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宏基因组学揭示了食草和食双子叶植物切叶蚁菌圃中细菌群落的饮食特异性特化。

Metagenomics Reveals Diet-Specific Specialization of Bacterial Communities in Fungus Gardens of Grass- and Dicot-Cutter Ants.

作者信息

Khadempour Lily, Fan Huan, Keefover-Ring Ken, Carlos-Shanley Camila, Nagamoto Nilson S, Dam Miranda A, Pupo Monica T, Currie Cameron R

机构信息

Department of Bacteriology, University of Wisconsin-Madison, Madison, WI, United States.

Department of Energy Great Lakes Bioenergy Research Center, University of Wisconsin-Madison, Madison, WI, United States.

出版信息

Front Microbiol. 2020 Sep 24;11:570770. doi: 10.3389/fmicb.2020.570770. eCollection 2020.

Abstract

Leaf-cutter ants in the genus are dominant herbivores in the Neotropics. While most species of cut dicots to incorporate into their fungus gardens, some species specialize on grasses. Here we examine the bacterial community associated with the fungus gardens of grass- and dicot-cutter ants to examine how changes in substrate input affect the bacterial community. We sequenced the metagenomes of 12 fungus gardens, across four species of ants, with a total of 5.316 Gbp of sequence data. We show significant differences in the fungus garden bacterial community composition between dicot- and grass-cutter ants, with grass-cutter ants having lower diversity. Reflecting this difference in community composition, the bacterial functional profiles between the fungus gardens are significantly different. Specifically, grass-cutter ant fungus garden metagenomes are particularly enriched for genes responsible for amino acid, siderophore, and terpenoid biosynthesis while dicot-cutter ant fungus gardens metagenomes are enriched in genes involved in membrane transport. Differences between community composition and functional capacity of the bacteria in the two types of fungus gardens reflect differences in the substrates that the ants incorporated. These results show that different substrate inputs matter for fungus garden bacteria and shed light on the potential role of bacteria in mediating the ants' transition to the use of a novel substrate.

摘要

切叶蚁属的切叶蚁是新热带地区占主导地位的食草动物。虽然大多数切叶蚁属物种切割双子叶植物并将其纳入真菌园,但一些物种专门以草为食。在这里,我们研究了与以草为食和以双子叶植物为食的切叶蚁的真菌园相关的细菌群落,以研究底物输入的变化如何影响细菌群落。我们对来自四种蚂蚁的12个真菌园的宏基因组进行了测序,总共获得了5.316 Gbp的序列数据。我们发现,以双子叶植物为食和以草为食的切叶蚁的真菌园细菌群落组成存在显著差异,以草为食的切叶蚁的多样性较低。反映出这种群落组成的差异,真菌园之间的细菌功能谱也存在显著差异。具体而言,以草为食的切叶蚁真菌园宏基因组中负责氨基酸、铁载体和萜类生物合成的基因特别丰富,而以双子叶植物为食的切叶蚁真菌园宏基因组中参与膜转运的基因则更为丰富。两种类型真菌园中细菌的群落组成和功能能力的差异反映了蚂蚁所纳入底物的差异。这些结果表明,不同的底物输入对真菌园细菌很重要,并揭示了细菌在介导蚂蚁向使用新底物转变中的潜在作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/93d7/7541895/c9384027ce23/fmicb-11-570770-g001.jpg

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