Deletion of the bcnrps1 gene increases the pathogenicity of botrytis cinerea and reduces its tolerance to the exogenous toxic substances spermidine and pyrimethanil

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Abstract

During the infection of grapevine (Vitis vinifera) by the fungus Botrytis cinerea, the concentration of polyamines, which are toxic substances for the phytopathogen, increases in the grape. Nine NRPS genes have been identified in the genome of B. cinerea, yet the function of five of them remains unknown. For this reason, we have studied the expression of the 9 NRPS genes by RT-qPCR in a medium supplemented with sublethal concentrations of three polyamines (1,3-diaminopropane (1,3-DAP), spermidine (SPD), and spermine (SPM)). Our results show that the presence of polyamines in the culture medium triggered the overexpression of the Bcnrps1 gene in the pathogen. Deleting Bcn-rps1 did not affect mycelial growth or adaptation to osmotic stress, and we show that its expression is not essential for the cycle of infection of the B. cinerea. However, mutating the Bcnrps1 gene resulted in overexpression of the Bcnrps6 gene, which encodes for the excretion of siderophores of the coprogen family. Moreover, gene deletion has reduced the tolerance of B. cinerea B05.10 to toxic substances such as the polyamine SPD and the fungicide pyrimethanil, and its virulence has increased. Our findings provide new insights into the function of the Bcnrps1 gene and its involvement in the tolerance of B. cinerea against exogenous toxic compounds.

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Fernández-Morales, A., Carbú, M., González-Rodríguez, V. E., Papaspyrou, S., Garrido, C., & Cantoral, J. M. (2021). Deletion of the bcnrps1 gene increases the pathogenicity of botrytis cinerea and reduces its tolerance to the exogenous toxic substances spermidine and pyrimethanil. Journal of Fungi, 7(9). https://doi.org/10.3390/jof7090721

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