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Concordant evolution of trichothecene 3-O-acetyltransferase and an rDNA species phylogeny of trichothecene-producing and non-producing fusaria and other ascomycetous fungi

机译:Trichothecene 3-O-乙酰转移酶的齐笑演变和三英癸烯的rDNA物种的产量和非生产的Fusaria和其他逐渐染色的真菌

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The cereal pathogen Fusarium graminearum species complex (e.g. Fusarium asiaticum, previously referred to as F. graminearum lineage 6) produces the mycotoxin trichothecene in infected grains. The fungus has a gene for self-defence, Tri101, which is responsible for 3-O-acetylation of the trichothecene skeleton in the biosynthetic pathway. Recently, trichothecene non-producers Fusarium oxysporum and Fusarium fujikuroi (teleomorph Gibberella fujikuroi) were shown to have both functional (Tri201) and non-functional (pseudo-Tri101) trichothecene 3-O-acetyltransferase genes in their genome. To gain insight into the evolution of the trichothecene genes in Gibberella species, the authors examined whether or not other (pseudo-)biosynthesis-related genes are found near Tri201. However, sequence analysis of a 12?kb region containing Tri201 did not result in identification of additional trichothecene (pseudo-)genes in F. oxysporum. In a further attempt to find other trichothecene (pseudo-)genes from the non-producer, the authors examined whether or not the non-trichothecene genes flanking the ends of the core trichothecene gene cluster (i.e. the Tri5 cluster) comprise a region of synteny in Gibberella species. However, it was not possible to isolate trichothecene (pseudo-)genes from F. oxysporum (in addition to the previously identified pseudo-Tri101), because synteny was not observed for this region in F. asiaticum and F. oxysporum. In contrast to this unsuccessful identification of additional trichothecene (pseudo-)genes in the non-producer, a functional trichothecene 3-O-acetyltransferase gene could be identified in fusaria other than Gibberella: Fusarium decemcellulare and Fusarium solani; and in an ascomycete from a different fungal genus, Magnaporthe grisea. Together with the recent functional identification of Saccharomyces cerevisiae ScAYT1, these results are suggestive of a different evolutionary origin for the trichothecene 3-O-acetyltransferase gene from other biosynthesis pathway genes. The phylogeny of the 3-O-acetyltransferase was mostly concordant with the rDNA species phylogeny of these ascomycetous fungi.
机译:谷物病原体纤维素素克柳属物种复合物(例如,镰刀菌,以前称为F. Graminearum谱系6)在感染颗粒中产生霉菌毒素Trichothecene。真菌具有用于自卫的基因,TRI101,其负责生物合成途径中的三英骨膜骨架的3-O-乙酰化。最近,Trichothecene非生产者镰刀菌镰刀菌和富血管素富舒氏素(紫外线富士菌),其在其基因组中具有官能(三氯联苯吉伯拉富氏菌),其函数(三氯联苯吉布洛)和非官能(假三101)三甲骨烯3-O-乙酰转移酶基因。为了深入了解吉伯拉物种中三胞内烯基因的演变,作者检查了其他(假)生物合成相关基因是否在Tri201附近找到。然而,含有Tri201的12 kB区域的序列分析未导致氧血管孢子中的额外三胞硫二烯(假素基因。在进一步尝试从非生产者那里找到其他三胞内癸烯(伪)基因,作者检查了侧翼核心三胞烯基因簇的末端的非三胞胞烯基因(即TRI5簇)是否包含联想区域在吉伯拉物种中。然而,不可能将来自F. oxysporum的三胞核(伪)基因分离出(除了先前鉴定的伪TRI101),因为在F.Siaticum和F. oxysporum的该区域未观察到同培。与非生产者中额外的三胞(假素基因的鉴定不成功的鉴定相反,可以在吉伯拉菌以外的Fusaria中鉴定官能的三噻吩3-O-乙酰转移酶基因:Fusarium Decemcellare和Fusarium solani;在来自不同真菌属的Ascomycete,Magnaporthe Grisea。与最近的酿酒酵母ScAryt1的功能鉴定一起,这些结果旨在提示来自其他生物合成途径基因的Trichothecene 3-O-乙酰转移酶基因的不同进化渊源。 3-O-乙酰转移酶的系统发育主要是与这些截止的真菌的RDNA物种的合一。

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