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首页> 外文期刊>Journal of Insect Physiology >Differential control of light-dark adaptation in the ocelli and compound eyes of Triatoma infestans.
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Differential control of light-dark adaptation in the ocelli and compound eyes of Triatoma infestans.

机译:差异性控制 Triatoma infestans 的眼和复眼的明暗适应。

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The adaptation to light of compound eyes in insects has been extensively documented and their adaptive role is well understood. Much less attention has been paid, however, to the control of ocelli sensitivity, a study which could help us to understand the functional role of these simple eyes. We analyzed the dynamic changes in the distribution of screening pigments which occur in the ocelli of the haematophagous bug, Triatoma infestans, when the insects are subjected either to light/dark cycles (LD), to constant darkness (DD) or constant light (LL). We then compared these changes with those occurring in the compound eyes of the same individuals and found that, while compound eyes are subject to the control of an endogenous circadian clock, the adaptation of the ocelli is entirely dependent on environmental illumination. In addition, we have observed that environmental temperature is not involved in the control of screening pigments in either ocelli or compound eyes as a direct stimulus, nor as a Zeitgeber. The existence of a differential control in the components of the dual visual system represents an adaptive advantage in the adjustment of visual sensitivity in insects exposed to quick changes in lighting conditions in their natural habitat. We discuss the implications of our findings with regards to the biology of triatomines and with respect to the general understanding the functional role of insect ocelli.
机译:昆虫中复眼对光的适应性已有大量文献记载,它们的适应性作用已广为人知。然而,对ocelli敏感性的控制却很少受到关注,这项研究可以帮助我们了解这些简单眼睛的功能。我们分析了当昆虫受到明/暗循环(LD)或恒定黑暗( Triatoma infestans )感染时,在食血虫的卵细胞中出现的筛选色素分布的动态变化。 DD)或常亮(LL)。然后,我们将这些变化与相同个体的复眼中发生的变化进行了比较,发现,尽管复眼受内生生物钟的控制,但绿眼的适应性完全取决于环境照明。另外,我们已经观察到环境温度不作为直接刺激物或Zeitgeber 作为直接刺激物而参与到对混血儿或复眼中色素的筛选控制中。双重视觉系统的组件中存在差异控制,代表了在暴露于自然栖息地光照条件快速变化的昆虫的视觉灵敏度调整中的自适应优势。我们讨论了我们的发现对三atomines的生物学和一般理解昆虫ocelli的功能作用的意义。

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