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Identification and Characterization of Carboxylesterases from Brachypodium distachyon Deacetylating Trichothecene Mycotoxins

机译:短枝曲霉脱乙酰化单端孢霉菌真菌毒素的羧基酯酶的鉴定和表征

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摘要

Increasing frequencies of 3-acetyl-deoxynivalenol (3-ADON)-producing strains of Fusarium graminearum (3-ADON chemotype) have been reported in North America and Asia. 3-ADON is nearly nontoxic at the level of the ribosomal target and has to be deacetylated to cause inhibition of protein biosynthesis. Plant cells can efficiently remove the acetyl groups of 3-ADON, but the underlying genes are yet unknown. We therefore performed a study of the family of candidate carboxylesterases (CXE) genes of the monocot model plant Brachypodium distachyon. We report the identification and characterization of the first plant enzymes responsible for deacetylation of trichothecene toxins. The product of the BdCXE29 gene efficiently deacetylates T-2 toxin to HT-2 toxin, NX-2 to NX-3, both 3-ADON and 15-acetyl-deoxynivalenol (15-ADON) into deoxynivalenol and, to a lesser degree, also fusarenon X into nivalenol. The BdCXE52 esterase showed lower activity than BdCXE29 when expressed in yeast and accepts 3-ADON, NX-2, 15-ADON and, to a limited extent, fusarenon X as substrates. Expression of these Brachypodium genes in yeast increases the toxicity of 3-ADON, suggesting that highly similar genes existing in crop plants may act as susceptibility factors in Fusarium head blight disease.
机译:在北美和亚洲,已经报道了产生3-乙酰基-脱氧雪腐酚(3-ADON)的禾谷镰孢(3-ADON化学型)菌株的频率增加。 3-ADON在核糖体靶标水平上几乎是无毒的,必须脱乙酰基以抑制蛋白质的生物合成。植物细胞可以有效去除3-ADON的乙酰基,但其潜在基因尚不清楚。因此,我们进行了单子叶植物模型植物Brachypodium distachyon的候选羧酸酯酶(CXE)基因家族的研究。我们报告鉴定和表征的第一植物酶负责脱三苯并菲毒素的脱乙酰作用。 BdCXE29基因的产物可有效地将T-2毒素脱乙酰为HT-2毒素,将NX-2脱乙酰为NX-3,将3-ADON和15-乙酰基-脱氧雪茄烯醇(15-ADON)脱氧为脱氧雪茄烯醇,但程度较小,也可以将富沙隆X转化为新戊烯醇。当在酵母中表达时,BdCXE52酯酶显示出比BdCXE29更低的活性,并接受3-ADON,NX-2、15-ADON,并在一定程度上接受富沙隆X作为底物。这些曲霉菌基因在酵母中的表达增加了3-ADON的毒性,这表明存在于农作物中的高度相似的基因可能是镰刀菌枯萎病中的易感因素。

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