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The role of MADS-box transcription factors in secondary metabolism and sexual development in the maize pathogen Fusarium verticillioides

机译:MADS-box转录因子在玉米病原体镰刀菌次生代谢和性发育中的作用

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MADS-box transcription factors (TFs) regulate functionally diverse gene targets in eukaryotes. In select ascomycetes, MADS-box TFs have been shown to play a role in virulence, and vegetative and sexual development. Here, we characterized Fusarium verticillioides MADS-box TFs, Mads1 and Mads2, in terms of their roles in secondary metabolism and sexual mating. Sequence analyses showed that MADS1 and MADS2 encode TFs with a SRF-type dimerization domain and a MEF2-type dimerization domain, respectively. The MADS1 and MADS2 knockout mutants (Fmt1 and Fmt2 strains, respectively) exhibited decreased vegetative growth and FB1 production when compared to the wild-type. Fmt1 showed reduced expression of 14 polyketide synthase (PKS) genes present in the organism, whereas Fmt2 did not display a change in PKS gene expression. Significantly, the deletion of MADS1 and MADS2 in the MAT1-2 genotype (Fmt4 and Fmt5 strains, respectively) led to strains that failed to produce perithecia and ascospores when crossed with the MAT1-1 wild-type strain. Notably, deletion of either gene did not have an effect on the ability of the fungus to colonize maize stalk or kernels. FB1 production and PKS expression data suggest that Mads1 is a broad regulator of secondary metabolism in F. verticillioides, and may target regulons upstream of Mads2 to influence FB1 production. In addition, MADS-box TFs in F. verticillioides play a critical role in the perithecia development.
机译:MADS盒转录因子(TFs)调节真核生物中功能多样的基因靶标。在精选的子囊菌中,MADS-box TF已显示在毒力,营养和性发育中起作用。在这里,我们根据其在次生代谢和性交中的作用,表征了镰孢镰刀菌MADS-box TFs,Mads1和Mads2。序列分析表明,MADS1和MADS2分别编码具有SRF型二聚结构域和MEF2型二聚结构域的TF。与野生型相比,MADS1和MADS2敲除突变体(分别为Fmt1和Fmt2菌株)显示出营养生长和FB1产量下降。 Fmt1显示减少了存在于生物体中的14个聚酮合酶(PKS)基因的表达,而Fmt2没有显示PKS基因表达的变化。值得注意的是,MAT1-2基因型(分别为Fmt4和Fmt5菌株)中MADS1和MADS2的缺失导致菌株与MAT1-1野生型菌株杂交后无法产生皮膜和子囊孢子。值得注意的是,任一基因的缺失都不会影响真菌在玉米秸秆或玉米粒上定植的能力。 FB1产生和PKS表达数据表明,Mads1是拟南芥中次生代谢的广泛调节剂,并且可能靶向Mads2上游的调节子来影响FB1产生。此外,网状拟南芥中的MADS-box TFs在皮膜的形成中起着关键作用。

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