首页> 外文期刊>Journal of Microbiological Methods >Development of a transformation system in the swainsonine producing, slow growing endophytic fungus, Undifilum oxytropis.
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Development of a transformation system in the swainsonine producing, slow growing endophytic fungus, Undifilum oxytropis.

机译:在生产swainsonine的生长缓慢的内生真菌 Undifilum oxytropis 中建立转化系统。

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Undifilum oxytropis (Phylum: Ascomycota; Family: Pleosporaceae) is a slow growing endophytic fungus that produces a toxic alkaloid, swainsonine. This endophyte resides in locoweeds, which are perennial flowering legumes. Consumption of this fungus by grazing animals induces a neurological disorder called locoism. The alkaloid swainsonine, an alpha -mannosidase inhibitor, is responsible for the field toxicity related to locoism. Little is known about the biosynthetic pathway of swainsonine in endophytic fungi. Genetic manipulation of endophytic fungi is important to better understand biochemical pathways involved in alkaloid synthesis, but no transformation system has been available for studying such enzymes in Undifilum. In this study we report the development of protoplast and transformation system for U. oxytropis. Fungal mycelia required for generating protoplasts were grown in liquid culture, then harvested and processed with various enzymes. Protoplasts were transformed with a fungal specific vector driving the expression of Enhanced Green Florescent Protein (EGFP). The quality of transformed protoplasts and transformation efficiency were monitored during the process. In all cases, resistance to antibiotic hygromycin B was maintained. Such manipulation will open avenues for future research to decipher fungal metabolic pathways.
机译:嗜氧化菌(Phylum: Ascomycota ; Family: Pleosporaceae )是一种生长缓慢的内生真菌,可产生有毒生物碱,猪in碱。该内生植物生活在多年生开花的豆科植物-草丛中。放牧动物食用这种真菌会诱发一种称为运动症的神经系统疾病。生物碱swainsonine,一种α-甘露糖苷酶抑制剂,负责与运动有关的田间毒害。关于内生真菌中swainsonine的生物合成途径知之甚少。内生真菌的基因操作对于更好地了解生物碱合成中涉及的生化途径很重要,但是目前尚无转化系统可用于研究 Undifilum 中的此类酶。在这项研究中,我们报告了 U的原生质体和转化系统的发展。嗜氧菌。产生原生质体所需的真菌菌丝体在液体培养中生长,然后收获并用各种酶处理。用真菌特异性载体转化原生质体,所述真菌特异性载体驱动增强型绿色荧光蛋白(EGFP)的表达。在该过程中监测转化的原生质体的质量和转化效率。在所有情况下,维持对抗生素潮霉素B的抗性。这样的操作将为将来的研究破译真菌代谢途径开辟道路。

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