of 273 lncRNAs responding to Botrytis cinerea infection were identified in tomato fruit, among which a higher percentage of antisense lncRNAs were targeted to the genes enriched in hydrolase activity. To ascertain the roles of these lncRNAs, seven hydrolase‐related transcripts were transiently knocked‐down by virus‐induced gene silencing. Silencing of lncRNACXE20 reduced the expression level of a carboxylesterase gene, further enhancing the resistance of tomato to B. cinerea . In contrast, silencing of lncRNACHI , lncRNAMMP , lncRNASBT1.9 and lncRNAPME1.9 impaired the resistance to B. cinerea , respectively. Further RT‐qPCR assay and enzymatic activity detection displayed that the attenuated resistance of lncRNAMMP and lncRNASBT1.9 ‐silenced plants was associated with the inhibition on the expression of JA‐related genes, while the decreased resistance of lncRNACHI ‐silenced plants resulted in reduced chitinase activity. Collectively, these results may provide references for deciphering the mechanisms underlying specific lncRNAs to interfere with B. cinerea infection by regulating the expression of defence‐related genes or affecting hydrolase activity.
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