Yu M, Irwin D M
Department of Clinical Biochemistry, University of Toronto, Ontario, Canada.
Mol Phylogenet Evol. 1996 Apr;5(2):298-308. doi: 10.1006/mpev.1996.0025.
The acquisition of an efficient stomach lysozyme is associated with the success of the ruminants. Advanced ruminants, such as cow, sheep, and deer, have approximately 10 lysozyme genes, some of which are expressed and function in the stomach and some which are expressed and function in nonstomach tissues (e.g., trachea or kidney). The pig possesses a single conventional lysozyme c gene that is expressed in both stomach and nonstomach tissues, and in this respect is similar to what was thought to exist in the early artiodactyl, before the acquisition of the ruminant lifestyle. To better understand the genetic events that occurred early in the origin and evolution of stomach lysozyme, we have isolated and characterized the pig lysozyme gene. The pig lysozyme gene is similar in size to that of other mammalian species, and both stomach and nonstomach expression utilize the same promoter. All the duplications of the ruminant lysozyme gene occurred after the divergence of the pig lineage from the lineage leading to the advanced ruminants. Comparison of the nucleotide sequence of the coding region of mature stomach lysozymes from advanced ruminants and pig revealed no change in the rate of synonymous substitutions. Comparison of the numbers of nonsynonymous and synonymous substitutions provides evidence for positive selection along the early ruminant lineage. These results indicate that changes in selective pressure, and not mutation rate, account for the changes in rates of stomach lysozyme evolution.
获得高效的胃溶菌酶与反刍动物的成功进化相关。高等反刍动物,如牛、羊和鹿,大约有10个溶菌酶基因,其中一些在胃中表达并发挥作用,另一些在非胃组织(如气管或肾脏)中表达并发挥作用。猪拥有一个单一的传统溶菌酶c基因,该基因在胃和非胃组织中均有表达,在这方面与反刍动物生活方式出现之前的早期偶蹄动物情况相似。为了更好地理解胃溶菌酶起源和进化早期发生的遗传事件,我们分离并鉴定了猪溶菌酶基因。猪溶菌酶基因的大小与其他哺乳动物物种的相似,胃和非胃组织的表达都利用相同的启动子。反刍动物溶菌酶基因的所有重复事件都发生在猪谱系与导致高等反刍动物的谱系分化之后。对高等反刍动物和猪成熟胃溶菌酶编码区核苷酸序列的比较显示,同义替换率没有变化。非同义替换和同义替换数量的比较为早期反刍动物谱系中的正选择提供了证据。这些结果表明,是选择压力的变化而非突变率的变化导致了胃溶菌酶进化速率的改变。