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Effects of ecdysteroid agonist RH-2485 reveal interactions between ecdysteroids and juvenile hormones in the development of Sesamia nonagrioides

机译:蜕皮甾体激动剂RH-2485的作用揭示了蜕皮激素与少年激素之间的相互作用

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Larvae of Sesamia nonagrioides developing under long day (LD) conditions pupate in the 5th or 6th instar, whereas under the short day (SD) conditions, they undergo several supernumerary larval molts and are regarded as diapausing. The development in early larval instars occurs in the LD larvae at a moderate and in the SD larvae at a high juvenile hormone (JH) titer; ecdysteroid titer cycles similarly under both conditions. The transformation to pupa is initiated by a burst of ecdysteroids at undetectable JH levels, whereas extra larval molts in the diapausing larvae are associated with moderate JH titer and irregular rises of ecdysteroids. Application of 0.2 ppm RH-2485 to the diet of the 6th instar larvae promotes hormonal changes supporting metamorphosis in the LD larvae and slightly accelerates larval molts in the diapausing SD larvae. The 0.5- and 1-ppm doses revert these patterns of endocrine regulations to a mode typical for early larval instars. Particularly dramatic is a JH titer increase provoked within 24 h in the LD larvae. After the treatment, both the LD and SD larvae undergo a series of larval molts, suggesting that hormonal programming of the larval development has been stabilized. A few insects receiving 1 ppm RH-2485, and a high proportion of those fed with 5 ppm RH-2485, deposit two cuticles within a single apolysis and die. Arch. Insect Biochem. Physiol. 65:74-84, 2007. (c) 2007 Wiley-Liss, Inc.
机译:在第5或第6龄幼虫在长日(LD)条件下化p的九生芝麻(Sesamia nonagrioides)的幼虫,而在短日(SD)条件下,它们经历数倍的幼虫蜕皮,被认为是滞育的。幼龄幼虫的发育发生在中等水平的LD幼虫和高幼体激素(JH)滴度的SD幼虫中。两种情况下蜕皮甾类的滴度周期相似。蜕皮的转化是通过在未检测到的JH水平下爆发的蜕皮类固醇引发的,而滞育幼虫中额外的幼虫蜕皮与适度的JH滴度和蜕皮类固醇的不规则升高有关。在第6龄幼虫的日粮中添加0.2 ppm RH-2485可促进荷尔蒙变化,从而支持LD幼虫的变态,并在滞育性SD幼虫中略微加速幼虫的蜕变。 0.5 ppm和1 ppm剂量可将这些内分泌调节模式恢复为幼虫龄幼虫的典型模式。特别引人注目的是LD幼虫在24小时内引起JH滴度升高。治疗后,LD和SD幼虫都经历了一系列幼虫蜕变,表明幼体发育的激素程序已稳定。少数接受1 ppm RH-2485的昆虫,以及喂食5 ppm RH-2485的昆虫中的很大一部分,在一次解育过程中沉积了两个角质层并死亡。拱。昆虫生化。生理学。 65:74-84,2007.(c)2007 Wiley-Liss,Inc.

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