Abstract
Leaf-cutting ants such as Acromyrmex octospinosus live in obligate symbiosis with fungi of the genus Leucoagaricus, which they grow with harvested leaf material. The symbiotic fungi, in turn, serve as a major food source for the ants. This mutualistic relation is disturbed by the specialized pathogenic fungus Escovopsis sp., which can overcome Leucoagaricus sp. and thus destroy the ant colony. Microbial symbionts of leaf-cutting ants have been suggested to protect the fungus garden against Escovopsis by producing antifungal compounds [Currie CR, Scott JA, Summerbell RC, Malloch D (1999) Fungus-growing ants use antibiotic-producing bacteria to control garden parasites. Nature 398:701-704.]. To date, however, the chemical nature of these compounds has remained elusive. We characterized 19 leaf-cutting ant-associated microorganisms (5 Pseudonocardia, 1 Dermacoccus, and 13 Streptomyces) from 3 Acromyrmex species, A. octospinosus, A. echinatior, and A. volcanus, using 16S-rDNA analysis. Because the strain Streptomyces sp. Ao10 proved highly active against the pathogen Escovopsis, we identified the molecular basis of its antifungal activity. Using bioassay-guided fractionation, high-resolution electrospray mass spectrometry (HR-ESI-MS), and UV spectroscopy, and comparing the results with an authentic standard, we were able identify candicidin macrolides. Candicidin macrolides are highly active against Escovopsis but do not significantly affect the growth of the symbiotic fungus. At least one of the microbial isolates from each of the 3 leaf-cutting ant species analyzed produced candicidin macrolides. This suggests that candicidins play an important role in protecting the fungus gardens of leaf-cutting ants against pathogenic fungi.
MeSH Terms
Animals
Antifungal Agents/pharmacology
Ants/drug effects,microbiology,physiology
Candicidin/biosynthesis,chemistry,isolation & purification,pharmacology
Feeding Behavior/drug effects,physiology
Fungi/drug effects,physiology
Macrolides/pharmacology
Microbial Sensitivity Tests
Molecular Sequence Data
Plant Leaves/drug effects,parasitology
Streptomyces/drug effects,isolation & purification,physiology
Chemicals
Antifungal Agents
Macrolides
Candicidin
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Haeder Susanne
Department of Bio-Organic Chemistry, Max Planck Institute for Chemical Ecology, Hans-Knöll-Strasse 8, D-07745 Jena, Germany.
Wirth Rainer
Herz Hubert
Spiteller Dieter
References (22)
22 references, click to expand
-
Polyene macrolide antibiotics and their applications in human therapy.
Curr Med Chem. 2003 Feb;10(3):211-23
PMID: 12570708
-
Incomplete beta-ketone processing as a mechanism for polyene structural variation in the FR-008/candicidin complex.
Chem Biol. 2008 Jun;15(6):629-38
PMID: 18559273
-
The agricultural pathology of ant fungus gardens.
Proc Natl Acad Sci U S A. 1999 Jul 6;96(14):7998-8002
PMID: 10393936
-
Active use of the metapleural glands by ants in controlling fungal infection.
Proc Biol Sci. 2006 Jul 7;273(1594):1689-95
PMID: 16769642
-
Myrmicacin, the first insect herbicide.
Angew Chem Int Ed Engl. 1971 Feb;10(2):124-5
PMID: 4995467
-
The effect of metapleural gland secretion on the growth of a mutualistic bacterium on the cuticle of leaf-cutting ants.
Naturwissenschaften. 2003 Sep;90(9):406-9
PMID: 14504783
-
Mode of action of the polyene antibiotic candicidin: binding factors in the wall of Candida albicans.
Antimicrob Agents Chemother. 1976 Apr;9(4):561-8
PMID: 773298
-
Isolation and partial characterization of a cryptic polyene gene cluster in Pseudonocardia autotrophica.
J Ind Microbiol Biotechnol. 2006 Feb;33(2):84-7
PMID: 16096834
-
Identification of the fire blight pathogen, Erwinia amylovora, by PCR assays with chromosomal DNA.
Appl Environ Microbiol. 1995 Jul;61(7):2636-42
PMID: 7618876
-
MEGA4: Molecular Evolutionary Genetics Analysis (MEGA) software version 4.0.
Mol Biol Evol. 2007 Aug;24(8):1596-9
PMID: 17488738
-
Ancient tripartite coevolution in the attine ant-microbe symbiosis.
Science. 2003 Jan 17;299(5605):386-8
PMID: 12532015
-
Ocurrence of the antibiotic producing bacterium Burkholderia sp. in colonies of the leaf-cutting ant Atta sexdens rubropilosa.
FEMS Microbiol Lett. 2004 Oct 15;239(2):319-23
PMID: 15476982
-
Organizational and mutational analysis of a complete FR-008/candicidin gene cluster encoding a structurally related polyene complex.
Chem Biol. 2003 Nov;10(11):1065-76
PMID: 14652074
-
Coevolution between attine ants and actinomycete bacteria: a reevaluation.
Evolution. 2008 Nov;62(11):2894-912
PMID: 18752608
-
Weeding and grooming of pathogens in agriculture by ants.
Proc Biol Sci. 2001 May 22;268(1471):1033-9
PMID: 11375087
-
The candicidin gene cluster from Streptomyces griseus IMRU 3570.
Microbiology (Reading). 2002 Jan;148(Pt 1):51-59
PMID: 11782498
-
Non-specific association between filamentous bacteria and fungus-growing ants.
Naturwissenschaften. 2007 Oct;94(10):821-8
PMID: 17541536
-
Polyene antibiotics.
Science. 1955 Feb 4;121(3136):147-9
PMID: 13225759
-
Extraction of inhibitor-free metagenomic DNA from polluted sediments, compatible with molecular diversity analysis using adsorption and ion-exchange treatments.
Bioresour Technol. 2007 Mar;98(4):761-8
PMID: 16806911
-
Distinguishing bacterial pathogens of potato using a genome-wide microarray approach.
Mol Plant Pathol. 2008 Sep;9(5):705-17
PMID: 19018999
-
Phylogenetic identification and in situ detection of individual microbial cells without cultivation.
Microbiol Rev. 1995 Mar;59(1):143-69
PMID: 7535888
-
Symbiont recognition of mutualistic bacteria by Acromyrmex leaf-cutting ants.
ISME J. 2007 Aug;1(4):313-20
PMID: 18043642