In some filamentous fungi, the pathways related to the oxidative stress and oxylipins production are involved both in the process of host-recognition and in the pathogenic phase. In fact, recent studies have shown that the production of oxylipins in filamentous fungi, yeasts and chromists is also related to the development of the organism itself and to mechanisms of communication with the host at the cellular level. The oxylipins, also produced by the host during defense reactions, are able to induce sporulation and to regulate the biosynthesis of mycotoxins in several pathogenic fungi. In A. flavus, the oxylipins play a crucial role as signals for regulating the biosynthesis of aflatoxins, the conidiogenesis and the formation of sclerotia. To investigate the involvement of an oxylipins based cross-talk into Z. mays and A. flavus interaction, we analyzed the oxylipins profile of the wild type strain and of three mutants of A. flavus that are deleted at the Afloxl gene level also during maize kernel invasion. A lipidomic approach has been addressed through the use of LC-ToF-MS, followed by a statistical analysis of the principal components (PCA). The results showed the existence of a difference between the oxylipins profile generated by the NT and the mutants onto challenged maize. In relation to this, aflatoxin synthesis which is largely hampered in vitro, is intriguingly restored. These results highlight the important role of maize oxylipin in driving secondary metabolism in A. flavus.

Lipids in Aspergillus flavus-maize interaction / Scarpari, Marzia; Marta, Punelli; Scala, Valeria; Zaccaria, Marco; Chiara, Nobili; Ludovici, Matteo; Fabbri, Anna Adele; Reverberi, Massimo; Fanelli, Corrado. - In: FRONTIERS IN MICROBIOLOGY. - ISSN 1664-302X. - ELETTRONICO. - 5:27 February 2014(2014), pp. 1-9. [10.3389/fmicb.2014.00074]

Lipids in Aspergillus flavus-maize interaction

SCARPARI, MARZIA;SCALA, VALERIA;ZACCARIA, MARCO;LUDOVICI, MATTEO;FABBRI, Anna Adele;REVERBERI, Massimo;FANELLI, Corrado
2014

Abstract

In some filamentous fungi, the pathways related to the oxidative stress and oxylipins production are involved both in the process of host-recognition and in the pathogenic phase. In fact, recent studies have shown that the production of oxylipins in filamentous fungi, yeasts and chromists is also related to the development of the organism itself and to mechanisms of communication with the host at the cellular level. The oxylipins, also produced by the host during defense reactions, are able to induce sporulation and to regulate the biosynthesis of mycotoxins in several pathogenic fungi. In A. flavus, the oxylipins play a crucial role as signals for regulating the biosynthesis of aflatoxins, the conidiogenesis and the formation of sclerotia. To investigate the involvement of an oxylipins based cross-talk into Z. mays and A. flavus interaction, we analyzed the oxylipins profile of the wild type strain and of three mutants of A. flavus that are deleted at the Afloxl gene level also during maize kernel invasion. A lipidomic approach has been addressed through the use of LC-ToF-MS, followed by a statistical analysis of the principal components (PCA). The results showed the existence of a difference between the oxylipins profile generated by the NT and the mutants onto challenged maize. In relation to this, aflatoxin synthesis which is largely hampered in vitro, is intriguingly restored. These results highlight the important role of maize oxylipin in driving secondary metabolism in A. flavus.
2014
lipidomic; reverse genetic; maize kernels; lipoxygenase; aflatoxins
01 Pubblicazione su rivista::01a Articolo in rivista
Lipids in Aspergillus flavus-maize interaction / Scarpari, Marzia; Marta, Punelli; Scala, Valeria; Zaccaria, Marco; Chiara, Nobili; Ludovici, Matteo; Fabbri, Anna Adele; Reverberi, Massimo; Fanelli, Corrado. - In: FRONTIERS IN MICROBIOLOGY. - ISSN 1664-302X. - ELETTRONICO. - 5:27 February 2014(2014), pp. 1-9. [10.3389/fmicb.2014.00074]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/543087
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