赤眼蜂
真菌毒素
单加氧酶
镰刀菌
加氧酶
生物
生物合成
乙酰化
生物化学
基因
微生物学
细胞色素P450
酶
遗传学
植物
作者
Susan P. McCormick,Nancy J. Alexander,Robert H. Proctor
出处
期刊:Canadian Journal of Microbiology
[Canadian Science Publishing]
日期:2006-07-01
卷期号:52 (7): 636-642
被引量:64
摘要
Fusarium graminearum and Fusarium sporotrichioides produce the trichothecene mycotoxins 15-acetyldeoxynivalenol and T-2 toxin, respectively. In both species, disruption of the P450 monooxygenase-encoding gene, Tri4, blocks production of the mycotoxins and leads to the accumulation of the trichothecene precursor trichodiene. To further characterize its function, the F. graminearum Tri4 (FgTri4) was heterologously expressed in the trichothecene-nonproducing species Fusarium verticillioides. Transgenic F. verticillioides carrying the FgTri4 converted exogenous trichodiene to the trichothecene biosynthetic intermediates isotrichodermin and trichothecene. Conversion of trichodiene to isotrichodermin requires seven biochemical steps. The fifth and sixth steps can occur nonenzymatically. Precursor feeding studies done in the current study indicate that wild-type F. verticillioides has the enzymatic activity necessary to carry out the seventh step, the C-3 acetylation of isotrichodermol to form isotrichodermin. Together, the results of this study indicate that the Tri4 protein catalyzes the remaining four steps and is therefore a multifunctional monooxygenase required for trichothecene biosynthesis.Key words: trichothecene, P450 oxygenase, trichodiene, Tri101, Tri4, multifunctional oxygenase, monooxygenase.
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