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Symbiont-Mediated Host-Parasite Dynamics in a Fungus-Gardening Ant.共生体介导的真菌园丁蚁中的宿主-寄生虫动态
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Stud Mycol. 2023 Nov;106:349-397. doi: 10.3114/sim.2023.106.06. Epub 2023 Nov 15.
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Interactions among , Antagonistic Microfungi Associated with the Fungus-Growing Ant Symbiosis.与培养真菌的蚂蚁共生关系相关的拮抗微真菌之间的相互作用。
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Fungi inhabiting attine ant colonies: reassessment of the genus Escovopsis and description of Luteomyces and Sympodiorosea gens. nov.栖息于切叶蚁蚁群中的真菌:埃斯科沃普氏菌属的重新评估及黄褐霉属和共生玫瑰霉属的新描述
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Escovopsioides as a fungal antagonist of the fungus cultivated by leafcutter ants.菌寄生菌 Escovopsioides 是切叶蚁培养真菌的真菌拮抗物。
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本文引用的文献

1
Migration, Virulence, and the Geographic Mosaic of Adaptation by Parasites.寄生虫的迁移、毒力与适应性的地理镶嵌模式
Am Nat. 1999 May;153(S5):S34-S47. doi: 10.1086/303210.
2
Prevalence and impact of a virulent parasite on a tripartite mutualism.一种致病寄生虫对三方互利共生关系的流行程度及影响
Oecologia. 2001 Jun;128(1):99-106. doi: 10.1007/s004420100630. Epub 2001 Jun 1.
3
Trees within trees: phylogeny and historical associations.树中有树:系统发育和历史关联。
Trends Ecol Evol. 1998 Sep 1;13(9):356-9. doi: 10.1016/s0169-5347(98)01438-4.
4
Pathogenicity of Escovopsis weberi: The parasite of the attine ant-microbe symbiosis directly consumes the ant-cultivated fungus.Escovopsis weberi 的致病性:共生蚁-微生物体系中的寄生虫直接消耗由蚂蚁培育的真菌。
Mycologia. 2004 Sep-Oct;96(5):955-9.
5
Evolutionary history of the symbiosis between fungus-growing ants and their fungi.共生真菌蚂蚁与其真菌之间共生关系的进化历史。
Science. 1994 Dec 9;266(5191):1691-4. doi: 10.1126/science.266.5191.1691.
6
Cryptic sex and many-to-one coevolution in the fungus-growing ant symbiosis.蚁巢伞共生关系中的隐秘性别与多对一协同进化
Proc Natl Acad Sci U S A. 2006 Jul 11;103(28):10702-6. doi: 10.1073/pnas.0601441103. Epub 2006 Jun 30.
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Host sex and local adaptation by parasites in a snail-trematode interaction.蜗牛与吸虫相互作用中宿主性别及寄生虫的局部适应性
Am Nat. 2004 Nov;164 Suppl 5:S6-18. doi: 10.1086/424605.
8
Exploiting a mutualism: parasite specialization on cultivars within the fungus-growing ant symbiosis.利用共生关系:真菌培育蚁共生体系中寄生虫对栽培品种的专一性
Proc Biol Sci. 2004 Sep 7;271(1550):1791-8. doi: 10.1098/rspb.2004.2792.
9
Biogeography explains cophylogenetic patterns in toucan chewing lice.生物地理学解释了巨嘴鸟咀嚼虱的共系统发育模式。
Syst Biol. 2004 Feb;53(1):154-64. doi: 10.1080/10635150490265085.
10
Evolutionary relationships, cospeciation, and host switching in avian malaria parasites.禽类疟原虫的进化关系、共同物种形成及宿主转换
Syst Biol. 2004 Feb;53(1):111-9. doi: 10.1080/10635150490264987.

切叶蚁与微生物共生关系中宿主-病原体特异性较低。

Low host-pathogen specificity in the leaf-cutting ant-microbe symbiosis.

作者信息

Taerum Stephen J, Cafaro Matías J, Little Ainslie E F, Schultz Ted R, Currie Cameron R

机构信息

Department of Ecology and Evolutionary Biology, University of Kansas, Lawrence, KS 66045, USA.

出版信息

Proc Biol Sci. 2007 Aug 22;274(1621):1971-8. doi: 10.1098/rspb.2007.0431.

DOI:10.1098/rspb.2007.0431
PMID:17550881
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2275177/
Abstract

Host-parasite associations are shaped by coevolutionary dynamics. One example is the complex fungus-growing ant-microbe symbiosis, which includes ancient host-parasite coevolution. Fungus-growing ants and the fungi they cultivate for food have an antagonistic symbiosis with Escovopsis, a specialized microfungus that infects the ants' fungus gardens. The evolutionary histories of the ant, cultivar and Escovopsis are highly congruent at the deepest phylogenetic levels, with specific parasite lineages exclusively associating with corresponding groups of ants and cultivar. Here, we examine host-parasite specificity at finer phylogenetic levels, within the most derived clade of fungus-growing ants, the leaf-cutters (Atta spp. and Acromyrmex spp.). Our molecular phylogeny of Escovopsis isolates from the leaf-cutter ant-microbe symbiosis confirms specificity at the broad phylogenetic level, but reveals frequent host-switching events between species and genera of leaf-cutter ants. Escovopsis strains isolated from Acromyrmex and Atta gardens occur together in the same clades, and very closely related strains can even infect the gardens of both ant genera. Experimental evidence supports low host-parasite specificity, with phylogenetically diverse strains of Escovopsis being capable of overgrowing all leaf-cutter cultivars examined. Thus, our findings indicate that this host-pathogen association is shaped by the farming ants having to protect their cultivated fungus from phylogenetically diverse Escovopsis garden pathogens.

摘要

宿主-寄生虫关系是由协同进化动态塑造的。一个例子是复杂的切叶蚁-微生物共生关系,其中包括古老的宿主-寄生虫协同进化。切叶蚁及其为获取食物而培育的真菌与埃氏菌存在对抗性共生关系,埃氏菌是一种专门感染蚂蚁真菌园的微真菌。在最深的系统发育水平上,蚂蚁、栽培真菌和埃氏菌的进化历史高度一致,特定的寄生虫谱系仅与相应的蚂蚁和栽培真菌群体相关联。在这里,我们在切叶蚁(Atta属和Acromyrmex属)这一最进化的切叶蚁分支内,在更精细的系统发育水平上研究宿主-寄生虫特异性。我们对切叶蚁-微生物共生关系中埃氏菌分离株的分子系统发育分析证实了在广泛系统发育水平上的特异性,但揭示了切叶蚁不同物种和属之间频繁的宿主转换事件。从Acromyrmex和Atta真菌园分离出的埃氏菌菌株共同出现在同一分支中,甚至亲缘关系非常近的菌株也能感染这两个蚂蚁属的真菌园。实验证据支持宿主-寄生虫特异性较低,系统发育多样的埃氏菌菌株能够在所有检测的切叶蚁栽培真菌上过度生长。因此,我们的研究结果表明,这种宿主-病原体关系是由从事农耕的蚂蚁必须保护其培育的真菌免受系统发育多样的埃氏菌真菌园病原体侵害所塑造的。