Abstract
Originalsprog | Engelsk |
---|---|
Tidsskrift | Ecological Entomology |
Vol/bind | 34 |
Udgave nummer | 2 |
Sider (fra-til) | 214-220 |
ISSN | 0307-6946 |
DOI | |
Status | Udgivet - 2009 |
Bibliografisk note
KEYWORDSAnts • defence • ecological immunology • horizontal transmission • Ophiocordyceps • parasitism • plasticity • societies
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Novel fungal disease in complex leaf-cutting ant societies. / Hughes, David Peter; Evans, Harry C.; Hywel-Jones, Nigel; Boomsma, Jacobus Jan; Armitage, Sophie Alice Octavia.
I: Ecological Entomology, Bind 34, Nr. 2, 2009, s. 214-220.Publikation: Bidrag til tidsskrift › Tidsskriftartikel › Forskning › peer review
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TY - JOUR
T1 - Novel fungal disease in complex leaf-cutting ant societies
AU - Hughes, David Peter
AU - Evans, Harry C.
AU - Hywel-Jones, Nigel
AU - Boomsma, Jacobus Jan
AU - Armitage, Sophie Alice Octavia
N1 - KEYWORDS Ants • defence • ecological immunology • horizontal transmission • Ophiocordyceps • parasitism • plasticity • societies
PY - 2009
Y1 - 2009
N2 - 1. The leaf-cutting ants practise an advanced system of mycophagy where they grow a fungus as a food source. As a consequence of parasite threats to their crops, they have evolved a system of morphological, behavioural, and chemical defences, particularly against fungal pathogens (mycopathogens). 2. Specific fungal diseases of the leaf-cutting ants themselves have not been described, possibly because broad spectrum anti-fungal defences against mycopathogens have reduced their susceptibility to entomopathogens.3. Using morphological and molecular tools, the present study documents three rare infection events of Acromyrmex and Atta leaf-cutting ants by Ophiocordyceps fungi, agenus of entomopathogens that is normally highly specific in its host choice.4. As leaf-cutting ants have been intensively studied, the absence of prior records of Ophiocordyceps suggests that these infections may be a novel event and that switching from one host to another is possible. To test the likelihood of this hypothesis, host switching was experimentally induced, and successfully achieved, among five distinct genera of ants, one of which was in a different sub-family than the leaf-cutter ants.5. Given the substantial differences among the five host ants, the ability of Ophiocordyceps to shift between such distant hosts is remarkable; the results are discussed in the context of ant ecological immunology and fungal invasion strategies.
AB - 1. The leaf-cutting ants practise an advanced system of mycophagy where they grow a fungus as a food source. As a consequence of parasite threats to their crops, they have evolved a system of morphological, behavioural, and chemical defences, particularly against fungal pathogens (mycopathogens). 2. Specific fungal diseases of the leaf-cutting ants themselves have not been described, possibly because broad spectrum anti-fungal defences against mycopathogens have reduced their susceptibility to entomopathogens.3. Using morphological and molecular tools, the present study documents three rare infection events of Acromyrmex and Atta leaf-cutting ants by Ophiocordyceps fungi, agenus of entomopathogens that is normally highly specific in its host choice.4. As leaf-cutting ants have been intensively studied, the absence of prior records of Ophiocordyceps suggests that these infections may be a novel event and that switching from one host to another is possible. To test the likelihood of this hypothesis, host switching was experimentally induced, and successfully achieved, among five distinct genera of ants, one of which was in a different sub-family than the leaf-cutter ants.5. Given the substantial differences among the five host ants, the ability of Ophiocordyceps to shift between such distant hosts is remarkable; the results are discussed in the context of ant ecological immunology and fungal invasion strategies.
U2 - 10.1111/j.1365-2311.2008.01066.x
DO - 10.1111/j.1365-2311.2008.01066.x
M3 - Journal article
VL - 34
SP - 214
EP - 220
JO - Ecological Entomology
JF - Ecological Entomology
SN - 0307-6946
IS - 2
ER -