Alexander Nancy J, McCormick Susan P, Larson Troy M, Jurgenson James E
Mycotoxin Research Unit, USDA/ARS, National Center for Agricultural Utilization Research, 1815 N. University St., Peoria, IL 61604, USA.
Curr Genet. 2004 Mar;45(3):157-62. doi: 10.1007/s00294-003-0467-3. Epub 2003 Nov 18.
In the fungus Fusarium sporotrichioides, biosynthesis of trichothecene mycotoxins requires at least three genetic loci: a core 12-gene cluster, a smaller two-gene cluster, and a single-gene locus. Here, we describe the Tri15 gene, which represents a fourth locus involved in trichothecene biosynthesis. Tri15 is predicted to encode a Cys(2)-His(2 )zinc finger protein and is expressed in a manner similar to genes in the core trichothecene gene cluster. However, disruption of F. sporotrichioides Tri15 does not affect production of T-2 toxin, the major trichothecene produced by this fungus. This result suggests that Tri15 is not necessary for the production of toxin. Cultures with exogenously added T-2 toxin have high levels of Tri15 expression and no detectable expression of the trichothecene biosynthetic genes Tri5 and Tri6. The expression analysis is consistent with Tri15 being a negative regulator of at least some of the trichothecene biosynthetic genes. In F. graminearum, Tri15 has been mapped to linkage group 2 and is therefore unlinked to the main trichothecene biosynthetic gene cluster.
在拟枝孢镰刀菌中,单端孢霉烯族毒素的生物合成至少需要三个基因位点:一个由12个基因组成的核心基因簇、一个较小的由两个基因组成的基因簇和一个单基因位点。在此,我们描述了Tri15基因,它代表参与单端孢霉烯族毒素生物合成的第四个位点。Tri15预计编码一种Cys(2)-His(2)锌指蛋白,其表达方式与核心单端孢霉烯族毒素基因簇中的基因相似。然而,破坏拟枝孢镰刀菌的Tri15并不影响该真菌产生的主要单端孢霉烯族毒素T-2毒素的产量。这一结果表明,Tri15对于毒素的产生并非必需。添加了外源T-2毒素的培养物中Tri15表达水平很高,而单端孢霉烯族毒素生物合成基因Tri5和Tri6没有可检测到的表达。该表达分析与Tri15是至少一些单端孢霉烯族毒素生物合成基因的负调控因子这一观点一致。在禾谷镰刀菌中,Tri15已被定位到连锁群2,因此与主要的单端孢霉烯族毒素生物合成基因簇不连锁。