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杨梅树衰退病的流行改变了与植物和土壤相关的微生物组和代谢组。

The epidemic occurrence of decline disease in bayberry trees altered plant and soil related microbiome and metabolome.

作者信息

Ren Haiying, Huang Xuefang, Wang Zhenshuo, Abdallah Yasmine, Ayoade Solabomi Olaitan, Qi Xingjiang, Yu Zheping, Wang Qi, Mohany Mohamed, Al-Rejaie Salim S, Li Bin, Li Gang

机构信息

State Key Laboratory for Managing Biotic and Chemical Treats to the Quality and Safety of Agro-Products, Institute of Horticulture, Institute of Agro-Product Safety and Nutrition, Zhejiang Academy of Agricultural Sciences, Hangzhou, 310021, China.

State Key Laboratory of Rice Biology and Breeding, Ministry of Agriculture Key Laboratory of Molecular Biology of Crop Pathogens and Insects, Zhejiang Key Laboratory of Biology and Ecological Regulation of Crop Pathogens and Insects, Institute of Biotechnology, Zhejiang University, Hangzhou, 310058, China.

出版信息

Environ Microbiome. 2024 Oct 24;19(1):79. doi: 10.1186/s40793-024-00618-w.

Abstract

BACKGROUND

In China, decline disease with unknown etiology appeared as an epidemic among bayberry trees in the southern area of the Yangtze River. Furthermore, the use of beneficial microbes has been reported to be able to reduce the incidence of this disease, emphasizing the association of this disease with microorganisms. Therefore, it has become critical to uncover the microbiome's function and related metabolites in remodeling the immunity of bayberry trees under biotic or abiotic stresses.

RESULTS

The amplicon sequencing data revealed that decline disease significantly altered bacterial and fungal communities, and their metabolites in the four distinct niches, especially in the rhizosphere soils and roots. Furthermore, the microbial communities in the four niches correlated with the metabolites of the corresponding niches of bayberry plants, and the fungal and bacterial networks of healthy trees were shown to be more complex than those of diseased trees. In addition, the role of microbiome in the resistance of bayberry trees to the occurrence of decline disease was justified by the isolation, identification, and characterization of important microorganisms such as significantly enriched Bacillus ASV804, Pseudomonas ASV815 in healthy plants, and significantly enriched Stenotrophomonas ASV719 in diseased plants.

CONCLUSION

Overall, our study revealed that the occurrence of decline disease altered the microbiome and its metabolites in four ecological niches in particular rhizosphere soils and roots of bayberry, which provides new insight into the control of bayberry decline disease.

摘要

背景

在中国,病因不明的衰退病在长江以南地区的杨梅树上呈流行态势。此外,据报道有益微生物的使用能够降低这种疾病的发病率,这凸显了该疾病与微生物的关联。因此,揭示微生物组在生物或非生物胁迫下重塑杨梅树免疫力方面的功能及其相关代谢产物变得至关重要。

结果

扩增子测序数据显示,衰退病显著改变了四个不同生态位中的细菌和真菌群落及其代谢产物,尤其是在根际土壤和根系中。此外,四个生态位中的微生物群落与杨梅植株相应生态位的代谢产物相关,并且健康树的真菌和细菌网络比患病树的更为复杂。此外,通过对健康植株中显著富集的芽孢杆菌ASV804、假单胞菌ASV815以及患病植株中显著富集的嗜麦芽窄食单胞菌ASV719等重要微生物的分离、鉴定和表征,证明了微生物组在杨梅树对衰退病发生的抗性中的作用。

结论

总体而言,我们的研究表明,衰退病的发生改变了四个生态位特别是杨梅根际土壤和根系中的微生物组及其代谢产物,这为杨梅衰退病的防治提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd27/11515357/eb9faeff1a75/40793_2024_618_Fig1_HTML.jpg

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