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首页> 外文期刊>Data in Brief >Data on genetic polymorphism of flax (Linum usitatissimum L.) pathogenic fungi of Fusarium, Colletotrichum, Aureobasidium, Septoria, and Melampsora genera
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Data on genetic polymorphism of flax (Linum usitatissimum L.) pathogenic fungi of Fusarium, Colletotrichum, Aureobasidium, Septoria, and Melampsora genera

机译:亚麻遗传多态性的数据( Linum Usitatissimumlimum L.)致病性真菌,镰刀菌,Colletotrichum,Aurebasidium,Sementoria Melampsora Genera

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摘要

Being a valuable agricultural plant, flax (Linum usitatissimum L.) is used for oil and fiber production. However, the cultivation of this agriculture faces an urgent problem of flax susceptibility to fungal diseases. The most destructive ones are caused by the representatives of Fusarium, Colletotrichum, Aureobasidium, Septoria, and Melampsora genera, reducing flax yields significantly. To combat such pathogens effectively, it is of high importance to assess their genetic diversity that can be used to develop molecular markers to distinguish fungal genera and species. Morphological analysis traditionally carried out for fungal identification requires a given amount of time and tends to be difficult. In the present work, we determined the DNA sequences that are frequently used for phylogenetic studies in fungi – internal transcribed spacer (ITS) and beta-tubulin (tub2), translation elongation factor 1-alpha (tef1), RNA polymerase II largest subunit (RPB1), RNA polymerase II second largest subunit (RPB2), and minichromosome maintenance protein (MCM7) genes – for 203 flax fungal pathogens of Fusarium oxysporum, F. avenaceum, F. solani, F. sporotrichiella, F. moniliforme, F. culmorum, F. semitectum, F. gibbosum, Colletotrichum lini, Aureobasidium pullulans, Septoria linicola, and Melampsora lini species. The sequencing was performed using the Illumina MiSeq platform with a 300+300 bp kit, and on average, about 2350 reads per sample were obtained that allows accurate identification of the genetic polymorphism. Raw data are stored at the Sequence Read Archive under the accession number PRJNA596387. The obtained data can be used for fungal phylogenetic studies and the development of a PCR-based test system for flax pathogen identification.
机译:亚麻(Linum Usitatissimum L.)是油脂生产的宝贵农业植物。然而,这种农业的种植面临着对真菌疾病的亚麻敏感性的紧迫问题。最具破坏性的是由镰刀菌,胶凝,阿瓜氟脲,孤片植物和Melampsora属的代表引起的,从而显着降低了亚麻产率。为了有效地对抗这些病原体,评估其遗传多样性高度重视,这些遗传多样性可用于开发分子标记以区分真菌属和物种。传统上对真菌鉴定进行的形态学分析需要给定的一定时间,并且往往是困难的。在本作工作中,我们确定了经常用于真菌 - 内部转录间隔物(其)和β-微管蛋白(TUB2)的系统发育研究的DNA序列,翻译伸长因子1-α(TEF1),RNA聚合酶II最大亚基( RPB1),RNA聚合酶II的第二大亚基(RPB2)和微小染色体维持蛋白(MCM7)基因 - 对尖孢镰刀菌的203种亚麻真菌病原体,F. avenaceum,茄病镰刀菌,F. sporotrichiella,串珠镰孢,大刀F. ,F.晶形,F.Gibbosum,Colletotrichum Lini,Aurebasidium pullulans,Septoria Linicola和Melampsora Lini物种。使用具有300 + 300bp试剂盒的Illumina miseq平台进行测序,并且平均地获得每种样品约2350只读取,允许精确鉴定遗传多态性。原始数据存储在加入号PRJNA596387下的序列读取存档。所获得的数据可用于真菌系统发育研究和用于亚麻病原体鉴定的基于PCR的测试系统的发展。

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