多方蚂蚁-植物联合体中真菌群落的动态和驱动因素。

IF 4.4 1区 生物学 Q1 BIOLOGY
Veronica Barrajon-Santos, Maximilian Nepel, Bela Hausmann, Hermann Voglmayr, Dagmar Woebken, Veronika E Mayer
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引用次数: 0

摘要

背景:真菌和蚂蚁是地球陆地生态系统中最重要的生物。在热带雨林养分贫乏的环境中,它们建立了稳定的生态关系,以此作为一种成功的生存策略。在全球热带蚂蚁与植物的互生关系中,常驻蚂蚁为寄主植物提供防御和养分,以换取庇护所和食物,真菌经常在蚂蚁的巢穴空间中发现,栖息在蚂蚁制造的深色堆积物("斑块")中。与被广泛研究的真菌生长昆虫不同,真菌是蚂蚁的主要食物来源,而蚂蚁与真菌结合的目的却不太清楚。要解读真菌在蚁巢内这些结构中的作用,首先必须了解蚁群发展过程中影响真菌斑块群落的动态和驱动因素:在这项研究中,我们调查了蚁群年龄和蚂蚁-植物物种如何影响斑块中的真菌群落。我们选择了美洲热带地区最常见的互生关系之一--Azteca-Cecropia复合体作为模型。通过对内转录间隔区 2(ITS2)的扩增子测序,我们分析了栖息在 Cecropia 属树木上的 93 个 Azteca 属群落的斑块真菌群落。我们的研究表明,随着蚂蚁群落的增长,斑块中的真菌多样性也在增加,而且在初始斑块和成熟斑块之间,流行的真菌分类群发生了变化。此外,在已建立的蚂蚁群落中,蚂蚁种类对真菌群落组成的影响很大,而不是寄主植物种类:结论:随着蚂蚁群落的发展,真菌斑块群落会变得更加复杂,这是由于从环境中获取真菌和基质多样化造成的。我们的研究结果表明,在蚁群生长过程中,斑块中的真菌群落会逐渐演替,而蚁群则是形成这种群落的主要驱动力。这项研究结果表明,热带地区蚂蚁与植物之间的互生关系在微观尺度上具有意想不到的复杂性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamics and drivers of fungal communities in a multipartite ant-plant association.

Background: Fungi and ants belong to the most important organisms in terrestrial ecosystems on Earth. In nutrient-poor niches of tropical rainforests, they have developed steady ecological relationships as a successful survival strategy. In tropical ant-plant mutualisms worldwide, where resident ants provide the host plants with defense and nutrients in exchange for shelter and food, fungi are regularly found in the ant nesting space, inhabiting ant-made dark-colored piles ("patches"). Unlike the extensively investigated fungus-growing insects, where the fungi serve as the primary food source, the purpose of this ant-fungi association is less clear. To decipher the roles of fungi in these structures within ant nests, it is crucial to first understand the dynamics and drivers that influence fungal patch communities during ant colony development.

Results: In this study, we investigated how the ant colony age and the ant-plant species affect the fungal community in the patches. As model we selected one of the most common mutualisms in the Tropics of America, the Azteca-Cecropia complex. By amplicon sequencing of the internal transcribed spacer 2 (ITS2) region, we analyzed the patch fungal communities of 93 Azteca spp. colonies inhabiting Cecropia spp. trees. Our study demonstrates that the fungal diversity in patches increases as the ant colony grows and that a change in the prevalent fungal taxa occurs between initial and established patches. In addition, the ant species significantly influences the composition of the fungal community in established ant colonies, rather than the host plant species.

Conclusions: The fungal patch communities become more complex as the ant colony develops, due to an acquisition of fungi from the environment and a substrate diversification. Our results suggest a successional progression of the fungal communities in the patches during ant colony growth and place the ant colony as the main driver shaping such communities. The findings of this study demonstrate the unexpectedly complex nature of ant-plant mutualisms in tropical regions at a micro scale.

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来源期刊
BMC Biology
BMC Biology 生物-生物学
CiteScore
7.80
自引率
1.90%
发文量
260
审稿时长
3 months
期刊介绍: BMC Biology is a broad scope journal covering all areas of biology. Our content includes research articles, new methods and tools. BMC Biology also publishes reviews, Q&A, and commentaries.
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