Areiza Maria, Nouzova Marcela, Rivera-Perez Crisalejandra, Noriega Fernando G
Department of Biological Sciences, Florida International University, Miami, FL 33199, USA.
Department of Biological Sciences, Florida International University, Miami, FL 33199, USA.
Insect Biochem Mol Biol. 2014 Nov;54:98-105. doi: 10.1016/j.ibmb.2014.09.006. Epub 2014 Sep 23.
Juvenile hormones (JHs) are synthesized by the corpora allata (CA) and play a key role in insect development. A decrease of JH titer in the last instar larvae allows pupation and metamorphosis to proceed. As the anti-metamorphic role of JH comes to an end, the CA of the late pupa (or pharate adult) becomes again "competent" to synthesize JH, which would play an essential role orchestrating reproductive maturation. In the present study, we provide evidence that ecdysis triggering hormone (ETH), a key endocrine factor involved in ecdysis control, acts as an allatotropic regulator of JH biosynthesis, controlling the exact timing of CA activation in the pharate adult mosquito. Analysis of the expression of Aedes aegypti ETH receptors (AeaETHRs) revealed that they are present in the CA and the corpora cardiaca (CC), and their expression peaks 4 h before eclosion. In vitro stimulation of the pupal CA glands with ETH resulted in an increase in JH synthesis. Consistent with this finding, silencing AeaETHRs by RNA interference (RNAi) in pupa resulted in reduced JH synthesis by the CA of one day-old adult females. Stimulation with ETH resulted in increases in the activity of juvenile hormone acid methyltransferase (JHAMT), a key JH biosynthetic enzyme. Furthermore, inhibition of IP3R-operated mobilization of endoplasmic reticulum Ca(2+) stores prevented the ETH-dependent increases of JH biosynthesis and JHAMT activity. All together these findings provide compelling evidence that ETH acts as a regulatory peptide that ensures proper developmental timing of JH synthesis in pharate adult mosquitoes.
保幼激素(JHs)由咽侧体(CA)合成,在昆虫发育中起关键作用。末龄幼虫体内保幼激素滴度的降低会促使化蛹和变态过程的进行。随着保幼激素抗变态作用的结束,晚期蛹(或隐成虫)的咽侧体再次具备合成保幼激素的“能力”,而保幼激素在协调生殖成熟过程中起着至关重要的作用。在本研究中,我们提供证据表明,蜕皮触发激素(ETH)作为参与蜕皮控制的关键内分泌因子,充当保幼激素生物合成的促咽侧体素调节因子,控制着隐成虫期蚊子咽侧体激活的精确时间。对埃及伊蚊ETH受体(AeaETHRs)表达的分析表明,它们存在于咽侧体和心侧体(CC)中,且其表达在羽化前4小时达到峰值。用ETH对蛹的咽侧体腺进行体外刺激会导致保幼激素合成增加。与这一发现一致,通过RNA干扰(RNAi)使蛹中的AeaETHRs沉默,会导致1日龄成年雌蚊的咽侧体保幼激素合成减少。用ETH刺激会导致保幼激素酸甲基转移酶(JHAMT,一种关键的保幼激素生物合成酶)的活性增加。此外,抑制由IP3R介导的内质网Ca(2+) 储存的动员可阻止ETH依赖的保幼激素生物合成增加和JHAMT活性增加。所有这些发现共同提供了令人信服的证据,表明ETH作为一种调节肽,确保了隐成虫期蚊子保幼激素合成的正确发育时间。