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PMID: 27936512 已发表 · aheadofprint 英语

Genome editing of the disease susceptibility gene CsLOB1 in citrus confers resistance to citrus canker.

Jia Hongge, Zhang Yunzen, Orbovic Vladimir, Xu Jin, White Frank, Jones Jeffrey, Wang Nian

摘要

Citrus is a highly valued tree crop worldwide, while, at the same time, citrus production faces many biotic challenges, including bacterial canker and Huanglongbing (HLB). Breeding for disease resistant varieties is the most efficient and sustainable approach to control plant diseases. Traditional breeding of citrus varieties is challenging due to multiple limitations, including polyploidy, polyembryony, extended juvenility, and long crossing cycles. Targeted genome editing technology has the potential to shorten varietal development for some traits, including disease resistance. Here, we used CRISPR/Cas9/sgRNA technology to modify the canker susceptibility gene CsLOB1 in Duncan grapefruit. Six independent lines, D 2, D 3, D 9, D 10, D 11 and D 12, were generated. Targeted next-generation sequencing of the six lines showed the mutation rate was 31.58%, 23.80%, 89.36%, 88.79%, 46.91% and 51.12% for D 2, D 3, D 9, D 10, D 11, and D 12, respectively, of the cells in each line. D 2 and D 3 showed canker symptoms similar to wild type grapefruit, when inoculated with the pathogen Xanthomonas citri subsp. citri (Xcc). No canker symptoms were observed on D 9, D 10, D 11 and D 12 at 4 days post inoculation (DPI) with Xcc. Pustules caused by Xcc were observed on D 9, D 10, D 11 and D 12 in later stages, which were much reduced compared to that on wild type grapefruit. The pustules on D 9 and D 10 did not develop into typical canker symptoms. No side effects and off-target mutations were detected in the mutated plants. This study indicates that genome editing using CRISPR technology will provide a promising pathway to generate disease resistant citrus varieties. This article is protected by copyright. All rights reserved.

关键词
Citrus paradisi Xanthomonas citri Cas9 SgRNA
文献信息
期刊
Plant biotechnology journal
期刊简称
Plant Biotechnol J
发表日期
0000-00-00
收录日期
2016-12-09
更新日期
2016-12-10
语言
英语
国家/地区
England
NLM ID
101201889
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