Aybeke Mehmet
Trakya University, Faculty of Science, Department of Biology, Balcan Campus, 22030 Edirne, Turkey.
Microbiol Res. 2017 Aug;201:46-51. doi: 10.1016/j.micres.2017.05.001. Epub 2017 May 8.
This study aims to evaluate the toxic effects of Fusarium oxysporum on root parasitic weed, Orobanche spp. Comparative genetic and gene expression studies were conducted on uninfected and fungus-infected orobanches. In genetic studies, isolated total DNA was amplified by RAPD PCR. Fragment properties were analysed by GTS test. According to the results, the fragment properties of control and Fusarium infected (experimental) groups varied widely; and it has been observed that Fusarium has genotoxic effects on the DNA of orobanches. In gene expression studies, the expression levels of genes encoding enzymes or proteins were associated with ROS damage and toxic effects, therefore, gene expressions of Mn-superoxide dismutase (SOD), Zn-superoxide dismutase (=SOD2, mitochondrial), glutamine synthetase (GS), heat shock protein gene (HSP70), BAX, Caspase-3 and BCL2 were significantly higher in the experimental group. In the light of obtained data, it was concluded that F. oxysporum (1) caused heavy ROS damage in Orobanche (2) induced significant irrevocable genotoxic effects on the DNA of Orobanche, (3) degraded protein metabolism and synthesis, and finally (4) triggered apoptosis. The results of this study can be a ground for further research on reducing the toxic effects of Fusarium on agricultural products, so that advancements in bio-herbicide technology may provide a sustainable agricultural production.
本研究旨在评估尖孢镰刀菌对根寄生杂草列当属植物的毒性作用。对未感染和感染真菌的列当属植物进行了比较遗传和基因表达研究。在遗传研究中,通过随机扩增多态性DNA聚合酶链反应(RAPD PCR)扩增分离的总DNA。通过GTS测试分析片段特性。结果显示,对照组和感染镰刀菌(实验组)的片段特性差异很大;并且观察到镰刀菌对列当属植物的DNA具有遗传毒性作用。在基因表达研究中,编码酶或蛋白质的基因表达水平与活性氧(ROS)损伤和毒性作用相关,因此,实验组中锰超氧化物歧化酶(SOD)、锌超氧化物歧化酶(=SOD2,线粒体)、谷氨酰胺合成酶(GS)、热休克蛋白基因(HSP70)、BAX、半胱天冬酶-3和BCL2的基因表达显著更高。根据获得的数据得出结论,尖孢镰刀菌(1)在列当属植物中造成严重的ROS损伤,(2)对列当属植物的DNA诱导显著的不可逆转的遗传毒性作用,(3)降解蛋白质代谢和合成,最终(4)引发细胞凋亡。本研究结果可为进一步研究降低镰刀菌对农产品的毒性作用奠定基础,从而使生物除草剂技术的进步可为可持续农业生产提供支持。