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丝裂霉素C对丽蝇的刚毛形成器的作用。

The action of mitomycin C on the bristle-forming apparatus ofPhormia regina.

作者信息

Schaerer H R

机构信息

Institute of Zoology, University of Zurich, Switzerland.

出版信息

Wilehm Roux Arch Dev Biol. 1976 Jun;179(2):145-158. doi: 10.1007/BF00848299.

Abstract

Mitomycin C, a known inhibitor of DNA synthesis, was injected into white prepupae ofPhormia regina, Adults which developed from these prepupae showed alterations of the bristle pattern, loss of whole bristle organs, and the formation of bristles without sockets or sockets without bristle shafts. Dose-dependence was found for all modifications. For the abdominal microchaetae, the period of maximum sensitivity to the drug began at 16 h after puparium formation, that is well after all of the macrochaetae and most of the microchaetae of the thorax and the head had grown insensitive. Bristle forming trichogen and tormogen cells developed high degrees of polyteny with distinctly banded chromosomes. Photometric determination of the amount of Feulgen-DNA per nucleus led to estimations of DNA classes ranging from 256C to 2048 C. DNA contents of nuclei from Mitomycin C treated animals were significantly lower during the actual growth of the bristle apparatus, but reached approximately the same level as the controls prior to the time of emergence. Cytological investigations proved that doses of Mitomycin C which yielded bristle organs either without sockets or without shafts do not affect the differential division of the bristle mother cell. Polytene chromosomes damaged by Mitomycin C displayed a diffuse and irregular banding pattern. Possible modes of action of Mitomycin C on replicating polytene chromosomes are discussed.

摘要

丝裂霉素C是一种已知的DNA合成抑制剂,被注射到丽蝇蛹前期的白色蛹中。从这些蛹前期发育而来的成虫表现出刚毛模式的改变、整个刚毛器官的缺失,以及无窝的刚毛或无刚毛轴的窝的形成。所有这些改变都呈现出剂量依赖性。对于腹部微刚毛,对该药物的最大敏感时期始于化蛹后16小时,即在胸部和头部的所有大刚毛以及大多数微刚毛变得不敏感之后很久。形成刚毛的毛原细胞和膜原细胞发展出高度多线化且具有明显带纹的染色体。通过光度法测定每个细胞核中孚尔根-DNA的量,得出DNA类别估计范围从256C到2048C。在刚毛器官实际生长期间,用丝裂霉素C处理的动物细胞核中的DNA含量显著降低,但在羽化前达到与对照大致相同的水平。细胞学研究证明,产生无窝或无轴刚毛器官的丝裂霉素C剂量并不影响刚毛母细胞的差异分裂。被丝裂霉素C损伤的多线染色体呈现出弥散且不规则的带纹模式。本文讨论了丝裂霉素C对复制中的多线染色体可能的作用方式。

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