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果蝇翅脉形成过程中的诱导机制。

Inductive mechanisms in the process of wing vein formation inDrosophila.

作者信息

García-Bellido A

机构信息

Centro de Biología Molecular, C.S.I.C., Universidad Autónoma, Madrid 34, Spain.

出版信息

Wilehm Roux Arch Dev Biol. 1977 Jun;182(2):93-106. doi: 10.1007/BF00848050.

Abstract

The mechanisms underlying the formation of veins in the wing ofDrosophila have been studied by means of clonal analysis. To this end the phenotype of vein-suppression mutants (crossveinless, veinlet andradius incompletus), the vein-addition mutantplexus and a mutant causing the appearance of chaetae on the wing veins (hairy) were analysed both singly and in double mutant combinations. Subsequently various combinations of these mutants were studied in genetic mosaics. The results indicate that the cells of the dorsal surface of the wing express their genetic constitution autonomously with respect to these mutations. The ventral surface, however, has a non-autonomous behaviour with respect to vein formation but an autonomous one with respect to chaeta differentiation. Since chaeta differentiation is determined before puparium formation, i.e. before both wing surfaces some into contact, it is suggested that vein determination results from a genetic decision occurring autonomously and independently in the cells of both wing surfaces, also prior to pupariation. The final extension and course of the wing veins are modulated by cells of the dorsal surface inducing the genetically competent cells of the ventral surface.

摘要

通过克隆分析研究了果蝇翅膀中静脉形成的潜在机制。为此,对静脉抑制突变体(无交叉静脉、小静脉和不完全半径)、静脉添加突变体丛以及导致翅膀静脉上出现刚毛的突变体(多毛)的表型进行了单独分析和双突变体组合分析。随后,在遗传嵌合体中研究了这些突变体的各种组合。结果表明,翅膀背面的细胞在这些突变方面自主表达其遗传构成。然而,腹面在静脉形成方面具有非自主行为,但在刚毛分化方面具有自主行为。由于刚毛分化在蛹形成之前就已确定,即在两个翅膀表面接触之前,因此有人提出静脉的确定是由两个翅膀表面的细胞在蛹化之前自主且独立发生的遗传决定导致的。翅膀静脉的最终延伸和走向是由背面的细胞诱导腹面具有遗传能力的细胞来调节的。

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