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首页> 外文期刊>International Journal of Food Microbiology >The CYP51C gene, a reliable marker to resolve interspecific phylogenetic relationships within the Fusarium species complex and a novel target for species-specific PCR.
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The CYP51C gene, a reliable marker to resolve interspecific phylogenetic relationships within the Fusarium species complex and a novel target for species-specific PCR.

机译:CYP51C基因是解决镰刀菌种复合体内种间系统发生关系的可靠标记,是物种特异性PCR的新靶标。

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摘要

Early diagnosis and control of different Fusarium species is essential for successful management of plant disease and subsequent prevention of toxins entering the food chain. This issue can be addressed using phylogenetic analyses and other molecular techniques, including the design of species-specific primers and corresponding PCR assays. In practice, only a few genes are sequenced for most species and insights into the evolutionary mechanisms at the species level usually stem from phylogenetic analyses of only one or a small number of genetic loci. This poses the question of whether the recovered tree accurately reflects the relationships among species or rather more local interrelationships particular to the genetic marker employed. This study examined if the Fusarium-specific CYP51C gene can be used to establish evolutionary relationships between Fusarium species and enable species-specific detection. The resolving power of the CYP51C gene was studied for 46 Fusarium isolates representing 18 different species. The resulting phylogeny analysis showed clear and well-structured separation of the isolates according to their species rank, synthesised toxin and Fusarium section. Moreover, a comparison between the individual CYP51C phylogeny and a reference tree (inferred from the concatenation of ITS, CYP51C, beta-tubulin and TEF-1 alpha sequences) indicated superior resolution of CYP51C relative to ITS and beta-tubulin sequences. In addition to its suitability as a reliable marker for diagnosis of different toxigenic Fusarium species, we also show that the CYP51C gene is a promising target for development of species-specific PCR. This was demonstrated by the specific detection of Fusarium cerealis in grain samples of wheat.
机译:对各种 Fusarium 物种进行早期诊断和控制,对于成功控制植物病害和随后预防进入食物链的毒素至关重要。可以使用系统发育分析和其他分子技术,包括物种特异性引物的设计和相应的PCR测定法来解决此问题。实际上,对于大多数物种而言,只有少数基因被测序,并且在物种水平上对进化机制的见识通常源于仅对一个或少数遗传基因座的系统发育分析。这就提出了一个问题,即恢复的树木是否准确地反映了物种之间的关系,或者更确切地反映了所采用遗传标记所特有的局部相互关系。这项研究检查了镰刀菌特异性的 CYP51C 基因是否可用于建立镰刀菌物种之间的进化关系并实现物种特异性检测。研究了CYP51C 基因对代表18种不同物种的46种 Fusarium 分离株的分辨能力。最终的系统发育分析表明,根据分离物的物种等级,合成毒素和 Fusarium 切片,可以对分离物进行清晰且结构良好的分离。此外, CYP51C 个体系统发育树与参考树之间的比较(由ITS, CYP51C ,β-微管蛋白和 TEF-1 alpha的串联推断出)序列)表明 CYP51C 相对于ITS和β-微管蛋白序列具有更高的分辨率。除了适合作为诊断各种产毒镰刀菌的可靠标志物之外,我们还显示 CYP51C 基因是开发物种特异性PCR的有希望的靶标。小麦籽粒样品中谷类镰刀菌的特异性检测证明了这一点。

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