College of Horticulture and Landscape Architecture, Northeast Agricultural University, Harbin, 150030, China.
Key Laboratory of Biology and Genetic Improvement of Horticulture Crops (Northeast Region), Ministry of Agriculture and Rural Affairs, Northeast Agricultural University, Harbin, 150030, China.
BMC Plant Biol. 2024 Jun 6;24(1):507. doi: 10.1186/s12870-024-05185-3.
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.
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.
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.
由麦根被毛霉引起的白粉病严重威胁着藁本。植物次生代谢物对于许多活动是必不可少的,是抵御生物胁迫所必需的。为了阐明这些代谢物在应对病原体时的功能,我们的工作集中在麦根被毛霉感染过程中次生代谢物积累的变化上。
通过 RNA-seq 和 UPLC-MS/MS 关联分析,发现麦根被毛霉感染后香豆素代谢物——特别是简单香豆素及其相关基因的显著上调。鉴定出 Feruloyl CoA 6'-羟化酶 HmF6'H1 是香豆素基本骨架生物合成中通过邻位羟化作用的关键酶,这是一个重要的结果。细胞质 HmF6'H1 蛋白被证明能够催化 p-香豆酰辅酶 A 和咖啡酰辅酶 A 的邻位羟化,分别生成伞形酮和七叶内酯。HmF6'H1 基因的过表达导致简单香豆素水平升高,通过抑制 PT 基因表达抑制呋喃香豆素和吡喃香豆素的生物合成,从而增强藁本对白粉病的抗性。
这些结果确立了 HmF6'H1 作为一个抗性基因,帮助藁本抵御麦根被毛霉感染,进一步证明了 Feruloyl CoA 6'-羟化酶在催化各种类型的简单香豆素中的作用。因此,这项工作有助于我们理解简单香豆素在植物抵御白粉病感染中的功能。