How Peroxisomes Affect Aflatoxin Biosynthesis in Aspergillus Flavus

被引:65
|
作者
Reverberi, Massimo [1 ]
Punelli, Marta [1 ]
Smith, Carrie A. [2 ]
Zjalic, Slaven [3 ]
Scarpari, Marzia [1 ]
Scala, Valeria [1 ]
Cardinali, Giorgia [4 ]
Aspite, Nicaela [4 ]
Pinzari, Flavia [5 ]
Payne, Gary A. [6 ]
Fabbri, Anna A. [1 ]
Fanelli, Corrado [1 ]
机构
[1] Univ Roma La Sapienza, Dipartimento Biol Ambientale, Rome, Italy
[2] Oklahoma State Univ, Oklahoma City, OK USA
[3] Univ Zadar, Dept Ecol Agron & Aquaculture, Zadar, Croatia
[4] IFO S Gallicano, Rome, Italy
[5] Minist Beni Culturali, IRCPAL, Rome, Italy
[6] N Carolina State Univ, Raleigh, NC 27695 USA
来源
PLOS ONE | 2012年 / 7卷 / 10期
关键词
OXIDATIVE STRESS; SACCHAROMYCES-CEREVISIAE; BETA-OXIDATION; MYCOTOXIN PRODUCTION; PARASITICUS; PROTEIN; ACID; METABOLISM; FUNGI; LIPOPEROXIDATION;
D O I
10.1371/journal.pone.0048097
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
In filamentous fungi, peroxisomes are crucial for the primary metabolism and play a pivotal role in the formation of some secondary metabolites. Further, peroxisomes are important site for fatty acids beta-oxidation, the formation of reactive oxygen species and for their scavenging through a complex of antioxidant activities. Oxidative stress is involved in different metabolic events in all organisms and it occurs during oxidative processes within the cell, including peroxisomal beta-oxidation of fatty acids. In Aspergillus flavus, an unbalance towards an hyper-oxidant status into the cell is a prerequisite for the onset of aflatoxin biosynthesis. In our preliminary results, the use of bezafibrate, inducer of both peroxisomal beta-oxidation and peroxisome proliferation in mammals, significantly enhanced the expression of pex11 and foxA and stimulated aflatoxin synthesis in A. flavus. This suggests the existence of a correlation among peroxisome proliferation, fatty acids beta-oxidation and aflatoxin biosynthesis. To investigate this correlation, A. flavus was transformed with a vector containing P33, a gene from Cymbidium ringspot virus able to induce peroxisome proliferation, under the control of the promoter of the Cu, Zn-sod gene of A. flavus. This transcriptional control closely relates the onset of the antioxidant response to ROS increase, with the proliferation of peroxisomes in A. flavus. The AfP33 transformant strain show an up-regulation of lipid metabolism and an higher content of both intracellular ROS and some oxylipins. The combined presence of a higher amount of substrates (fatty acids-derived), an hyper-oxidant cell environment and of hormone-like signals (oxylipins) enhances the synthesis of aflatoxins in the AfP33 strain. The results obtained demonstrated a close link between peroxisome metabolism and aflatoxin synthesis.
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页数:15
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