Hartfelder Klaus, de Oliveira Tozetto Sibele, Rachinsky Anna
Zoologisches Institut, Universität Tübingen, LS Entwicklungsphysiologie, Auf der Morgenstelle 28, W-7400, Tübingen, Germany.
Rouxs Arch Dev Biol. 1993 Feb;202(3):176-180. doi: 10.1007/BF00365308.
Juvenile hormone synthesis in drone larvae of the honey bee was measured by an in vitro radiochemical assay. The developmental profile of corpora allata activity in male larvae showed considerable differences from queen larvae, the presumptive reproductive females, and was comparable to workers, the sterile female morph. Drone and worker larvae, however, differed drastically in the regulation of juvenile hormone biosynthesis, as revealed by the addition of farnesoic acid to the culture medium. This precursor stimulated juvenile hormone synthesis of drone glands nearly eightfold, whereas in worker larvae it is known to lead to an accumulation of methyl farnesoate. The sex-specific differences in endocrine activity indicate a role for juvenile hormone in the expression of genetically determined sexually dimorphic characters during metamorphosis, a role not currently accounted for in models describing endocrine regulation of insect development.
通过体外放射化学分析测定了蜜蜂雄蜂幼虫中保幼激素的合成。雄蜂幼虫咽侧体活性的发育模式与蜂王幼虫(假定的生殖雌蜂)有显著差异,与工蜂(不育的雌性形态)相当。然而,如向培养基中添加法尼酸所示,雄蜂和工蜂幼虫在保幼激素生物合成的调节上有极大差异。这种前体刺激雄蜂腺体的保幼激素合成增加近八倍,而在工蜂幼虫中,已知它会导致法尼酸甲酯的积累。内分泌活性的性别特异性差异表明保幼激素在变态过程中基因决定的性二态特征的表达中起作用,这一作用在描述昆虫发育内分泌调节的模型中目前并未得到解释。