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根际微生物群落结构发生改变,使番茄具备抗枯萎病能力。

Rhizosphere microbiome structure alters to enable wilt resistance in tomato.

作者信息

Kwak Min-Jung, Kong Hyun Gi, Choi Kihyuck, Kwon Soon-Kyeong, Song Ju Yeon, Lee Jidam, Lee Pyeong An, Choi Soo Yeon, Seo Minseok, Lee Hyoung Ju, Jung Eun Joo, Park Hyein, Roy Nazish, Kim Heebal, Lee Myeong Min, Rubin Edward M, Lee Seon-Woo, Kim Jihyun F

机构信息

Department of Systems Biology, Division of Life Sciences, and Institute for Life Science and Biotechnology, Yonsei University, Seoul, Republic of Korea.

Department of Applied Biology, Dong-A University, Busan, Republic of Korea.

出版信息

Nat Biotechnol. 2018 Oct 8. doi: 10.1038/nbt.4232.

Abstract

Tomato variety Hawaii 7996 is resistant to the soil-borne pathogen Ralstonia solanacearum, whereas the Moneymaker variety is susceptible to the pathogen. To evaluate whether plant-associated microorganisms have a role in disease resistance, we analyzed the rhizosphere microbiomes of both varieties in a mesocosm experiment. Microbiome structures differed between the two cultivars. Transplantation of rhizosphere microbiota from resistant plants suppressed disease symptoms in susceptible plants. Comparative analyses of rhizosphere metagenomes from resistant and susceptible plants enabled the identification and assembly of a flavobacterial genome that was far more abundant in the resistant plant rhizosphere microbiome than in that of the susceptible plant. We cultivated this flavobacterium, named TRM1, and found that it could suppress R. solanacearum-disease development in a susceptible plant in pot experiments. Our findings reveal a role for native microbiota in protecting plants from microbial pathogens, and our approach charts a path toward the development of probiotics to ameliorate plant diseases.

摘要

番茄品种夏威夷7996对土传病原菌青枯雷尔氏菌具有抗性,而“钱德勒”品种则对该病原菌敏感。为了评估与植物相关的微生物在抗病性中是否起作用,我们在一个中宇宙实验中分析了这两个品种的根际微生物群。两个品种的微生物群结构不同。将抗性植物的根际微生物群移植到敏感植物中可减轻病害症状。通过对抗性和敏感植物根际宏基因组的比较分析,我们鉴定并组装出一个黄杆菌基因组,该基因组在抗性植物根际微生物群中的丰度远高于敏感植物。我们培养了这种黄杆菌,命名为TRM1,并发现它在盆栽实验中可以抑制敏感植物中青枯雷尔氏菌病害的发展。我们的研究结果揭示了原生微生物群在保护植物免受微生物病原体侵害方面的作用,我们的方法为开发改善植物病害的益生菌指明了道路。

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