Kanippayoor Rachelle L, Moehring Amanda J
Department of Biology, The University of Western Ontario, London, ON, Canada N6A 5B7.
Int J Evol Biol. 2012;2012:947381. doi: 10.1155/2012/947381. Epub 2012 Apr 11.
In typical somatic cells, DNA is tightly organized by histones that are necessary for its proper packaging into the nucleus. In sexually-reproducing animals, the haploid product of male meiosis must be further condensed to fit within sperm heads, thus requiring an even greater degree of packaging. This is accomplished in most organisms by replacing histones with protamines, which allows DNA to be compacted into the reduced space. In mammals, protamines are produced after meiosis is complete and are transcribed by the single allele present in the haploid genome that is to be packaged into the sperm head. Here, we present our findings that protamine expression occurs from both alleles in diploid cells, rather than haploid cells, in two species of Drosophila. The differential allelic expression of protamines likely influences the selective pressures that shape their evolution.
在典型的体细胞中,DNA由组蛋白紧密组织,组蛋白对于将其正确包装到细胞核中是必需的。在有性繁殖的动物中,雄性减数分裂产生的单倍体产物必须进一步浓缩以适应精子头部,因此需要更高程度的包装。在大多数生物体中,这是通过用鱼精蛋白取代组蛋白来实现的,这使得DNA能够被压缩到更小的空间中。在哺乳动物中,鱼精蛋白在减数分裂完成后产生,并由单倍体基因组中存在的单个等位基因转录,该单倍体基因组将被包装到精子头部。在这里,我们展示了我们的发现,即在两种果蝇中,鱼精蛋白的表达发生在二倍体细胞而非单倍体细胞的两个等位基因上。鱼精蛋白的差异等位基因表达可能会影响塑造其进化的选择压力。