蚂蚁的宏观生态多样化与被子植物的进化有关。

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2023-04-01 DOI:10.1093/evlett/qrad008
Matthew P Nelsen, Corrie S Moreau, C Kevin Boyce, Richard H Ree
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引用次数: 1

摘要

蚂蚁数量众多,种类繁多,几乎占据了世界上所有的栖息地和地区。先前的研究表明,蚂蚁的多样化与被子植物的兴起是一致的,而且随着蚂蚁开始扩大筑巢和觅食习惯,一些植物性状也开始进化。在这项研究中,我们调查了与植物的关联是否能够促进生态位扩展,并与蚂蚁的气候生态位进化有关。我们对1400多种蚂蚁的分析表明,蚂蚁的祖先从森林地面扩展到树冠,再扩展到非森林栖息地,与被子植物的进化创新密切相关。几个古近纪-新近纪蚂蚁谱系在多个大陆的非森林生境中独立多样化,追踪了具有亲缘体和适应干旱的被子植物的进化和扩张。树栖筑巢的进化追踪了与常湿热带雨林开始相关的被子植物生理变化,气候最佳和气候生态位进化速率与筑巢地点有关,树栖筑巢群具有更温暖、更少的季节性气候最佳,气候生态位进化速率更低。我们的工作进一步强调了蚂蚁生态位多样化发生的不同途径,以及被子植物如何影响相互作用谱系的生态和进化轨迹。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Macroecological diversification of ants is linked to angiosperm evolution.

Ants are abundant, diverse, and occupy nearly all habitats and regions of the world. Previous work has demonstrated that ant diversification coincided with the rise of the angiosperms, and that several plant traits evolved as ants began to expand their nesting and foraging habits. In this study, we investigate whether associations with plants enabled niche expansion and are linked to climatic niche evolution in ants. Our analysis of over 1,400 ant species reveals that ancestral expansion from forest floors into the canopy and out into non-forested habitats closely followed evolutionary innovations in angiosperms. Several Paleogene-Neogene ant lineages independently diversified in non-forested habitats on multiple continents, tracking the evolution and expansion of elaiosome-bearing and arid-adapted angiosperms. The evolution of arboreal nesting tracked shifts in angiosperm physiology associated with the onset of everwet tropical rainforests, and climatic optima and rates of climatic niche evolution were linked to nesting location, with arboreally nesting groups having warmer and less seasonal climatic optima, and lower rates of climatic niche evolution. Our work further underscores the varied paths by which niche diversification occurred in ants, and how angiosperms influenced the ecological and evolutionary trajectories of interacting lineages.

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7.20
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4.30%
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567
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