A successional shift enhances stability in ant symbiont communities

被引:2
作者
Parmentier, Thomas [1 ,2 ]
Bonte, Dries [1 ]
De Laender, Frederik [2 ]
机构
[1] Univ Ghent, Dept Biol, Terr Ecol Unit, Ghent, Belgium
[2] Univ Namur, Res Unit Environm & Evolutionary Biol, naXys, ILEE, Namur, Belgium
关键词
FOOD-WEB; ECOLOGICAL NETWORKS; SPECIES RICHNESS; MECHANISMS; COMPLEXITY; DIVERSITY; IMPACTS; NESTS;
D O I
10.1038/s42003-024-06305-3
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Throughout succession, communities undergo structural shifts, which can alter the relative abundances of species and how they interact. It is frequently asserted that these alterations beget stability, i.e. that succession selects for communities better able to resist perturbations. Yet, whether and how alterations of network structure affect stability during succession in complex communities is rarely studied in natural ecosystems. Here, we explore how network attributes influence stability of different successional stages of a natural network: symbiotic arthropod communities forming food webs inside red wood ant nests. We determined the abundance of 16 functional groups within the symbiont community across 51 host nests in the beginning and end stages of succession. Nest age was the main driver of the compositional shifts: symbiont communities in old nests contained more even species abundance distributions and a greater proportion of specialists. Based on the abundance data, we reconstructed interaction matrices and food webs of the symbiont community for each nest. We showed that the enhanced community evenness in old nests leads to an augmented food web stability in all but the largest symbiont communities. Overall, this study demonstrates that succession begets stability in a natural ecological network by making the community more even. As red wood ant nests age, the arthropod symbiont communities they support undergo a successional shift. This change is marked by a greater degree of specialization and evenness within the community, resulting in increased community stability.
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页数:9
相关论文
共 63 条
[21]   Soil food web structure during ecosystem development after land abandonment [J].
Holtkamp, Remko ;
Kardol, Paul ;
van der Wal, Annemieke ;
Dekker, Stefan C. ;
van der Putten, Wim H. ;
de Ruiter, Peter C. .
APPLIED SOIL ECOLOGY, 2008, 39 (01) :23-34
[22]   The age of island-like habitats impacts habitat specialist species richness [J].
Horsak, Michal ;
Hajek, Michal ;
Spitale, Daniel ;
Hajkova, Petra ;
Dite, Daniel ;
Nekola, Jeffrey C. .
ECOLOGY, 2012, 93 (05) :1106-1114
[23]   Ecological networks - beyond food webs [J].
Ings, Thomas C. ;
Montoya, Jose M. ;
Bascompte, Jordi ;
Bluethgen, Nico ;
Brown, Lee ;
Dormann, Carsten F. ;
Edwards, Francois ;
Figueroa, David ;
Jacob, Ute ;
Jones, J. Iwan ;
Lauridsen, Rasmus B. ;
Ledger, Mark E. ;
Lewis, Hannah M. ;
Olesen, Jens M. ;
van Veen, F. J. Frank ;
Warren, Phil H. ;
Woodward, Guy .
JOURNAL OF ANIMAL ECOLOGY, 2009, 78 (01) :253-269
[24]   Differences in food web structure and composition between new and nearby older lakes in West Greenland suggest succession trajectories driven by glacier retreat [J].
Jeppesen, Erik ;
Davidson, Thomas A. ;
Meerhoff, Mariana ;
De Meester, Luc ;
Gonzalez-Bergonzoni, Ivan ;
Vidal, Nicolas ;
Arndt, Hartmut ;
Juergens, Klaus ;
Sommaruga, Ruben ;
Ozkan, Korhan ;
Lauridsen, Torben L. ;
Tserenpil, Sh .
HYDROBIOLOGIA, 2023, 850 (21) :4745-4761
[25]   Complexity and stability of ecological networks: a review of the theory [J].
Landi, Pietro ;
Minoarivelo, Henintsoa O. ;
Brannstrom, Ake ;
Hui, Cang ;
Dieckmann, Ulf .
POPULATION ECOLOGY, 2018, 60 (04) :319-345
[26]   Portfolio effect and asynchrony as drivers of stability in plant-pollinator communities along a gradient of landscape heterogeneity [J].
Lazaro, Amparo ;
Gomez-Martinez, Carmelo ;
Gonzalez-Estevez, Miguel A. ;
Hidalgo, Manuel .
ECOGRAPHY, 2022, 2022 (03)
[27]  
MacArthur R.H., 1967, The Theory of Island Biogeography
[28]  
Mackie RI, 1999, AM J CLIN NUTR, V69, p1035S, DOI 10.1093/ajcn/69.5.1035s
[29]   SECONDARY SUCCESSION AND BREEDING BIRD COMMUNITY STRUCTURE - PATTERNS OF RESOURCE UTILIZATION [J].
MAY, PG .
OECOLOGIA, 1982, 55 (02) :208-216
[30]   WILL A LARGE COMPLEX SYSTEM BE STABLE [J].
MAY, RM .
NATURE, 1972, 238 (5364) :413-&