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Genus-Specific Primers for Study of Fusarium Communities in Field Samples

机译:用于实地样品中镰刀菌群落研究的属特定引物

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Fusarium is a large and diverse genus of fungi of great agricultural and economic importance, containing many plant pathogens and mycotoxin producers. To date, high-throughput sequencing of Fusarium communities has been limited by the lack of genus-specific primers targeting regions with high discriminatory power at the species level. In the present study, we evaluated two Fusarium -specific primer pairs targeting translation elongation factor 1 (TEF1). We also present the new primer pair Fa+7/Ra+6. Mock Fusarium communities reflecting phylogenetic diversity were used to evaluate the accuracy of the primers in reflecting the relative abundance of the species. TEF1 amplicons were subjected to 454 high-throughput sequencing to characterize Fusarium communities. Field samples from soil and wheat kernels were included to test the method on more-complex material. For kernel samples, a single PCR was sufficient, while for soil samples, nested PCR was necessary. The newly developed primer pairs Fa+7/Ra+6 and Fa/Ra accurately reflected Fusarium species composition in mock DNA communities. In field samples, 47 Fusarium operational taxonomic units were identified, with the highest Fusarium diversity in soil. The Fusarium community in soil was dominated by members of the Fusarium incarnatum-Fusarium equiseti species complex, contradicting findings in previous studies. The method was successfully applied to analyze Fusarium communities in soil and plant material and can facilitate further studies of Fusarium ecology.
机译:镰刀菌是具有多种农业和经济重要性的大型真菌种类,其中包含许多植物病原体和霉菌毒素生产者。迄今为止,镰刀菌属群落的高通量测序一直受到缺乏针对物种一级具有高鉴别力的区域的属特异性引物的限制。在本研究中,我们评估了两个针对翻译延伸因子1(TEF1)的镰刀菌特异性引物对。我们还提出了新的引物对Fa + 7 / Ra + 6。反映系统发育多样性的模拟镰刀菌群落用于评估引物在反映物种相对丰度中的准确性。对TEF1扩增子进行了454次高通量测序,以表征镰刀菌群落。包括来自土壤和小麦籽粒的田间样品,以在更复杂的材料上测试该方法。对于核仁样品,单个PCR就足够了,而对于土壤样品,巢式PCR是必需的。新开发的引物对Fa + 7 / Ra + 6和Fa / Ra准确反映了模拟DNA群落中的镰刀菌物种组成。在田间样品中,确定了47个镰刀菌的操作分类单位,土壤中镰刀菌的多样性最高。土壤中的镰刀菌群落以镰刀镰刀菌-马术镰刀菌物种复合体的成员为主,这与以前的研究结果相矛盾。该方法已成功地用于分析土壤和植物材料中的镰刀菌群落,可以促进对镰刀菌生态学的进一步研究。

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