Depa Łukasz, Kaszyca-Taszakowska Natalia, Taszakowski Artur, Kanturski Mariusz
Institute of Biology, Biotechnology and Environmental Protection, Faculty of Natural Sciences, University of Silesia in Katowice, Bankowa 9, 40-007, Katowice, Poland.
Biol Rev Camb Philos Soc. 2020 Dec;95(6):1574-1589. doi: 10.1111/brv.12629. Epub 2020 Jul 12.
This review investigates ant-aphid mutualism (trophobiosis), in particular focusing on evolutionary processes in aphids resulting from this interaction. This broad literature review allows us to revise existing views on certain aspects of this mutualism and provide the first timeline of its possible development over a geological timescale. We propose a new classification of ant-aphid mutualism with respect to its ecological characteristics and present new explanations of the development of certain morphological structures of aphids as resulting from adaptation to a trophobiotic relationship with ants. In light of these findings, the presence of the so-called 'trophobiotic organ' in all myrmecophilous aphids is questioned. We review various communication modes between aphids and mutualistic ants and the possible influence of this symbiosis on modifications of aphid life cycles. Recent evidence on the suspected role of endosymbiotic bacteria in the development of mutualism is discussed. Finally, we propose a first timeline of ant-aphid interactions leading to the development of particular adaptations of aphids to mutualism, from general interactions between diverging Aphidomorpha and ants in the late Mesozoic to more specific coevolution between the aphid tribe Fordini and the ant genus Lasius.
本综述研究了蚂蚁与蚜虫的共生关系(营养共生),尤其关注这种相互作用在蚜虫中引发的进化过程。这一广泛的文献综述使我们能够修正关于这种共生关系某些方面的现有观点,并提供其在地质时间尺度上可能发展的首个时间线。我们根据蚂蚁与蚜虫共生关系的生态特征提出了一种新的分类,并对蚜虫某些形态结构的发展给出了新的解释,认为这是蚜虫适应与蚂蚁营养共生关系的结果。鉴于这些发现,所有蚁栖蚜虫中所谓“营养共生器官”的存在受到了质疑。我们回顾了蚜虫与共生蚂蚁之间的各种通讯方式,以及这种共生关系对蚜虫生命周期改变可能产生的影响。讨论了关于内共生细菌在共生关系发展中所怀疑作用的最新证据。最后,我们提出了蚂蚁与蚜虫相互作用的首个时间线,该时间线涵盖了蚜虫为适应共生关系而产生特定适应性的过程,从晚中生代不同蚜亚目与蚂蚁之间的一般相互作用,到蚜虫福特蚜族与蚂蚁蚁属之间更具体的协同进化。