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新陈代谢与蚂蚁培育真菌行为的兴起。

Metabolism and the rise of fungus cultivation by ants.

作者信息

Shik Jonathan Z, Santos Juan C, Seal Jon N, Kay Adam, Mueller Ulrich G, Kaspari Michael

机构信息

Smithsonian Tropical Research Institute, Balboa, Ancon, Republic of Panama.

出版信息

Am Nat. 2014 Sep;184(3):364-73. doi: 10.1086/677296. Epub 2014 Jul 28.

Abstract

Most ant colonies are comprised of workers that cooperate to harvest resources and feed developing larvae. Around 50 million years ago (MYA), ants of the attine lineage adopted an alternative strategy, harvesting resources used as compost to produce fungal gardens. While fungus cultivation is considered a major breakthrough in ant evolution, the associated ecological consequences remain poorly understood. Here, we compare the energetics of attine colony-farms and ancestral hunter-gatherer colonies using metabolic scaling principles within a phylogenetic context. We find two major energetic transitions. First, the earliest lower-attine farmers transitioned to lower mass-specific metabolic rates while shifting significant fractions of biomass from ant tissue to fungus gardens. Second, a transition 20 MYA to specialized cultivars in the higher-attine clade was associated with increased colony metabolism (without changes in garden fungal content) and with metabolic scaling nearly identical to hypometry observed in hunter-gatherer ants, although only the hunter-gatherer slope was distinguishable from isometry. Based on these evolutionary transitions, we propose that shifting living-tissue storage from ants to fungal mutualists provided energetic storage advantages contributing to attine diversification and outline critical assumptions that, when tested, will help link metabolism, farming efficiency, and colony fitness.

摘要

大多数蚁群由工蚁组成,它们合作获取资源并喂养发育中的幼虫。大约5000万年前,阿蒂内谱系的蚂蚁采用了另一种策略,收集用作堆肥的资源来培育真菌园。虽然真菌培育被认为是蚂蚁进化中的一项重大突破,但其相关的生态后果仍知之甚少。在这里,我们在系统发育背景下,使用代谢标度原理比较了阿蒂内蚁群农场和原始狩猎采集蚁群的能量学。我们发现了两个主要的能量转变。首先,最早的低等阿蒂内蚁农转变为较低的质量特异性代谢率,同时将相当一部分生物量从蚂蚁组织转移到真菌园。其次,2000万年前向高等阿蒂内分支中的特化栽培品种的转变与蚁群代谢增加(真菌园真菌含量无变化)以及与在狩猎采集蚁中观察到的低于正常标度的代谢标度几乎相同有关,尽管只有狩猎采集蚁的斜率与等比关系有区别。基于这些进化转变,我们提出将活体组织储存从蚂蚁转移到真菌共生体提供了能量储存优势,这有助于阿蒂内蚁的多样化,并概述了关键假设,当对这些假设进行测试时,将有助于将代谢、养殖效率和蚁群适应性联系起来。

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