Jacques Noémie, Sacerdot Christine, Derkaoui Meriem, Dujon Bernard, Ozier-Kalogeropoulos Odile, Casaregola Serge
CIRM-Levures, Microbiologie et Génétique Moléculaire, INRA UMR 1238, CNRS UMR 2585, AgroParisTech, F-78850 Thiverval-Grignon, France.
Eukaryot Cell. 2010 Mar;9(3):449-59. doi: 10.1128/EC.00263-09. Epub 2010 Jan 4.
Debaryomyces hansenii, a yeast that participates in the elaboration of foodstuff, displays important genetic diversity. Our recent phylogenetic classification of this species led to the subdivision of the species into three distinct clades. D. hansenii harbors the highest number of nuclear mitochondrial DNA (NUMT) insertions known so far for hemiascomycetous yeasts. Here we assessed the intraspecific variability of the NUMTs in this species by testing their presence/absence first in 28 strains, with 21 loci previously detected in the completely sequenced strain CBS 767(T), and second in a larger panel of 77 strains, with 8 most informative loci. We were able for the first time to structure populations in D. hansenii, although we observed little NUMT insertion variability within the clades. We determined the chronology of the NUMT insertions, which turned out to correlate with the previously defined taxonomy and provided additional evidence that colonization of nuclear genomes by mitochondrial DNA is a dynamic process in yeast. In combination with flow cytometry experiments, the NUMT analysis revealed the existence of both haploid and diploid strains, the latter being heterozygous and resulting from at least four crosses among strains from the various clades. As in the diploid pathogen Candida albicans, to which D. hansenii is phylogenetically related, we observed a differential loss of heterozygosity in the diploid strains, which can explain some of the large genetic diversity found in D. hansenii over the years.
汉逊德巴利酵母是一种参与食品发酵的酵母,具有重要的遗传多样性。我们最近对该物种进行的系统发育分类导致其被细分为三个不同的进化枝。汉逊德巴利酵母拥有迄今为止已知的半子囊菌酵母中数量最多的核线粒体DNA(NUMT)插入序列。在此,我们通过首先在28个菌株中检测NUMT的存在与否来评估该物种中NUMT的种内变异性,其中21个位点先前在全基因组测序菌株CBS 767(T)中被检测到,其次在由77个菌株组成的更大样本中检测,使用8个信息最丰富的位点。我们首次能够构建汉逊德巴利酵母的种群结构,尽管我们观察到在各个进化枝内NUMT插入序列的变异性很小。我们确定了NUMT插入序列的时间顺序,结果发现其与先前定义的分类学相关,并提供了额外的证据,证明线粒体DNA对核基因组的定殖在酵母中是一个动态过程。结合流式细胞术实验,NUMT分析揭示了单倍体和二倍体菌株的存在,后者是杂合的,并且是由来自不同进化枝的菌株之间至少四次杂交产生的。与汉逊德巴利酵母在系统发育上相关的二倍体病原体白色念珠菌一样,我们在二倍体菌株中观察到杂合性的差异丧失,这可以解释多年来在汉逊德巴利酵母中发现的一些巨大遗传多样性。