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合子突变体无尾影响果蝇胚胎的前后外胚层区域。

The zygotic mutant tailless affects the anterior and posterior ectodermal regions of the Drosophila embryo.

作者信息

Strecker T R, Kongsuwan K, Lengyel J A, Merriam J R

出版信息

Dev Biol. 1986 Jan;113(1):64-76. doi: 10.1016/0012-1606(86)90108-9.

Abstract

The recessive zygotic lethal mutation tailless maps to region 100A5,6-B1,2 at the tip of the right arm of chromosome 3, and results in shortened pharyngeal ridges in the head skeleton of the mature embryo and the elimination of the eighth abdominal segment and telson. Although they have a normal body length, tailless embryos have a smaller number of abdominal segments, some of which are larger than normal. The mutant phenotype is seen as early as 8 hr postfertilization, when tailless embryos are observed to have fewer tracheal pits than wildtype. At 9 hr, tailless embryos appear to be missing segments A8, A9, and A10 and have an abnormal clypeolabrum, optic lobes, and procephalic lobe. Segments A4, A5, A6, and A7 appear larger in tailless embryos than wildtype at this stage. The tailless mutation, although affecting anterior and posterior ectodermal structures in the mature embryo, does not affect the formation of pole cells, the posterior midgut, or the proctodeum, which arise from the most posterior region of the embryo. The mutation does result, however, in the failure of Malpighian tubule formation. Consistent with its effect on ectodermal segments, tailless leads to a reduction in the number of segmented, paired ganglia in the ventral nerve cord as well as to an abrupt alteration in the posterior region of the tracheal system. The role the tailless gene may play in the formation of the most anterior and posterior regions of the embryo's ectodermal body plan is discussed.

摘要

隐性合子致死突变“无尾”定位于3号染色体右臂末端的100A5,6 - B1,2区域,导致成熟胚胎头部骨骼中的咽嵴缩短,第八腹节和尾节消失。尽管无尾胚胎的体长正常,但腹节数量较少,其中一些腹节比正常的大。早在受精后8小时就能观察到突变表型,此时无尾胚胎的气管凹比野生型少。在9小时时,无尾胚胎似乎缺少A8、A9和A10节段,并且唇基、视叶和前脑叶异常。在此阶段,无尾胚胎中的A4、A5、A6和A7节段比野生型的大。无尾突变虽然影响成熟胚胎的前后外胚层结构,但不影响极细胞、后肠中段或原肛的形成,这些结构起源于胚胎的最后部区域。然而,该突变确实导致了马氏管形成失败。与其对外胚层节段的影响一致,无尾导致腹神经索中分段的成对神经节数量减少,以及气管系统后部区域的突然改变。本文讨论了无尾基因在胚胎外胚层身体图式最前部和最后部区域形成中可能发挥的作用。

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