Altaratz M, Applebaum S W, Richard D S, Gilbert L I, Segal D
Department of Entomology, Hebrew University, Rehovot, Israel.
Mol Cell Endocrinol. 1991 Oct;81(1-3):205-16. doi: 10.1016/0303-7207(91)90219-i.
Juvenile hormone (JH) is a major regulator of insect development and reproduction and its titer is determined largely by central nervous system regulation of JH synthesis by the corpora allata. To establish the basis for a molecular genetic dissection of the neuroendocrine system responsible for modulating JH titer, a radiochemical assay was utilized to examine JH synthesis in vitro by the isolated corpus allatum as well as the regulation of this synthesis by brain extracts of wild-type and apterous mutant Drosophila melanogaster females during reproductive maturation. JH production by glands of wild-type females increases in parallel with the progress of ovarian maturation, the major product of the adult corpus allatum being juvenile hormone 3 bis-epoxide (JHB3). Gland activity appears to be regulated by both the availability of JH precursors and the level of terminal oxidase(s) in the JH biosynthetic pathway. The brain contains an allatostatic factor, that is transmitted to the glands via nervous connections. Allatostatin production in the brain appears to be positively regulated by JHB3. Adult corpora allata from the mutants ap4 and ap56f synthesize very low levels of JH; additionally, brains of ap56f homozygotes lack allatostatic activity.
保幼激素(JH)是昆虫发育和繁殖的主要调节因子,其滴度在很大程度上由中枢神经系统对咽侧体合成JH的调节所决定。为了建立对负责调节JH滴度的神经内分泌系统进行分子遗传学剖析的基础,采用放射性化学分析法检测了离体咽侧体在体外合成JH的情况,以及野生型和无翅突变型黑腹果蝇雌性在生殖成熟过程中脑提取物对这种合成的调节。野生型雌性腺体产生的JH与卵巢成熟进程同步增加,成年咽侧体的主要产物是保幼激素3双环氧物(JHB3)。腺体活性似乎受JH前体的可用性和JH生物合成途径中末端氧化酶水平的调节。脑中含有一种咽侧体抑制因子,它通过神经连接传递到腺体。脑中的咽侧体抑制素产生似乎受到JHB3的正向调节。来自突变体ap4和ap56f的成年咽侧体合成的JH水平非常低;此外,ap56f纯合子的脑缺乏咽侧体抑制活性。