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Sizing the fungal and algal genomes of the lichen Cladonia grayi through quantitative PCR

机译:通过定量PCR确定地衣灰衣藻的真菌和藻类基因组的大小

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Using a method based on quantitative PCR, we determined that the nuclear genome sizes for the mycobiont and photobiont of the lichen Cladonia grayi are 28.6 Mb and 106.7 Mb, respectively. This is the first genome size determination for lichens, and suggests that between 20,000 and 25,000 genes function in C. grayi. The mycobiont genome size is near the middle of the range observed within the Pezizomycota, the subphylum containing all known ascomycete lichen fungi. The genome size of the photobiont (the green alga Asterochloris sp.) is near the lower end of its class, the Trebouxiophyceae. Genomes in this size range can be sequenced at relatively low cost with current pyrosequencing-based methods. The genome sizing method requires very small amounts of precisely quantified DNA and should be applicable to any lichen whose symbionts can be reliably isolated from one another. Since the symbionts used in this project were isolated from soredia, the lichen's vegetative propagules, we also describe a method for the establishment of axenic symbiont cultures from large numbers of soredia.
机译:使用基于定量PCR的方法,我们确定了地衣Cladonia grayi的真菌生物体和光生物体的核基因组大小分别为28.6 Mb和106.7 Mb。这是首次确定地衣的基因组大小,并表明在灰角线虫中有20,000至25,000个基因起作用。真菌生物体的基因组大小接近在Pezizomycota(包含所有已知的子囊地衣真菌)的亚门内观察到的范围的中间。光生物体(绿藻Asterochloris sp。)的基因组大小接近同类生物的下部。可以使用当前的基于焦磷酸测序的方法以相对较低的成本对这一大小范围的基因组进行测序。基因组大小确定方法需要非常少量的精确定量的DNA,并且应适用于可共生彼此可靠分离的任何地衣。由于本项目中使用的共生体是从地衣的营养繁殖体索雷亚分离而来的,所以我们还描述了一种从大量索雷亚中建立轴突共生菌培养物的方法。

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