Department of Zoology, University of Oxford, Oxford, OX1 3PS, United Kingdom.
China National Genebank, BGI-Shenzhen, 518083, Shenzhen, Guangdong, China.
Proc Natl Acad Sci U S A. 2017 Jul 18;114(29):7677-7682. doi: 10.1073/pnas.1702930114. Epub 2017 Jul 3.
The sand rat is a gerbil species native to deserts of North Africa and the Middle East, and is constrained in its ecology because high carbohydrate diets induce obesity and type II diabetes that, in extreme cases, can lead to pancreatic failure and death. We report the sequencing of the sand rat genome and discovery of an unusual, extensive, and mutationally biased GC-rich genomic domain. This highly divergent genomic region encompasses several functionally essential genes, and spans the ParaHox cluster which includes the insulin-regulating homeobox gene The sequence of sand rat has been grossly affected by GC-biased mutation, leading to the highest divergence observed for this gene across the Bilateria. In addition to genomic insights into restricted caloric intake in a desert species, the discovery of a localized chromosomal region subject to elevated mutation suggests that mutational heterogeneity within genomes could influence the course of evolution.
沙鼠是一种原产于北非和中东沙漠的沙鼠属物种,由于高碳水化合物饮食会导致肥胖和 II 型糖尿病,在极端情况下,还会导致胰腺衰竭和死亡,因此其生态受到限制。我们报告了沙鼠基因组的测序结果,并发现了一个不寻常的、广泛的、突变偏向性的 GC 丰富的基因组区域。这个高度变异的基因组区域包含了几个功能必需的基因,并跨越了包括调节胰岛素的同源盒基因在内的 ParaHox 簇。沙鼠的 序列受到 GC 偏向性突变的严重影响,导致该基因在整个 Bilateria 中观察到的最高分化。除了对沙漠物种限制热量摄入的基因组见解外,发现一个受高突变影响的局部染色体区域表明,基因组内的突变异质性可能会影响进化的进程。