Haynie John L
Department of Zoology, University of Washington, Seattle, Washington, USA.
Wilehm Roux Arch Dev Biol. 1982 Sep;191(5):293-300. doi: 10.1007/BF00848488.
The regulative behavior of fragments of the imaginal discs of the wing and first leg was studied when these fragments were combined with fragments of other thoracic imaginal discs. A fragment of the wing disc which does not normally regenerate when cultured could be stimulated to regenerate by combination with certain fragments of the haltere disc. When combined with a haltere disc fragment thought to be homologous by the criteria of morphology and the pattern of homoeotic transformation, such stimulated intercalary regeneration was not observed. Combinations of first and second leg disc fragments showed that a lateral first leg fragment could be stimulated to regenerate medial structures when combined with a medial second leg disc fragment but not when combined with a lateral second leg disc fragment. Combinations of wing and second leg disc fragments showed that one fragment of the second leg disc is capable of stimulating regeneration from a wing disc fragment while another second leg disc fragment fails to stimulate such regeneration. It is suggested that absence of intercalary regeneration in combinations of fragments of different thoracic imaginal discs is a result of homology or identity of the positional information residing in the cells of the fragments. The pattern of correspondence of positional information revealed by this analysis is consistant with the pattern of homology determined by morphological observation and by analysis of the positional specificity of homoeotic transformation among serially homologous appendages. The implications of the existence of homologous positional information in wing and second leg discs which share a common cell lineage early in development are discussed.
当翅和第一腿的成虫盘片段与其他胸部成虫盘片段结合时,对其调节行为进行了研究。通常在培养时不能再生的翅盘片段,与某些平衡棒盘片段结合后可被刺激再生。当与根据形态学标准和同源异型转化模式被认为是同源的平衡棒盘片段结合时,未观察到这种刺激的居间再生。第一腿盘和第二腿盘片段的组合表明,外侧的第一腿片段与内侧的第二腿盘片段结合时可被刺激再生内侧结构,但与外侧的第二腿盘片段结合时则不能。翅盘和第二腿盘片段的组合表明,第二腿盘的一个片段能够刺激翅盘片段再生,而另一个第二腿盘片段则不能刺激这种再生。有人提出,不同胸部成虫盘片段组合中居间再生的缺失是片段细胞中存在的位置信息同源或相同的结果。通过这种分析揭示的位置信息对应模式与通过形态学观察以及对系列同源附肢间同源异型转化的位置特异性分析所确定的同源模式一致。讨论了在发育早期具有共同细胞谱系的翅盘和第二腿盘中存在同源位置信息的意义。