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Molecular diagnosis to discriminate pathogen and apathogen species of the hybrid Verticillium longisporum on the oilseed crop Brassica napus

机译:鉴别油菜作物甘蓝型油菜杂交黄萎病菌病原和致病菌的分子诊断

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摘要

The cruciferous fungal pathogen Verticillium longisporum represents an allodiploid hybrid with long spores and almost double the amount of nuclear DNA compared to other Verticillium species. V. longisporum evolved at least three times by hybridization. In Europe, virulent A1xD1 and avirulent A1xD3 hybrids were isolated from the oilseed crop Brassica napus. Parental A1 or D1 species are yet unknown whereas the D3 lineage represents Verticillium dahliae. Eleven V. longisporum isolates from Europe or California corresponding to hybrids A1xD1 or A1xD3 were compared. A single characteristic type of nuclear ribosomal DNA could be assigned to each hybrid lineage. The two avirulent A1xD3 isolates carried exclusively D3 ribosomal DNA (rDNA) which corresponds to V. dahliae. The rDNA of all nine A1xD1 isolates is identical but distinct from D3 and presumably originates from A1. Both hybrid lineages carry two distinct isogene pairs of four conserved regulatory genes corresponding to either A1 or D1/D3. D1 and D3 paralogues differ in several single nucleotide polymorphisms. Southern hybridization patterns confirmed differences between the A1 and D1/D3 isogenes and resulted in similar patterns for D1 and D3. Distinct signatures of the Verticillium transcription activator (VTA)2 regulatory isogene pair allow identification of V. longisporum hybrids by a single polymerase chain reaction and the separation from haploid species as V. dahliae or Verticillium albo-atrum. The combination between VTA2 signature and rDNA type identification represents an attractive diagnostic tool to discriminate allodiploid from haploid Verticillia and to distinguish between A1xD1 and A1xD3 hybrids which differ in their virulence towards B. napus.Electronic supplementary materialThe online version of this article (doi:10.1007/s00253-012-4530-1) contains supplementary material, which is available to authorized users.
机译:十字花科真菌病原体长黄萎病菌是一种具有长孢子的异源二倍体杂种,与其他黄萎病菌相比,其核DNA量几乎翻了一番。长孢菌通过杂交至少进化了三倍。在欧洲,从油料作物甘蓝型油菜中分离出有毒的A1xD1和无毒的A1xD3杂种。亲本A1或D1物种仍未知,而D3谱系代表黄萎病菌。比较了来自欧洲或加利福尼亚的11种长曲孢菌分离株,分别对应于杂种A1xD1或A1xD3。可以将单个特征类型的核糖体DNA分配给每个杂交谱系。这两种无毒的A1xD3分离株仅携带D3核糖体DNA(rDNA),该DNA与大麦弧菌相对应。所有9个A1xD1分离株的rDNA都相同,但与D3不同,并且可能起源于A1。两种杂种谱系都携带着两个不同的同基因对,分别对应于四个保守的调节基因,分别对应于A1或D1 / D3。 D1和D3旁系同源物在几个单核苷酸多态性方面有所不同。 Southern杂交模式证实了A1和D1 / D3同基因之间的差异,并导致了D1和D3的相似模式。黄萎病菌转录激活因子(VTA)2调节同基因对的不同特征允许通过单个聚合酶链反应鉴定长孢菌杂种,并从单倍体物种中分离为 dahliae 黄萎病菌。 - atrum VTA2 签名和rDNA类型鉴定的结合代表了一种有吸引力的诊断工具,可以将同二倍体与单倍体 Verticillia 区别开来,并且可以区分在对的毒力方面有所不同的A1xD1和A1xD3杂种> B。 napus 。电子补充材料本文的在线版本(doi:10.1007 / s00253-012-4530-1)包含补充材料,授权用户可以使用。

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