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占据不同时间生态位的牛头犬蚁复眼中的明适应和暗适应机制。

Light and dark adaptation mechanisms in the compound eyes of Myrmecia ants that occupy discrete temporal niches.

作者信息

Narendra Ajay, Greiner Birgit, Ribi Willi A, Zeil Jochen

机构信息

Department of Biological Sciences, Macquarie University, 205 Culloden Road, Sydney, NSW 2109, Australia Research School of Biology, The Australian National University, 46 Sullivans Creek Road, Canberra, ACT 2601, Australia

Research School of Biology, The Australian National University, 46 Sullivans Creek Road, Canberra, ACT 2601, Australia.

出版信息

J Exp Biol. 2016 Aug 15;219(Pt 16):2435-42. doi: 10.1242/jeb.142018.

Abstract

Ants of the Australian genus Myrmecia partition their foraging niche temporally, allowing them to be sympatric with overlapping foraging requirements. We used histological techniques to study the light and dark adaptation mechanisms in the compound eyes of diurnal (Myrmecia croslandi), crepuscular (M. tarsata, M. nigriceps) and nocturnal ants (M. pyriformis). We found that, except in the day-active species, all ants have a variable primary pigment cell pupil that constricts the crystalline cone in bright light to control for light flux. We show for the nocturnal M. pyriformis that the constriction of the crystalline cone by the primary pigment cells is light dependent whereas the opening of the aperture is regulated by an endogenous rhythm. In addition, in the light-adapted eyes of all species, the retinular cell pigment granules radially migrate towards the rhabdom, a process that in both the day-active M. croslandi and the night-active M. pyriformis is driven by ambient light intensity. Visual system properties thus do not restrict crepuscular and night-active ants to their temporal foraging niche, while day-active ants require high light intensities to operate. We discuss the ecological significance of these adaptation mechanisms and their role in temporal niche partitioning.

摘要

澳大利亚的牛头犬蚁属蚂蚁在时间上划分它们的觅食生态位,这使得它们能够与具有重叠觅食需求的蚂蚁同域共存。我们运用组织学技术研究了日间活动的(克罗斯兰牛头犬蚁)、晨昏活动的(塔氏牛头犬蚁、黑首牛头犬蚁)以及夜间活动的蚂蚁(梨形牛头犬蚁)复眼中的明适应和暗适应机制。我们发现,除了日间活动的物种外,所有蚂蚁都有一个可变的初级色素细胞瞳孔,在强光下它会收缩晶锥以控制光通量。我们针对夜间活动的梨形牛头犬蚁表明,初级色素细胞对晶锥的收缩是依赖光的,而孔径的打开则由内源性节律调节。此外,在所有物种适应光的眼睛中,视小杆细胞色素颗粒会径向迁移至视杆,在日间活动的克罗斯兰牛头犬蚁和夜间活动的梨形牛头犬蚁中,这一过程都是由环境光强度驱动的。因此,视觉系统特性并不会将晨昏活动和夜间活动的蚂蚁限制在它们的时间觅食生态位,而日间活动的蚂蚁则需要高光强度才能运作。我们讨论了这些适应机制的生态意义及其在时间生态位划分中的作用。

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