Bio-organic fertilizers stimulate indigenous soil Pseudomonas populations to enhance plant disease suppression

Биоорганические удобрения стимулируют аборигенные почвенные популяции Pseudomonas, усиливая подавление болезней растений
Rong Li, George A. Kowalchuk, Stefan Geisen, Beibei Wang, Qirong Shen, Yunze Ruan, Shanshan Liu, Chengyuan Tao, Zongzhuan Shen, Wu Xiong
2020-09-22

Bacillus amyloliquefaciens W19Fusarium wiltbio-organic fertilizersdisease-suppressive soil microbiomeindigenous Pseudomonas
BACKGROUND: Plant diseases caused by fungal pathogen result in a substantial economic impact on the global food and fruit industry. Application of organic fertilizers supplemented with biocontrol microorganisms (i.e. bioorganic fertilizers) has been shown to improve resistance against plant pathogens at least in part due to impacts on the structure and function of the resident soil microbiome. However, it remains unclear whether such improvements are driven by the specific action of microbial inoculants, microbial populations naturally resident to the organic fertilizer or the physical-chemical properties of the compost substrate. The aim of this study was to seek the ecological mechanisms involved in the disease suppressive activity of bio-organic fertilizers. RESULTS: To disentangle the mechanism of bio-organic fertilizer action, we conducted an experiment tracking Fusarium wilt disease of banana and changes in soil microbial communities over three growth seasons in response to the following four treatments: bio-organic fertilizer (containing Bacillus amyloliquefaciens W19), organic fertilizer, sterilized organic fertilizer and sterilized organic fertilizer supplemented with B. amyloliquefaciens W19. We found that sterilized bioorganic fertilizer to which Bacillus was re-inoculated provided a similar degree of disease suppression as the non-sterilized bioorganic fertilizer across cropping seasons. We further observed that disease suppression in these treatments is linked to impacts on the resident soil microbial communities, specifically by leading to increases in specific Pseudomonas spp.. Observed correlations between Bacillus amendment and indigenous Pseudomonas spp. that might underlie pathogen suppression were further studied in laboratory and pot experiments. These studies revealed that specific bacterial taxa synergistically increase biofilm formation and likely acted as a plant-beneficial consortium against the pathogen. CONCLUSION: Together we demonstrate that the action of bioorganic fertilizer is a product of the biocontrol inoculum within the organic amendment and its impact on the resident soil microbiome. This knowledge should help in the design of more efficient biofertilizers designed to promote soil function. Video Abstract.
1
Disease suppression was associated with increases in specific indigenous soil Pseudomonas species rather than solely with the introduced Bacillus inoculant.
2
Laboratory and pot experiments showed that Bacillus and selected indigenous Pseudomonas taxa synergistically enhanced biofilm formation.
3
Re-inoculated sterilized bio-organic fertilizer suppressed banana Fusarium wilt as effectively as non-sterilized bio-organic fertilizer across three cropping seasons.
4
The findings identify stimulation of resident soil microbiota, particularly Pseudomonas populations, as an ecological mechanism of bio-organic fertilizer-mediated disease suppression.
5
The interacting bacterial taxa likely formed a plant-beneficial consortium that contributed to suppression of the Fusarium pathogen.

banana plants and their resident soil microbial communities treated with bio-organic fertilizers under Fusarium wilt pressure

ecological mechanisms of disease suppression, specifically the stimulation of indigenous Pseudomonas populations and their synergistic biofilm-forming activity following Bacillus amyloliquefaciens amendment

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2020-09-22
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Rong Li
George A. Kowalchuk
Stefan Geisen
Beibei Wang
Qirong Shen
Yunze Ruan
Shanshan Liu
Chengyuan Tao
Zongzhuan Shen
Wu Xiong
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