Colgan D J
Department of Population Biology, R.S.B.S., Australian National University, G.P.O. Box 475, 2601, Canberra City, Australia.
Rouxs Arch Dev Biol. 1986 Apr;195(3):197-201. doi: 10.1007/BF02439439.
In this paper is reported an example of extensive developmental changes in the isoenzymes controlling a biochemical pathway: more than half of the glycolytic enzymes of the grasshopper,Caledia captiva differ in electrophoretic phenotype between embryonic and adult stages. A similar pattern of changes is found in each of the taxa ofC. captiva, which is actually a species complex. The present example of developmental variation differs from that described for glycolytic enzymes in vertebrates in two main points. Firstly, the changes between the phenotypes of the embryos and adults are co-incident in time, occurring near hatching. Secondly, in contrast to vertebrates where embryospecific isoenzymes are rare, there exist inC. captiva isoenzymes of trehalase, glucosephosphate isomerase, aldolase, pyruvate kinase, lactate dehydrogenase and 6-phosphogluconate dehydrogenase which are found in the embryo but not in the adult. Some of the variable enzymes also exhibit tissue specificity in the adult. The existence of the changes, whatever their basis, shows that the theory that the expression of housekeeping genes is developmentally invariant is not generally correct.
蝗虫(Caledia captiva)超过一半的糖酵解酶在胚胎期和成虫期的电泳表型不同。在实际上是一个复合种的C. captiva的每个分类单元中都发现了类似的变化模式。目前这个发育变异的例子在两个主要方面不同于脊椎动物中糖酵解酶的情况。首先,胚胎和成虫表型之间的变化在时间上是同时发生的,发生在孵化期附近。其次,与脊椎动物中胚胎特异性同工酶罕见不同,在C. captiva中存在海藻糖酶、葡萄糖磷酸异构酶、醛缩酶、丙酮酸激酶、乳酸脱氢酶和6-磷酸葡萄糖酸脱氢酶的同工酶,这些同工酶在胚胎中存在但在成虫中不存在。一些可变酶在成虫中也表现出组织特异性。这些变化的存在,无论其基础如何,都表明持家基因的表达在发育过程中不变的理论并不普遍正确。