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Evolution of Genomic Base Composition: From Single Cell Microbes to Multicellular Animals

机译:基因组碱基组成的演变:从单细胞微生物到多细胞动物

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Whole genome sequencing (WGS) of thousands of microbial genomes has provided considerable insight into evolutionary mechanisms in the microbial world. While substantially fewer eukaryotic genomes are available for analyses the number is rapidly increasing. This mini-review summarizes broadly evolutionary dynamics of base composition in the different domains of life from the perspective of prokaryotes. Common and different evolutionary mechanisms influencing genomic base composition in eukaryotes and prokaryotes are discussed. The conclusion from the data currently available suggests that while there are similarities there are also striking differences in how genomic base composition has evolved within prokaryotes and eukaryotes. For instance, homologous recombination appears to increase GC content locally in eukaryotes due to a non-selective process termed GC-biased gene conversion (gBGC). For prokaryotes on the other hand, increase in genomic GC content seems to be driven by the environment and selection. We find that similar phenomena observed for some organisms in each respective domain may be caused by very different mechanisms: while gBGC and recombination rates appear to explain the negative correlation between GC3 (GC content based on the third codon nucleotides) and genome size in some eukaryotes uptake of AT rich DNA sequences is the main reason for a similar negative correlation observed in prokaryotes. We provide further examples that indicate that base composition in prokaryotes and eukaryotes have evolved under very different constraints.
机译:数千个微生物基因组的全基因组测序(WGS)为微生物世界的进化机制提供了相当多的见识。尽管可用于分析的真核基因组数目少得多,但数目正在迅速增加。这篇小型综述从原核生物的角度概括了生命不同领域中碱基组成的广泛进化动力学。讨论了影响真核生物和原核生物的基因组碱基组成的共同和不同的进化机制。从目前可获得的数据得出的结论表明,尽管存在相似之处,但在原核生物和真核生物中基因组碱基组成的演化方式上也存在明显差异。例如,由于非选择性过程被称为GC偏向基因转化(gBGC),同源重组似乎在真核生物中局部增加了GC含量。另一方面,对于原核生物,基因组GC含量的增加似乎受环境和选择的驱动。我们发现在各个域中对某些生物观察到的相似现象可能是由非常不同的机制引起的:而gBGC和重组率似乎可以解释某些真核生物中GC3(基于第三密码子核苷酸的GC含量)与基因组大小之间的负相关关系。摄取富含AT的DNA序列是在原核生物中观察到相似负相关的主要原因。我们提供了进一步的例子,表明原核生物和真核生物的碱基组成在非常不同的限制条件下得到了进化。

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