Wakimoto B T, Turner F R, Kaufman T C
Dev Biol. 1984 Mar;102(1):147-72. doi: 10.1016/0012-1606(84)90182-9.
Embryogenesis in individuals with mutations or deficiencies of the genes in the polytene interval 84A-84B1,2 of Drosophila melanogaster was examined using scanning electron microscopy (SEM). The developmental function of this region of chromosome 3 is of particular interest since it contains the Antennapedia Gene Complex (ANT-C), a gene cluster that includes the homoeotic proboscipedia (pb), Sex combs reduced (Scr), and Antennapedia (Antp) loci. The results of SEM studies, clonal analyses, and temperature-shift experiments show that the fushi tarazu (ftz) and zerknullt (zen) genes, which map between pb and Scr, are involved in processes initiated during embryogenesis. The activity of ftz+ appears to be required within the first 4 hr of development for the establishment of the proper number of segments in the embryonic germ band. Individuals with ftz mutations or deficiencies produce only half the normal number of segments. Each of the segments is twice the normal width and is apparently comprised of cells that would normally form two separate metameres. The zen allele is required from about 2-4 hr of embryogenesis. Mutations of this gene result in disturbances of morphogenetic movements during gastrulation. The mutant phenotype is characterized by the absence of the optic lobe, defects in involution of the head segments, and in some cases, failure of germ band elongation. A requirement during embryogenesis for the activities of other genes residing in the 84A-84B1,2 polytene interval is suggested by the phenotypes of individuals heterozygous or homozygous for chromosomal deficiencies. Using the deficiencies Df(3R)AntpNs+R17, Df(3R)Scr, and Df(3R)ScxW+RX2, we examined the effects of deleting the distal portions or all of the 84A-84B1,2 interval. The defects in deletion heterozygotes suggest that the wild-type activity of some gene(s) other than zen, within or just adjacent to the 84B1,2 doublet, is required to complete normal head involution. The deletion of all the loci in the 84A5-84B1,2 interval results in grossly abnormal morphology and morphogenesis of the gnathocephalic appendages of the embryo. From these studies we conclude that mutations and deficiencies of genes associated with the ANT-C have profound effects on embryogenesis. The mutant phenotypes suggest, in addition to ensuring proper segment identity, the wild-type alleles of the 84A-84B1,2 genes are necessary for normal segmentation and elongation of the germ band and normal head involution.
利用扫描电子显微镜(SEM)对黑腹果蝇多线区间84A - 84B1,2中基因发生突变或缺陷的个体的胚胎发育过程进行了研究。3号染色体这个区域的发育功能特别引人关注,因为它包含触角足基因复合体(ANT - C),这是一个基因簇,包括同源异形的触须基因(pb)、性梳减少基因(Scr)和触角足基因(Antp)位点。扫描电子显微镜研究、克隆分析和温度转换实验的结果表明,位于pb和Scr之间的分节基因(ftz)和零空基因(zen)参与了胚胎发育过程中起始的一些过程。ftz + 的活性似乎在发育的最初4小时内对于在胚胎胚带中建立适当数量的体节是必需的。具有ftz突变或缺陷的个体产生的体节数量仅为正常数量的一半。每个体节的宽度是正常宽度的两倍,并且显然由通常会形成两个独立体节的细胞组成。zen等位基因在胚胎发育约2 - 4小时是必需的。该基因的突变会导致原肠胚形成过程中形态发生运动的紊乱。突变表型的特征是没有视叶、头部体节内卷缺陷,在某些情况下,胚带伸长失败。染色体缺失的杂合子或纯合子个体的表型表明,在胚胎发育过程中需要位于84A - 84B1,2多线区间的其他基因的活性。利用缺失Df(3R)AntpNs + R17、Df(3R)Scr和Df(3R)ScxW + RX2,我们研究了删除84A - 84B1,2区间的远端部分或全部的影响。缺失杂合子中的缺陷表明,84B1,2双联体内部或紧邻其的除zen之外的某些基因的野生型活性对于完成正常的头部内卷是必需的。删除84A5 - 84B1,2区间内的所有位点会导致胚胎颚头部附肢的形态和形态发生严重异常。从这些研究中我们得出结论,与ANT - C相关的基因的突变和缺陷对胚胎发育有深远影响。突变表型表明,除了确保适当的体节特征外,84A - 84B1,2基因的野生型等位基因对于胚带的正常分节和伸长以及正常的头部内卷也是必需的。