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蚂蚁的种类决定了具有互惠共生关系的种子中的真菌丰富度和组成。

Ant identity determines the fungi richness and composition of a myrmecochorous seed.

机构信息

Programa de Pós-Graduação em Biologia Animal, Universidade Federal dos Vales do Jequitinhonha e Mucuri, Diamantina, Brazil.

Departamento de Genética, Ecologia e Evolução, Instituto de Ciências Biológicas, Programa de Pós-Graduação em Ecologia, Conservação e Manejo da Vida Silvestre, Universidade Federal de Minas Gerais, Belo Horizonte, Brazil.

出版信息

PLoS One. 2024 Mar 7;19(3):e0293377. doi: 10.1371/journal.pone.0293377. eCollection 2024.

Abstract

Myrmecochory-seed dispersal by ants-is a mutualistic interaction in which ants attracted by seed appendices take them away from the parental plant location, where seeds usually have better development odds. Not all ant species benefit plants, and the mechanisms of those divergent outcomes are still unclear, especially from the perspective of microbial third parties. Here, we explore the effects of seed manipulation on fungi communities promoted by two ant species with contrasting effects on seed germination and antimicrobial cleaning strategies. We hypothesize that: i) fungi richness is higher in seeds manipulated by Acromyrmex subterraneus (species that negatively affect seed germination), followed by unmanipulated seeds and seeds manipulated by Atta sexdens (ant species that increase seed germination) and ii) seeds manipulated by A. sexdens, Ac. subterraneus and unmanipulated seeds present dissimilar fungi compositions. We identified fungal morphotypes in three groups of seeds: i) manipulated by A. sexdens; ii) manipulated by Ac. subterraneus; iii) unmanipulated. Seeds manipulated by Ac. subterraneus exhibited higher fungal richness than those manipulated by A. sexdens and unmanipulated seeds, indicating that the ant species known to impair germination increases the fungal load on seeds. Additionally, we found that A. sexdens ants were unable to reduce fungal richness compared to unmanipulated seeds. Furthermore, fungal composition differed among all three treatments. Our results underscore the significance of ant species identity in shaping the fungal communities associated with myrmecochorous seeds. Given the potential influence of microbial infection on seed fate, we suggest considering manipulation strategies when evaluating the overall quality of an ant as a seed disperser.

摘要

蚁传粉——蚂蚁传播种子——是一种互利共生的相互作用,蚂蚁被种子的附属物吸引,将它们从母株植物的位置带走,而种子在那里通常有更好的发育机会。并非所有蚂蚁物种都对植物有益,而且这些不同结果的机制仍不清楚,特别是从微生物第三方的角度来看。在这里,我们探讨了两种蚂蚁对种子发芽和抗菌清洁策略具有不同影响的情况下,种子操纵对真菌群落的影响。我们假设:i)被 Acromyrmex subterraneus(对种子发芽有负面影响的物种)操纵的种子中的真菌丰富度更高,其次是未操纵的种子和被 Atta sexdens(增加种子发芽的蚂蚁物种)操纵的种子,以及 ii)被 A. sexdens、Ac. subterraneus 和未操纵的种子操纵的种子具有不同的真菌组成。我们在三组种子中鉴定了真菌形态:i)被 A. sexdens 操纵;ii)被 Ac. subterraneus 操纵;iii)未操纵。被 Ac. subterraneus 操纵的种子表现出比被 A. sexdens 和未操纵的种子更高的真菌丰富度,这表明已知会损害发芽的蚂蚁物种会增加种子上的真菌负荷。此外,我们发现与未操纵的种子相比,A. sexdens 蚂蚁无法降低真菌丰富度。此外,真菌组成在所有三种处理中都不同。我们的研究结果强调了蚂蚁物种身份在塑造与蚁传粉种子相关的真菌群落方面的重要性。考虑到微生物感染对种子命运的潜在影响,我们建议在评估蚂蚁作为种子传播者的整体质量时考虑操纵策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd19/10919741/066f5235b256/pone.0293377.g001.jpg

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