4.7 Article

Cyclocarya paliurus Reprograms the Flavonoid Biosynthesis Pathway Against Colletotrichum fructicola

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FRONTIERS IN PLANT SCIENCE
卷 13, 期 -, 页码 -

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FRONTIERS MEDIA SA
DOI: 10.3389/fpls.2022.933484

关键词

anthracnose; Cyclocarya paliurus; disease resistance; multiomics; flavonoid pathway

资金

  1. Postgraduate Research and Practice Innovation Program of Jiangsu Province [KYCX20_0875]
  2. Elite Youth Program CAAS
  3. Agricultural Science and Technology Innovation Program

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The study found that the Wufeng cultivar of Cyclocarya paliurus exhibited the strongest resistance to the fungal pathogen Colletotrichum fructicola, while the Jinggangshan cultivar was the most susceptible. Physiological and histochemical experiments showed that the Wufeng cultivar had high defense capabilities. Using a multiomics approach, the study revealed that the resistance in Wufeng is related to early induction of reprogramming of the flavonoid biosynthesis pathway. In vitro antifungal assays further demonstrated the inhibitory effect of flavonoid extracts from resistant cultivars on the growth of C. fructicola.
Cyclocarya paliurus is an endemic Chinese tree species with considerable medicinal, timber, and horticultural value. The anthracnose disease of C. paliurus is caused by the fungal pathogen Colletotrichum fructicola, which results in great losses in yield and quality. Here, resistance evaluation of six cultivars of C. paliurus exhibited varying degrees of resistance to C. fructicola infection, where Wufeng was the most resistant and Jinggangshan was the most susceptive. Physiological measurements and histochemical staining assays showed that the Wufeng cultivar exhibits intense reactive oxygen species accumulation and defense capabilities. A multiomics approach using RNA sequencing and metabolome analyses showed that resistance in C. paliurus (Wufeng) is related to early induction of reprogramming of the flavonoid biosynthesis pathway. In vitro antifungal assays revealed that the flavonoid extracts from resistant cultivars strongly inhibited C. fructicola hyphal growth than susceptible cultivars. Relative gene expression analysis further demonstrated the pivotal antifungal role of C. paliurus flavonoids in targeting Colletotrichum appressorium formation. Together, these results represent a novel resistance mechanism of C. paliurus against anthracnose through the reprogramming of flavonoids, which will lay a foundation for breeding anthracnose-resistant varieties and the application of flavonoid extraction of C. paliurus as a natural antifungal treatment.

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