Large-Scale Transposon Mutagenesis Reveals Type III Secretion Effector HopR1 Is a Major Virulence Factor in Pseudomonas syringae pv. actinidiae

被引:4
|
作者
Ishiga, Takako [1 ]
Sakata, Nanami [1 ]
Usuki, Giyu [1 ]
Nguyen, Viet Tru [1 ,2 ]
Gomi, Kenji [3 ]
Ishiga, Yasuhiro [1 ]
机构
[1] Univ Tsukuba, Fac Life & Environm Sci, 1-1-1 Tennodai, Tsukuba, Ibaraki 3058572, Japan
[2] Western Highlands Agr & Forestry Sci Inst, 53 Nguyen Luong Bang St, Buon Ma Thuot City 630000, Vietnam
[3] Kagawa Univ, Fac Agr, Miki, Kagawa 7610795, Japan
来源
PLANTS-BASEL | 2023年 / 12卷 / 01期
基金
日本科学技术振兴机构; 日本学术振兴会;
关键词
Pseudomonas syringae pv; actinidiae; bacterial canker of kiwifruit canker; type three secretion system; stomatal-based defense; HopR1; INNATE IMMUNITY; TOMATO DC3000; PLANT STOMATA; IDENTIFICATION; DEFENSE; PATHOGENICITY; TRANSLOCATION; RESISTANCE; BACTERIA; STRAINS;
D O I
10.3390/plants12010141
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Bacterial canker of kiwifruit caused by Pseudomonas syringae pv. actinidiae (Psa) is a serious threat to kiwifruit production worldwide. Four biovars (Psa biovar 1; Psa1, Psa biovar 3; Psa3, Psa biovar 5; Psa5, and Psa biovar 6; Psa6) were reported in Japan, and virulent Psa3 strains spread rapidly to kiwifruit production areas worldwide. Therefore, there is an urgent need to develop critical management strategies for bacterial canker based on dissecting the dynamic interactions between Psa and kiwifruit. To investigate the molecular mechanism of Psa3 infection, we developed a rapid and reliable high-throughput flood-inoculation method using kiwifruit seedlings. Using this inoculation method, we screened 3000 Psa3 transposon insertion mutants and identified 91 reduced virulence mutants and characterized the transposon insertion sites in these mutants. We identified seven type III secretion system mutants, and four type III secretion effectors mutants including hopR1. Mature kiwifruit leaves spray-inoculated with the hopR1 mutant showed significantly reduced virulence compared to Psa3 wild-type, indicating that HopR1 has a critical role in Psa3 virulence. Deletion mutants of hopR1 in Psa1, Psa3, Psa5, and Psa6 revealed that the type III secretion effector HopR1 is a major virulence factor in these biovars. Moreover, hopR1 mutants of Psa3 failed to reopen stomata on kiwifruit leaves, suggesting that HopR1 facilitates Psa entry through stomata into plants. Furthermore, defense related genes were highly expressed in kiwifruit plants inoculated with hopR1 mutant compared to Psa wild-type, indicating that HopR1 suppresses defense-related genes of kiwifruit. These results suggest that HopR1 universally contributes to virulence in all Psa biovars by overcoming not only stomatal-based defense, but also apoplastic defense.
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页数:21
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