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Genetic analyses of a hybrid cross between serotypes A and D strains of the human pathogenic fungus Cryptococcus neoformam

机译:人类病原真菌新隐球菌血清型A和D株之间杂交杂交的遗传分析

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Cryptococcus neoformans has two varieties, var. grubii and var. neoformans, that correspond to serotypes A and D, respectively. Molecular phylogenetic analyses suggest that these two varieties have diverged from each other for similar to 18 million years. The discovery of pathogenic serotype AD hybrid strains in nature indicates that intervariety mating in C. neoformans occurs in the natural environment. However, little is known about the genetic consequences of hybridization in C. neoformans. Here, we analyzed a hybrid population of 163 progeny from a cross between strains of serotypes A (CDC15) and D (JEC20), using 114 codominant nuclear PCR-RFLP markers and I direct PCR marker. These markers were distributed on all 14 chromosomes of the sequenced strain JEC21 that was isogenic to one of the parents (JEC20) in our cross. Our analyses identified that of the 163 progeny, 5 were heterozygous at all 115 loci, I was completely homozygous and identical to one of the parents (CDC15), and the remaining 157 each contained at least I heterozygous locus. Because all 163 progeny inherited mitochondria from the MATa parent JEC20, none of the progeny had a genotype identical to either of the two parents or to a composite of the two parents. All 115 nuclear loci showed three different genotypes in the progeny population, consistent with Mendelian segregation during meiosis. While the linkage analysis showed independent reassortment among loci on different linkage groups, there were significant differences in recombination frequencies among chromosomes and among regions within certain chromosomes. Overall, the linkage-map length from this hybrid cross was much shorter and the recombination frequency much lower than those constructed using serotype D strains, consistent with suppressed recombination in the intervariety cross between strains of serotypes A and D. We discuss the implications of our results in our understanding of the speciation and evolution of the C. neoformans species complex.
机译:新型隐球菌有两个变种,var。格鲁比和瓦尔新甲虫,分别对应于血清型A和D。分子系统发育分析表明,这两个变种彼此之间的差异接近1800万年。自然界中病原性血清型AD杂种菌株的发现表明,新孢梭菌的种间交配发生在自然环境中。但是,关于新孢子虫杂交的遗传后果知之甚少。在这里,我们使用114个显性核PCR-RFLP标记和I直接PCR标记,分析了A型(CDC15)和D型(JEC20)血清型之间杂交的163个后代的杂交种群。这些标记分布在测序的菌株JEC21的所有14条染色体上,这些菌株对我们杂交中的一个亲本(JEC20)是同基因的。我们的分析表明,在163个子代中,在所有115个基因座中有5个是杂合子,I是完全纯合的,并且与其中一个亲本(CDC15)相同,其余157个子集至少包含I个杂合子基因座。因为所有163个子代都从MATa亲本JEC20继承了线粒体,所以没有一个子代具有与两个亲本或两个亲本的组合相同的基因型。所有115个核基因座在子代群体中均显示出三种不同的基因型,这与减数分裂过程中的孟德尔分离是一致的。虽然连锁分​​析显示了不同连锁组上基因座之间的独立重配,但染色体之间以及某些染色体内区域之间的重组频率却存在显着差异。总体而言,该杂交杂交的连锁图长度要短得多,重组频率要比使用D型菌株构建的杂交图长得多,这与A型和D型菌株之间的杂种杂交抑制重组相符。我们讨论了我们的含义。结果使我们了解了新孢梭菌物种复合体的形成和进化。

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