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Data from: Progressive sensitivity of trophic levels to warming underlies an elevational gradient in ant-aphid mutualism strength
负责人:
关键词:
Elevation;Aphis varians;Formica podzolica;Ant-aphid mutualism;Multi-trophic interactions;Chamerion angustifolium
DOI:
doi:10.5061/dryad.kf2553j
摘要:
-aphid protection mutualism. To do so, we characterized the multi-trophic interactions among the ant Formica podzolica, the aphid Aphis varians, and aphid
Data from: Coexistence of evolving bacteria stabilized by a shared Black Queen function
负责人:
关键词:
stable coexistence;Experimental evolution;Prochlorococcus marinus;public goods;Escherichia coli;hydrogen peroxide;catalase;Black Queen Hypothesis
DOI:
doi:10.5061/dryad.2753k
摘要:
or mutualistic interactions. We demonstrated the leakiness of HOOH detoxification by complementing a HOOH-sensitive Escherichia coli mutant with a plasmid-encoded HOOH
Data from: The distributions of morphologically specialized hummingbirds coincide with floral trait matching across an Andean elevational gradient
负责人:
关键词:
Modularity;pollination;plants;specialization;networks;Resource partitioning;mutualism
DOI:
doi:10.5061/dryad.16837bf
摘要:
Morphological trait matching between species affects resource partitioning in mutualistic systems. Yet, the determinants of spatial
Data from: Desynchronizations in bee-plant interactions cause severe fitness losses in solitary bees
负责人:
Schenk, Mariela
关键词:
mutualism conditional sex allocation emergence mitigation strategies phenological shift pollination species interactions
DOI:
doi:10.5061/dryad.rm317
摘要:
parasitoids. The late-spring specialist Osmia brevicornis produced fewer brood cells even after a mismatch of three days. Additionally, our results suggest tha
Data from: Community analysis of microbial sharing and specialization in a Costa Rican ant–plant–hemipteran symbiosis
负责人:
关键词:
myrmecophyte;Cephalotes setulifer;Metabarcoding;bacteria;Fungi;Azteca beltii;Cryptostigma spp.;Paraputo sp.;scale insects;Cordia alliodora;Azteca pittieri
DOI:
doi:10.5061/dryad.16830
摘要:
Ants have long been renowned for their intimate mutualisms with trophobionts and plants and more recently appreciated for their wides
Data from: Transcriptomic basis of genome by genome variation in a legume-rhizobia mutualism
负责人:
关键词:
Medicago truncatula;transcriptome plasticity;genome x genome interaction;Ensifer (Sinorhizobium);Nodule Cysteine-Rich peptides;nitrogen fixation;Ensifer meliloti;Sinorhizobium meliloti
DOI:
doi:10.5061/dryad.348k2
摘要:
In the legume-rhizobia mutualism, the benefit each partner derives from the other depends on the genetic identity of both host and rhizobial symbiont
Data from: Fungal symbionts as manipulators of plant reproductive biology
负责人:
Rudgers, Jennifer A.
关键词:
Coevolution Conflict Ecology: microbial Evolution: host/parasite Interactions: mutualism Interactions: symbiosis Life history: trade offs Reproduction: strategies Sex: allocation Fungi
DOI:
doi:10.5061/dryad.84c26
摘要:
promotes mutualism and fixation by coupling partner fitness. However, conflicts arise if symbionts are transmitted through only one sex and can shift host
Data from: Disentangling ecologically equivalent from neutral species: the mechanisms of population regulation matter
负责人:
McPeek, Mark
关键词:
coexistence community drift demographic stochasticity ecological equivalence neutral species
DOI:
doi:10.5061/dryad.t4k343g
摘要:
(i.e., resources, predators, mutualists). Hence, considering only interspecific ecological differences generating density-dependence, and not fully accounting
Data from: Associative learning of flowers by generalist bumble bees can be mediated by microbes on the petals
负责人:
Russell, Avery L.
关键词:
communication floral cues learning flower microbes microbial volatiles preference
DOI:
doi:10.5061/dryad.2v04627
摘要:
in mutualism generally would benefit by considering not only the multicellular eukaryote partners, but their microbial associates.

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