BackgroundPlant 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-o...
Bio-organic fertilizers (BOFs) combine functional microbes with a suitable substrate and have been s...
<div><p>Bio-organic fertilizers (BOFs) combine functional microbes with a suitable substrate and hav...
<div><p>Tomato bacterial wilt caused by <i>Ralstonia solanacearum</i> is one of the most destructive...
Plant diseases caused by fungal pathogen result in a substantial economic impact on the global food ...
Fusarium wilt disease is a growing problem in agriculture systems. Application of bio-fertilizers co...
Our previous work demonstrated that application of a bio-organic fertilizer (BIO) to a banana mono-c...
Plant health is strongly impacted by beneficial and pathogenic plant microbes, which are themselves ...
peer reviewedSoil-borne diseases have become increasingly problematic for farmers producing crops in...
Fusarium wilt is one of the main diseases of cucumber, and bio-organic fertilizer has been used to c...
Stimulating the development of soil suppressiveness against certain pathogens represents a sustainab...
Harnessing disease-suppressive microbiomes constitutes a promising strategy for optimizing plant gro...
Host-associated fungi can help protect plants from pathogens, and empirical evidence suggest that su...
Abstract Fusarium wilt is a devastating disease which impacts watermelon production. Soil fumigation...
Banana Fusarium wilt-suppressive soils are effective against pathogen invasion, yet soil physicochem...
Tomato bacterial wilt caused by Ralstonia solanacearum is one of the most destructive soil-borne dis...
Bio-organic fertilizers (BOFs) combine functional microbes with a suitable substrate and have been s...
<div><p>Bio-organic fertilizers (BOFs) combine functional microbes with a suitable substrate and hav...
<div><p>Tomato bacterial wilt caused by <i>Ralstonia solanacearum</i> is one of the most destructive...
Plant diseases caused by fungal pathogen result in a substantial economic impact on the global food ...
Fusarium wilt disease is a growing problem in agriculture systems. Application of bio-fertilizers co...
Our previous work demonstrated that application of a bio-organic fertilizer (BIO) to a banana mono-c...
Plant health is strongly impacted by beneficial and pathogenic plant microbes, which are themselves ...
peer reviewedSoil-borne diseases have become increasingly problematic for farmers producing crops in...
Fusarium wilt is one of the main diseases of cucumber, and bio-organic fertilizer has been used to c...
Stimulating the development of soil suppressiveness against certain pathogens represents a sustainab...
Harnessing disease-suppressive microbiomes constitutes a promising strategy for optimizing plant gro...
Host-associated fungi can help protect plants from pathogens, and empirical evidence suggest that su...
Abstract Fusarium wilt is a devastating disease which impacts watermelon production. Soil fumigation...
Banana Fusarium wilt-suppressive soils are effective against pathogen invasion, yet soil physicochem...
Tomato bacterial wilt caused by Ralstonia solanacearum is one of the most destructive soil-borne dis...
Bio-organic fertilizers (BOFs) combine functional microbes with a suitable substrate and have been s...
<div><p>Bio-organic fertilizers (BOFs) combine functional microbes with a suitable substrate and hav...
<div><p>Tomato bacterial wilt caused by <i>Ralstonia solanacearum</i> is one of the most destructive...