Molecular Mechanisms of Phenylpropane-Synthesis-Related Genes Regulating the Shoot Blight Resistance of Bambusa pervariabilis × Dendrocalamopsis grandis

Author:

Luo Fengying,Yan Peng,Xie Liling,Li Shuying,Zhu Tianhui,Han Shan,Lin Tiantian,Li ShujiangORCID

Abstract

Bambusa pervariabilis × Dendrocalamopsis grandis shoot blight caused by Arthrinium phaeospermum is a fungal disease that has affected a large area in China in recent years. However, it is not clear which genes are responsible for the disease resistance of B. pervariabilis × D. grandis. Based on the analysis of transcriptome and proteome data, two genes, CCoAOMT2 and CAD5, which may be involved in disease resistance, were screened. Two gene expression-interfering varieties, COF RNAi and CAD RNAi were successfully obtained using RNAi technology. Quantitative real-time fluorescence (qRT-PCR) results showed that CCoAOMT2 gene, CAD5 gene and seven related genes expression was down-regulated in the transformed varieties. After inoculating pathogen spore suspension, the incidence and disease index of cof-RNAi and cad-RNAi transformed plants increased significantly. At the same time, it was found that the content of total lignin and flavonoids in the two transformed varieties were significantly lower than that of the wild-type. The subcellular localization results showed that both CCoAOMT2 and CAD5 were localized in the nucleus and cytoplasm. The above results confirm that the CCoAOMT2 and CAD5 genes are involved in the resistance of B. pervariabilis × D.grandis to shoot blight through regulating the synthesis of lignin and flavonoids.

Funder

the National Natural Science Foundation of China

General Program of Science and Technology Department of Sichuan

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

Reference67 articles.

1. Investigation and spatial distribution of Bambusa pervariabilis × Dendrocalamopsis grandis;Zhu;J. Sichuan For. Sci. Technol.,2009

2. Exploiting Broad-Spectrum Disease Resistance in Crops: From Molecular Dissection to Breeding

3. Differential proteome analysis of hybrid Bamboo (Bambusa pervariabilis× Dendrocal-amopsis grandis) under fungal stress (Arthrinium phaeospermum);Li;Sci. Rep.,2019

4. Differential transcriptome analysis and identification of genes related to resistance to blight in three varieties of Bambusa pervariabilis × Dendrocalamopsis grandis

5. Relationship between Shikimate Acid Pathway and Polyphenol Accumulation in Grape Berries;Li;Mod. Agric. Sci. Technol.,2010

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