Trophic interactions between predatory protists and pathogen-suppressive bacteria impact plant health

Publication date

2022-08

Authors

Guo, Sai
Tao, Chengyuan
Jousset, A.L.C.ISNI 000000007108154X
Xiong, WuISNI 000000049296050X
Wang, Zhe
Shen, Zongzhuan
Wang, Beibei
Xu, Zhihui
Gao, ZhileiISNI 0000000521585949
Liu, Shanshan

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

taverne

Abstract

Plant health is strongly impacted by beneficial and pathogenic plant microbes, which are themselves structured by resource inputs. Organic fertilizer inputs may thus offer a means of steering soil-borne microbes, thereby affecting plant health. Concurrently, soil microbes are subject to top-down control by predators, particularly protists. However, little is known regarding the impact of microbiome predators on plant health-influencing microbes and the interactive links to plant health. Here, we aimed to decipher the importance of predator-prey interactions in influencing plant health. To achieve this goal, we investigated soil and root-associated microbiomes (bacteria, fungi and protists) over nine years of banana planting under conventional and organic fertilization regimes differing in Fusarium wilt disease incidence. We found that the reduced disease incidence and improved yield associated with organic fertilization could be best explained by higher abundances of protists and pathogen-suppressive bacteria (e.g. Bacillus spp.). The pathogen-suppressive actions of predatory protists and Bacillus spp. were mainly determined by their interactions that increased the relative abundance of secondary metabolite Q genes (e.g. nonribosomal peptide synthetase gene) within the microbiome. In a subsequent microcosm assay, we tested the interactions between predatory protists and pathogen-suppressive Bacillus spp. that showed strong improvements in plant defense. Our study shows how protistan predators stimulate disease-suppressive bacteria in the plant microbiome, ultimately enhancing plant health and yield. Thus, we suggest a new biological model useful for improving sustainable agricultural practices that is based on complex interactions between different domains of life.

Keywords

Amyloliquefaciens njn-6, Bacillus-subtilis, Biofertilizer application, Biofilm formation, Bioorganic fertilizer, Fusarium-wilt, Rhizosphere microbiome, Ribosomal-rna sequences, Secondary metabolites, Soil microbial biomass, Taverne, Ecology, Evolution, Behavior and Systematics, Microbiology, SDG 2 - Zero Hunger

Citation

Guo, S, Tao, C, Jousset, A, Xiong, W, Wang, Z, Shen, Z, Wang, B, Xu, Z, Gao, Z, Liu, S, Li, R, Ruan, Y, Shen, Q, Kowalchuk, G A & Geisen, S 2022, 'Trophic interactions between predatory protists and pathogen-suppressive bacteria impact plant health', ISME Journal, vol. 16, no. 8, pp. 1932-1943. https://doi.org/10.1038/s41396-022-01244-5