A CRISPR/LbCas12a-based method for detection of bacterial fruit blotch pathogens in watermelon

Author:

Wang Zelu1,Cheng Wenhui1,Dong Zhiyu1,Yao Xiamei2,Deng Xu3,Ou Chun1ORCID

Affiliation:

1. Engineering Technology Research Center of Anti-aging Chinese Herbal Medicine, School of Biology and Food Engineering, Fuyang Normal University, Fuyang, Anhui, China

2. School of Architecture and Urban Planning, Anhui Jianzhu University, Hefei, Anhui, China

3. Southern Subtropicals Grops Research Institute, Zhanjiang, Guangdong, China

Abstract

ABSTRACT Acidovorax citrulli is the main pathogen causing bacterial fruit blotch, which seriously threatens the global watermelon industry. At present, rapid, sensitive, and low-cost detection methods are urgently needed. The established CRISPR/LbCas12a visual detection method can specifically detect A. citrulli and does not cross-react with other pathogenic bacteria such as Erwinia tracheiphila , Pseudomonas syringae , and Xanthomonas campestris . The sensitivity of this method for genomic DNA detection is as low as 0.7 copies/μL, which is higher than conventional PCR and real-time PCR. In addition, this method only takes 2.5 h from DNA extraction to quantitative detection and does not require complex operation and sample treatment. Additionally, the technique was applied to test real watermelon seed samples for A. citrulli , and the results were contrasted with those of real-time fluorescence quantitative PCR and conventional PCR. The high sensitivity and specificity have broad application prospects in the rapid detection of bacterial fruit blotch bacterial pathogens of watermelon. IMPORTANCE Bacterial fruit blotch, Acidovorax citrulli , is an important seed-borne bacterial disease of watermelon, melon, and other cucurbits. The lack of rapid, sensitive, and reliable pathogen detection methods has hampered research on fruit spot disease prevention and control. Here, we demonstrate the CRISPR/Cas12a system to analyze aspects of the specificity and sensitivity of A. citrulli and to test actual watermelon seed samples. The results showed that the CRISPR/Cas12a-based free-amplification method for detecting bacterial fruit blotch pathogens of watermelons was specific for A. citrulli target genes and 100-fold more sensitive than conventional PCR with quantitative real-time PCR. This method provides a new technical tool for the detection of A. citrulli .

Publisher

American Society for Microbiology

Subject

Infectious Diseases,Cell Biology,Microbiology (medical),Genetics,General Immunology and Microbiology,Ecology,Physiology

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