Lomas L O, Kaufman W R
Department of Zoology, University of Alberta, Edmonton, Canada.
Arch Insect Biochem Physiol. 1992;21(3):169-78. doi: 10.1002/arch.940210302.
In the adult female tick, Amblyomma hebraeum Koch (Acari: Ixodidae), salivary gland degeneration is triggered by an ecdysteroid, provided the female is above a critical weight (approximately 300-400 mg). In mated females, salivary gland degeneration is virtually complete within 4 days of detachment from the host. In virgin females, salivary gland degeneration is delayed by 4 days. This delay can be reversed by the injection of a male reproductive tract homogenate directly into the hemocoel. In this study, we consider a possible mechanism of action for this "male factor." Once mated, male factor likely gains access to its target tissue(s) as a humoral factor. Male factor, however, appears not to act by sensitizing the salivary glands to the action of ecdysteroids. Instead, it appears to act by accelerating the appearance of ecdysteroids in the hemolymph.
在成年雌性南非牛蜱(硬蜱科:钝缘蜱属)中,若雌性体重超过临界值(约300 - 400毫克),蜕皮甾体激素会引发唾液腺退化。在已交配的雌性蜱中,从宿主身上脱离4天内唾液腺退化几乎完成。在未交配的雌性蜱中,唾液腺退化会延迟4天。将雄性生殖道匀浆直接注入血腔可逆转这种延迟。在本研究中,我们探讨了这种“雄性因子”可能的作用机制。一旦交配,雄性因子可能作为一种体液因子进入其靶组织。然而,雄性因子似乎并非通过使唾液腺对蜕皮甾体激素的作用敏感来发挥作用。相反,它似乎是通过加速血淋巴中蜕皮甾体激素的出现来起作用。