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Mating Type Locus of Chinese Black Truffles Reveals Heterothallism and the Presence of Cryptic Species within the T. indicum Species Complex

机译:中国黑松露的交配型基因座揭示了印度菊科植物杂种优势和隐性物种的存在。

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摘要

Tuber spp. are filamentous ascomycetes which establish symbiosis with the roots of trees and shrub species. By virtue of this symbiosis they produce hypogeous ascocarps, known as truffles. Filamentous ascomycetes can reproduce by homothallism or heterothallism depending on the structure and organization of their mating type locus. The first mating type locus in a truffle species has been recently characterized in Tuber melanosporum and it has been shown that this fungus, endemic in Europe, is heterothallic. The availability of sequence information for T. melanosporum mating type genes is seminal to cloning their orthologs from other Tuber species and assessing their reproductive mode. Here we report on the organization of the mating type region in T. indicum, the black truffle species present in Asia, which is the closest relative to T. melanosporum and is characterized by an high level of morphological and genetic variability. The present study shows that T. indicum is also heterothallic. Examination of Asiatic black truffles belonging to different genetic classes, sorted according to the sequence polymorphism of the internal transcribed spacer rDNA region, has revealed sequence variations and rearrangements in both coding and non-coding regions of the mating type locus, to suggest the existence of cryptic species within the T. indicum complex. The presence of transposable elements within or linked to the mating type region suggests a role of these elements in generating the genotypic diversity present among T. indicum strains. Overall, comparative analyses of the mating type locus have thus allowed us to tackle taxonomical and phylogenetic issues within black truffles and make inferences about the evolution of T. melanosporum-T. indicum lineage. Our results are not only of fundamental but also of applied relevance as T. indicum produces edible fruit bodies that are imported also into Europe and thus may represent a biological threat for T. melanosporum.
机译:块茎菌属。是丝状子囊菌,与树木和灌木的根部共生。由于这种共生作用,它们产生了伪劣的松果,被称为松露。丝状子囊菌可以通过同型或异型繁殖,这取决于它们的交配型基因座的结构和组织。最近,在块茎黑色素球菌中鉴定了松露菌中的第一个交配型基因座,并且已经表明这种真菌在欧洲特有,是异源的。 T. melanosporum交配型基因的序列信息的可用性对从其他块茎物种克隆直系同源物并评估其繁殖方式具有重要意义。在这里,我们报道了印度黑松露菌T. indicum中的交配型区域的组织情况,该黑松露物种相对于T. melanosporum最接近,并且具有很高的形态和遗传变异性。目前的研究表明,印度卷柏也是异种的。根据内部转录间隔区rDNA区域的序列多态性对属于不同遗传类别的亚洲黑松露进行的检查揭示了交配型基因座编码区和非编码区的序列变异和重排,表明存在T. indicum复合物中的隐性物种。在交配型区域内或与交配型区域相连的转座因子的存在表明这些元素在产生印度丁香菌菌株之间存在的基因型多样性中的作用。总的来说,对交配型基因座的比较分析使我们能够解决黑松露中的分类学和系统发育问题,并推断出黑毛锥虫-T的进化。标记沿袭。我们的研究结果不仅具有根本意义,而且与应用意义相关,因为印度红豆杉生产可食用的子实体,该水果也进口到欧洲,因此可能对黑麦草球形羊肉构成生物威胁。

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