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铜绿假单胞菌 LBUM300 产生的 DAPG 和 HCN 有助于防治番茄细菌性溃疡病。

Production of DAPG and HCN by Pseudomonas sp. LBUM300 contributes to the biological control of bacterial canker of tomato.

机构信息

Universite de Moncton, Department of Biology, Moncton, Canada.

出版信息

Phytopathology. 2012 Oct;102(10):967-73. doi: 10.1094/PHYTO-11-11-0312.

Abstract

Bacterial canker caused by Clavibacter michiganensis subsp. michiganensis is known to cause significant economic losses to tomato production worldwide. Biological control has been proposed as an alternative to current chemical containment methods, which are often inefficient and may leave adverse effects on the environment. However, only little headway has so far been made in developing biocontrol strategies against C. michiganensis subsp. michiganensis. To address this knowledge gap, we investigated the antagonistic capacity of PCA, produced by Pseudomonas sp. LBUM223, and DAPG and HCN, both produced by Pseudomonas sp. LBUM300, on C. michiganensis subsp. michiganensis under in vitro and in planta conditions. Nonsynthesizing isogenic mutants of the producer strains were also developed to further dissect the role of each individual metabolite on C. michiganensis subsp. michiganensis biological control. Novel specific quantitative polymerase chain reaction TaqMan assays allowed quantification of C. michiganensis subsp. michiganensis in tomato plants and rhizospheric soil. Pseudomonas spp. LBUM223 and LBUM300 significantly repressed C. michiganensis subsp. michiganensis growth in vitro, while their respective nonproducing mutants showed less or no significant antagonistic activity. In planta, only Pseudomonas sp. LBUM300 was capable of significantly reducing disease development and C. michiganensis subsp. michiganensis rhizospheric population, suggesting that the production of both DAPG and HCN was involved. In summary, simultaneous DAPG/HCN production by Pseudomonas sp. LBUM300 shows great potential for controlling bacterial canker of tomato.

摘要

由密歇根棒杆菌亚种引起的细菌性溃疡病已知会对全球番茄生产造成重大经济损失。生物防治已被提议作为当前化学防治方法的替代方法,这些方法通常效率低下,并且可能对环境产生不利影响。然而,迄今为止,在开发针对密歇根棒杆菌亚种的生物防治策略方面进展甚微。为了解决这一知识差距,我们研究了由 Pseudomonas sp. LBUM223 产生的 PCA 和由 Pseudomonas sp. LBUM300 产生的 DAPG 和 HCN 对密歇根棒杆菌亚种在体外和体内条件下的拮抗能力。还开发了非合成的同源突变体,以进一步剖析每种代谢物对密歇根棒杆菌亚种生物防治的作用。新的特异性定量聚合酶链反应 TaqMan 检测允许定量检测番茄植物和根际土壤中的密歇根棒杆菌亚种。Pseudomonas spp. LBUM223 和 LBUM300 在体外显著抑制了密歇根棒杆菌亚种的生长,而它们各自的非产生突变体显示出较少或没有显著的拮抗活性。在体内,只有 Pseudomonas sp. LBUM300 能够显著降低疾病的发展和密歇根棒杆菌亚种的根际种群,这表明 DAPG 和 HCN 的产生都参与其中。总之,Pseudomonas sp. LBUM300 同时产生 DAPG/HCN 显示出控制番茄细菌性溃疡病的巨大潜力。

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