Zhao Zhangwu, Zera Anthony J
School of Biological Sciences, University of Nebraska, Lincoln, NE 68588, USA.
J Insect Physiol. 2004 Oct;50(10):965-73. doi: 10.1016/j.jinsphys.2004.07.008.
A previous study documented a high amplitude, morph-specific daily cycle in the hemolymph JH titer in the wing-polymorphic cricket, Gryllus firmus. The JH titer rose and fell 10-20 fold in the flight-capable [LW(f), long-winged] morph during the late-photophase-early scotophase, while it was relatively constant during that time in the flightless (SW, short-winged) morph. In the present study we documented a dramatic morph-specific daily cycle in the in vitro rate of juvenile hormone (JH) biosynthesis that was tightly correlated with the hemolymph JH titer on days 5-7 of adulthood. Biosynthetic rates rose and fell 1-2 fold between the late photophase-early scotophase on each of days 5-6 and 6-7 of adulthood in the LW(f) morph, while biosynthetic rates were relatively constant during this period in the flightless, short-winged morph (SW), except for a slight dip in the rate of biosynthesis late in the photophase on these days. Similar morph-specific patterns of JH biosynthesis were observed whether rates were measured on corpora allata attached to corpora cardiaca in males or females, or on corpora allata alone. Hemolymph juvenile hormone esterase activity was significantly higher in the LW(f) vs. the SW morph during the beginning of scotophase, when the JH titer is decreasing rapidly in the LW(f) morph. Results indicate that the morph-specific daily cycle in the JH titer in G. firmus is primarily regulated by a morph-specific daily cycle in the rate of JH biosynthesis and to a lesser degree by hemolymph JH esterase activity. This is the first documentation of a diurnal cycle in the rate of JH biosynthesis in any insect, or a daily cycle in the rate of JH biosynthesis that is correlated with a specific morph in a polymorphic species. Results have important implications for the endocrine regulation of dispersal polymorphism, circadian rhythms of insect hormone titers and their regulators, and general studies of the JH titer and its regulation in insects.
先前的一项研究记录了翅多型蟋蟀(Gryllus firmus)血淋巴中保幼激素(JH)滴度存在高振幅、形态特异性的日周期。在具备飞行能力的[LW(f),长翅]形态中,JH滴度在光照后期 - 暗期早期上升和下降10 - 20倍,而在无飞行能力的(SW,短翅)形态中,在此期间相对恒定。在本研究中,我们记录了成年期第5 - 7天体外保幼激素(JH)生物合成速率存在显著的形态特异性日周期,且与血淋巴JH滴度紧密相关。在成年期第5 - 6天和6 - 7天的光照后期 - 暗期早期之间,LW(f)形态的生物合成速率上升和下降1 - 2倍,而在此期间,无飞行能力的短翅形态(SW)的生物合成速率相对恒定,只是在这些日子的光照后期生物合成速率略有下降。无论在雄性还是雌性中,测量附着于心侧体的咽侧体或单独测量咽侧体时,都观察到了类似的JH生物合成的形态特异性模式。在暗期开始时,当LW(f)形态中的JH滴度迅速下降时,LW(f)形态的血淋巴保幼激素酯酶活性显著高于SW形态。结果表明,G. firmus中JH滴度的形态特异性日周期主要由JH生物合成速率的形态特异性日周期调节,在较小程度上由血淋巴JH酯酶活性调节。这是首次记录任何昆虫中JH生物合成速率的昼夜周期,或与多型物种中特定形态相关的JH生物合成速率的日周期。这些结果对扩散多态性的内分泌调节、昆虫激素滴度及其调节剂的昼夜节律以及昆虫中JH滴度及其调节的一般研究具有重要意义。