Sliter T J, Gilbert L I
Department of Biology, University of North Carolina, Chapel Hill 27599-3280.
Genetics. 1992 Mar;130(3):555-68. doi: 10.1093/genetics/130.3.555.
Loss-of-function mutations of the dre4 gene of Drosophila melanogaster caused stage-specific developmental arrest, the stages of arrest coinciding with periods of ecdysteroid (molting hormone) regulated development. Nonconditional mutations resulted in the arrest of larval development in the first instar; embryogenesis was not impaired, and mutant larvae were behaviorally normal and long-lived. At 31 degrees the temperature-sensitive dre4e55 allele caused the arrest of larval development in the first or second instars. When upshifted to 31 degrees at various times during development, dre4e55 mutants exhibited nonpupariation of third-instar larvae, failure of pupal head eversion, failure of adult differentiation, or noneclosion of pharate adults. Under some temperature regimens second-instar larvae pupariated precociously without entering the normally intervening third-instar. Nonpupariation and defects in metamorphosis were associated with the reduction or elimination of ecdysteroid peaks normally associated with late-larval, prepupal, pupal and pharate adult development. Ecdysteroid production by larval ring glands from dre4e55 hemizygous larvae was suppressed after 2 hr of incubation in vitro at 31 degrees, indicating autonomous expression of the dre4 gene in the ring gland. We postulate that the dre4 gene is required for ecdysteroid production at multiple stages of Drosophila development and that the pathologies observed in dre4 mutants reflect developmental consequences of ecdysteroid deficiency.
果蝇(Drosophila melanogaster)dre4基因的功能丧失突变导致了阶段特异性的发育停滞,停滞阶段与蜕皮甾体(蜕皮激素)调节发育的时期一致。非条件突变导致一龄幼虫的幼虫发育停滞;胚胎发生未受损,突变幼虫行为正常且寿命长。在31摄氏度时,温度敏感的dre4e55等位基因导致一龄或二龄幼虫的幼虫发育停滞。在发育过程中的不同时间点升至31摄氏度时,dre4e55突变体表现出三龄幼虫不能化蛹、蛹头部外翻失败、成虫分化失败或准成虫不能羽化。在某些温度条件下,二龄幼虫早熟化蛹,而不进入正常的中间三龄阶段。不能化蛹和变态缺陷与通常与幼虫后期、预蛹期、蛹期和准成虫期发育相关的蜕皮甾体峰值的减少或消除有关。在31摄氏度体外培养2小时后,来自dre4e55半合子幼虫的幼虫环腺的蜕皮甾体产生受到抑制,表明dre4基因在环腺中自主表达。我们推测,dre4基因在果蝇发育的多个阶段是蜕皮甾体产生所必需的,并且在dre4突变体中观察到的病理反映了蜕皮甾体缺乏的发育后果。