Diaz-Benjumea F J, García-Bellido A
Centro de Biología Molecular, C.S.I.C., Universidad Autónoma de Madrid, E-28049, Madrid, Spain.
Rouxs Arch Dev Biol. 1990 Mar;198(6):336-354. doi: 10.1007/BF00383772.
Of the many mutations known to affect the wing vein pattern we have selected the most extreme in 29 genes for study. Their phenotype can be classified in two major classes: lack-of-veins and excess-of-veins, and in several internally coherent groups. The study of multiple mutant combinations, within groups and between groups, reveals several genetic operations at work in the generation of the vein pattern. The finding that some of these mutations also affect cell proliferation in characteristic ways has prompted a generative model of wing morphogenetic and pattern formation based on cell behaviour properties defined by the corresponding wild-type genes.
在已知影响翅脉模式的众多突变中,我们挑选了29个基因中最极端的进行研究。它们的表型可分为两大类:缺脉和多脉,并可细分为几个内部连贯的组。对组内和组间多个突变组合的研究揭示了在翅脉模式形成过程中起作用的几种遗传作用。其中一些突变还以特定方式影响细胞增殖,这一发现促使人们基于相应野生型基因所定义的细胞行为特性,建立了一个翅形态发生和模式形成的生成模型。