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果蝇成虫盘原基中的内在生长控制,以及导致过度生长的致死突变的自主作用。

Intrinsic growth control in the imaginal primordia of Drosophila, and the autonomous action of a lethal mutation causing overgrowth.

作者信息

Bryant P J, Levinson P

出版信息

Dev Biol. 1985 Feb;107(2):355-63. doi: 10.1016/0012-1606(85)90317-3.

Abstract

Cell proliferation in Drosophila imaginal discs appears to be regulated by a disc-intrinsic mechanism involving local cell interactions that also control the formation of patterns of differentiation. This growth-control mechanism breaks down in animals homozygous for the mutation lethal (2) giant discs (l(2)gd) which remain as larvae for up to 9 days longer than normal. During this time cell proliferation continues in the imaginal discs as well as in the imaginal rings for the salivary glands, foregut, and hindgut, so that these tissues become greatly overgrown. When wild-type wing discs from mid-third instar larvae were removed and cultured for up to 28 days in wild-type female adult hosts, they grew and terminated growth at a cell number close to that which would be attained in situ by the time of pupariation. On the other hand, wing discs from l(2)gd homozygotes grew rapidly and continuously when cultivated in wild-type hosts, reached an enormous size, and acquired abnormal folding patterns. Overgrowth of mutant imaginal rings also continued during culture of these tissues in wild-type hosts. We conclude that overgrowth in this mutant is due to an autonomous defect in the imaginal primordia, which requires an extended larval period for its expression in situ.

摘要

果蝇成虫盘的细胞增殖似乎受一种盘内固有机制调控,该机制涉及局部细胞相互作用,这种相互作用也控制着分化模式的形成。在纯合致死(2)巨盘(l(2)gd)突变的动物中,这种生长控制机制失效,这些动物作为幼虫的存活时间比正常情况长9天。在此期间,成虫盘以及唾液腺、前肠和后肠的成虫环中的细胞增殖持续进行,导致这些组织过度生长。从中三龄幼虫取出的野生型翅盘在野生型成年雌性宿主中培养长达28天,它们生长并在接近化蛹时在原位达到的细胞数量时终止生长。另一方面,l(2)gd纯合子的翅盘在野生型宿主中培养时迅速且持续生长,达到巨大尺寸,并呈现异常折叠模式。在野生型宿主中培养这些组织时,突变成虫环的过度生长也持续存在。我们得出结论,该突变体中的过度生长是由于成虫原基中的自主缺陷,这种缺陷在原位表达需要延长的幼虫期。

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