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["黑腹果蝇雄性前腿盘的原基图谱、决定及转决定能力"]

["Anlageplan", determination and capacity for transdetermination of the male foreleg disc of Drosophila melanogaster].

作者信息

Schubiger Gerold

机构信息

Zoologisch-vergl. anatomisches Institut der Universität Zürich, Schweiz.

出版信息

Wilhelm Roux Arch Entwickl Mech Org. 1968 Mar;160(1):9-40. doi: 10.1007/BF00573645.

Abstract
  1. Various fragments of the disc of the foreleg of the late third instar were implanted individually into host larvae of the same age. The imaginal discs ofDrosophila melanogaster have a mosaic determination. Therefore it is always possible to correlate certain adult structures with particular fragments. Primordia of morphologically well distinguished elements such as the claws, sex comb, transversal rows and different groups of sensilla were localized in an anlageplan. 2. It has been shown from the arrangement of the primordia that the disc evaginates in a telescopic fashion during pupal development. 3. In the trochanter the anlage of a bristle organ (edge bristle) was localised. The arrangement of the sensilla and the partial hairiness allow a definite identification of this structure even in small fragments. 4. If we divide the primordia of the edge bristle from discs of thelate third instar and implant these fragments into 72-80 h old larvae the preparations rarely show differentiation of the edge bristle. It seems that at this stage only a small number of cells is competent to form this structure. The edge bristle appears more often if the cells of these fragments are able to proliferate before metamorphosis. 5. The complementary halves of asingle disc can be followed. Young fragments differentiate an edge bristle in each partner much more frequently than fragments of old discs (115 h). Therefore, the cells must lose the capability to form an edge bristle between 72 and 115 h. 6. Transdetermination of leg discs after culture in adults for 14 d lead to the following adult structures: spread of wings, basis of wings, thorax, antenna and proboscis. Elements derived from the wing disc appear with the highest frequencies. 7. Transdeterminations do not equally arise from all of the cells of the leg primordia. Elements of the arista e.g., originate only from the distal parts of the leg anlage. 8. Old donor discs deliver allotypic structures more frequently than young ones. Even fragments from 5-6 h old prepupal discs can still transdetermine. 9. In the discussion it is proposed that transdetermination occurs under physiological conditions found at a late larval or early pupal stage.
摘要
  1. 将三龄晚期前腿翅盘的各个片段分别植入同龄的宿主幼虫体内。黑腹果蝇的成虫翅盘具有镶嵌决定作用。因此,总能将某些成虫结构与特定片段联系起来。形态上明显不同的结构原基,如爪、性梳、横向排和不同组的感器,都定位在一个原基图谱中。2. 从原基的排列可以看出,翅盘在蛹发育过程中以伸缩方式外翻。3. 在转节中定位了一个刚毛器官(边缘刚毛)的原基。即使在小片段中,感器的排列和部分多毛情况也能明确识别这个结构。4. 如果我们从三龄晚期的翅盘中分离出边缘刚毛的原基,并将这些片段植入72 - 80小时龄的幼虫中,制备物很少显示出边缘刚毛的分化。似乎在这个阶段只有少数细胞有能力形成这个结构。如果这些片段的细胞在变态前能够增殖,边缘刚毛出现的频率会更高。5. 可以追踪单个翅盘的互补半片。年轻片段在每个伙伴中分化出边缘刚毛的频率比老翅盘(115小时)的片段高得多。因此,细胞在72到115小时之间必定失去了形成边缘刚毛的能力。6. 腿翅盘在成虫中培养14天后的转决定产生了以下成虫结构:翅展开、翅基部、胸部、触角和喙。源自翅盘的结构出现频率最高。7. 转决定并非同样地从腿原基的所有细胞产生。例如,触角芒的结构仅起源于腿原基的远端部分。8. 老的供体翅盘比年轻的翅盘更频繁地产生异型结构。即使是来自5 - 6小时龄预蛹翅盘的片段仍然可以转决定。9. 在讨论中提出,转决定发生在幼虫晚期或蛹早期的生理条件下。

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