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Cyclic Lipopeptides Iturin and Fengycin Control Rice Blast Caused by in Potting and Acid Sulfate Soils by Direct Antagonism and Induced Systemic Resistance. | LitMetric

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Article Abstract

Rice monoculture in acid sulfate soils (ASSs) is affected by a wide range of abiotic and biotic constraints, including rice blast caused by To progress towards a more sustainable agriculture, our research aimed to screen the biocontrol potential of indigenous spp. against blast disease by triggering induced systemic resistance (ISR) via root application and direct antagonism. Strains belonging to the and group could protect rice against blast disease by ISR. UPLC-MS and marker gene replacement methods were used to detect cyclic lipopeptide (CLiP) production and construct CLiPs deficient mutants of , respectively. Here we show that the CLiPs fengycin and iturin are both needed to elicit ISR against rice blast in potting soil and ASS conditions. The CLiPs surfactin, iturin and fengycin completely suppressed spore germination resulting in disease severity reduction when co-applied on rice leaves. In vitro microscopic assays revealed that iturin and fengycin inhibited the mycelial growth of the fungus , while surfactin had no effect. The capacity of indigenous spp. to reduce rice blast by direct and indirect antagonism in ASS conditions provides an opportunity to explore their usage for rice blast control in the field.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8305041PMC
http://dx.doi.org/10.3390/microorganisms9071441DOI Listing

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