Author:
Liu Hanbing,Wang Yiran,Chang QinZheng,Li Qiubi,Fang Jiahui,Cao Ning,Tong Xuejiao,Jiang Xinmei,Yu Xihong,Cheng Yao
Abstract
Abstract
Background
Powdery mildew, caused by Eeysiphe heraclei, seriously threatens Heracleum moellendorffii Hance. Plant secondary metabolites are essential to many activities and are necessary for defense against biotic stress. In order to clarify the functions of these metabolites in response to the pathogen, our work concentrated on the variations in the accumulation of secondary metabolites in H. moellendorffii during E. heraclei infection.
Results
Following E. heraclei infection, a significant upregulation of coumarin metabolites—particularly simple coumarins and associated genes was detected by RNA-seq and UPLC-MS/MS association analysis. Identifying HmF6’H1, a Feruloyl CoA 6’-hydroxylase pivotal in the biosynthesis of the coumarin basic skeleton through ortho-hydroxylation, was a significant outcome. The cytoplasmic HmF6’H1 protein was shown to be able to catalyze the ortho-hydroxylation of p-coumaroyl-CoA and caffeoyl-CoA, resulting in the formation of umbelliferone and esculetin, respectively. Over-expression of the HmF6’H1 gene resulted in increased levels of simple coumarins, inhibiting the biosynthesis of furanocoumarins and pyranocoumarins by suppressing PT gene expression, enhancing H. moellendorffii resistance to powdery mildew.
Conclusions
These results established HmF6’H1 as a resistance gene aiding H. moellendorffii in combatting E. heraclei infection, offering additional evidence of feruloyl-CoA 6’-hydroxylase role in catalyzing various types of simple coumarins. Therefore, this work contributes to our understanding of the function of simple coumarins in plants’ defense against powdery mildew infection.
Funder
the Advantageous and Characteristic Disciplines of "Biogenetics of Traditional Chinese Medicine" in the Construction of "Double First-class" in Heilongjiang Province
the National Key Research and Development Program of China
the Basic Research Support Program for Outstanding Young Teachers in Heilongjiang Province
the Young Talent Project of Northeast Agricultural University
Publisher
Springer Science and Business Media LLC
Cited by
1 articles.
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