Shingleton Alexander W, Sisk Geoffroy C, Stern David L
Department of Ecology and Evolutionary Biology, Princeton University, Princeton, NJ 08544, USA.
BMC Dev Biol. 2003 Aug 8;3:7. doi: 10.1186/1471-213X-3-7.
Many insects undergo a period of arrested development, called diapause, to avoid seasonally recurring adverse conditions. Whilst the phenology and endocrinology of insect diapause have been well studied, there has been comparatively little research into the developmental details of diapause. We investigated developmental aspects of diapause in sexually-produced embryos of the pea aphid, Acyrthosiphon pisum.
We found that early stages of embryogenesis progressed at a temperature-independent rate, characteristic of diapause, whereas later stages of embryogenesis progressed at a temperature-dependent rate. However, embryos maintained at very high temperatures during the temperature-independent stage showed severe developmental abnormalities. Under no temperature regime did embryos display a distinct resting stage. Rather, morphological development progressed slowly but continuously throughout embryogenesis.
Diapause in the pea aphid, and perhaps in many other insects, is a temperature-independent slowing but not a cessation of morphological development. This suggests that the mechanisms limiting developmental rate during diapause may be the same as those controlling developmental rate at other stages of growth.
许多昆虫会经历一段发育停滞期,即滞育,以避免季节性反复出现的不利条件。虽然昆虫滞育的物候学和内分泌学已得到充分研究,但对滞育的发育细节研究相对较少。我们研究了豌豆蚜(Acyrthosiphon pisum)有性生殖胚胎滞育的发育方面。
我们发现胚胎发育早期以与温度无关的速率进行,这是滞育的特征,而胚胎发育后期以与温度相关的速率进行。然而,在与温度无关阶段保持在非常高温度下的胚胎显示出严重的发育异常。在任何温度条件下,胚胎都未表现出明显的静止阶段。相反,形态发育在整个胚胎发生过程中缓慢但持续进行。
豌豆蚜以及可能许多其他昆虫的滞育是形态发育的与温度无关的减缓,而非停止。这表明滞育期间限制发育速率的机制可能与生长其他阶段控制发育速率的机制相同。