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126 results for “Ecological selection”
Fig. 2 in Distribution patterns of selected insect populations on their host plants - an ecological study
Fig. 2: Illustration of those insects with their preferred host plants studied in the present contribution: (a) greenfly on the leaves of the common hazel, (b) mealybug on the leaves of the chervil, (c) sap beetle on the leaves of the nettle.
Fig. 1 in Distribution patterns of selected insect populations on their host plants - an ecological study
Fig. 1: (a) Basic types of distribution patterns in the animal kingdom: (1) regular distribution, (2) aggregated (clotted) distribution, (3) random distribution; (b) graphical method for the determination of the distribution pattern produced by a given animal population.
Fig. 3 in Distribution patterns of selected insect populations on their host plants - an ecological study
Fig. 3: Graphical determination of the distribution patterns of those species introduced in Fig. 2: (a) greenfly on the common hazel, (b) mealybug on the chervil, (c) sap beetle on the nettle.
Polygenic selection within a single generation leads to subtle divergence among ecological niches
<p>Selection on standing genetic variation may be effective enough to allow for adaptation to distinct niche environments within a single generation. Minor allele frequency changes at multiple, redundant loci of small effect can produce remarkable phenotypic shifts. Yet, demonstrating rapid adaptation via polygenic selection in the wild remains challenging. Here we harness natural replicate populations that experience similar selection pressures and harbor high within-, yet negligible among-population genetic variation. Such populations can be found among the teleost Fundulus heteroclitus which inhabits marine estuaries characterized by high environmental heterogeneity. We identify 10,861 single nucleotide polymorphisms in F. heteroclitus that belong to a single, panmictic population yet reside in environmentally distinct niches (one coastal basin and three replicate tidal ponds). By sampling at two time-points within a single generation we quantify both allele frequency change within as well as spatial divergence among niche subpopulations. We observe few individually significant allele frequency changes yet find that the number of moderate changes exceeds the neutral expectation by 10-100%. We find allele frequency changes to be significantly concordant in both direction and magnitude among all niche subpopulations, suggestive of parallel selection. In addition, within-generation allele frequency changes generate subtle but significant divergence among niches, indicative of local adaptation. Although we cannot distinguish between selection and genotype-dependent migration as drivers of within-generation allele frequency changes, the trait/s determining fitness and/or migration likelihood appear to be polygenic. In heterogeneous environments, polygenic selection and polygenic, genotype-dependent migration offer conceivable mechanisms for within-generation, local adaptation to distinct niches.</p>
Data from: Ecological divergence and sexual selection drive sexual size dimorphism in new world pitvipers (Serpentes: Viperidae)
Hypotheses for the origin and maintenance of sexual size dimorphism (SSD) fall into three primary categories: (i) sexual selection on male size, (ii) fecundity selection on female size and (iii) ecological selection for gender-specific niche divergence. We investigate the impact of these forces on SSD evolution in New World pitvipers (Crotalinae). We constructed a phylogeny from up to eight genes (seven mitochondrial, one nuclear) for 104 species of NW crotalines. We gathered morphological and ecological data for 82 species for comparative analyses. There is a strong signal of sexual selection on male size driving SSD, but less evidence for fecundity selection on female size across lineages. No support was found for allometric scaling of SSD (Rensch's rule), nor for directional selection for increasing male size (the Fairbairn–Preziosi hypothesis) in NW crotalines. Interestingly, arboreal lineages experience higher rates of SSD evolution and a pronounced shift to female-biased dimorphism. This suggests that fecundity selection on arboreal females exaggerates ecologically mediated dimorphism, whereas sexual selection drives male size in terrestrial lineages. We find that increasing SSD in both directions (male- and female-biased) decreases speciation rates. In NW crotalines, it appears that increasing magnitudes of ecologically mediated SSD reduce rates of speciation, as divergence accumulates within species among sexes, reducing adaptive divergence between populations leading to speciation.
Data from: Local adaptation and ecological differentiation under selection, migration and drift in Arabidopsis lyrata
How the balance between selection, migration and drift influences the evolution of local adaptation has been under intense theoretical scrutiny. Yet, empirical studies that relate estimates of local adaptation to quantification of gene flow and effective population sizes have been rare. Here, we conducted a reciprocal transplant trial, a common garden trial, and a whole-genome based demography analysis to examine these effects among Arabidopsis lyrata populations from two altitudinal gradients in Norway. Demography simulations indicated that populations within the two gradients are connected by gene flow (0.1 < 4Nem < 11) and have small effective population sizes (Ne < 6,000), suggesting that both migration and drift can counteract local selection. However, the three-year field experiments showed evidence of local adaptation at the level of hierarchical multi-year fitness, attesting to the strength of differential selection. In the lowland habitat, local superiority was associated with greater fecundity, while viability accounted for fitness differences in the alpine habitat. We also demonstrate that flowering time differentiation has contributed to adaptive divergence between these locally adapted populations. Our results show that despite the estimated potential of gene flow and drift to hinder differentiation, selection among these A. lyrata populations has resulted in local adaptation.
Data from: Disentangling the contribution of sexual selection and ecology to the evolution of size dimorphism in pinnipeds
The positive relationship between sexual size dimorphism (SSD) and harem size across pinnipeds is often cited as a textbook example of sexual selection. It assumes that female aggregation selected for large male size via male-male competition. Yet, it is also conceivable that SSD evolved prior to polygyny due to ecological forces. We analysed eleven life history traits in 35 pinniped species to determine their co-evolutionary dynamics and infer their most likely evolutionary trajectories contrasting these two hypotheses. We find support for SSD having evolved prior to changes in the mating system, either as a consequence of niche partitioning during aquatic foraging or in combination with sexual selection on males to enforce copulations on females. Only subsequently did polygyny evolve, leading to further coevolution as the strength of sexual selection intensified. Evolutionary sequence analyses suggest a polar origin of pinnipeds and indicate that SSD and polygyny are intrinsically linked to a suite of ecological and life history traits. Overall, this study calls for the inclusion of ecological variables when studying sexual selection and argues for caution when assuming causality between coevolving traits. It provides novel insights into the role of sexual selection for the co-evolutionary dynamics of SSD and mating system.
Spotted hyaena (Crocuta crocuta) feeding ecology and selectivity of large herbivorous prey in the Namib Desert
<p>We have investigated the relationship between spotted hyaenas in the south Namib Desert and large herbivorous prey, and have summarized an updated overview of predator-prey relationships in this resource-limited arid environment. Over the 52-month study, we recorded the densities (#/km<sup>-2</sup>, <u>+</u> SE) of the four local large herbivorous prey species: gemsbok (1.229, <u>+</u> 0.50), springbok (1.352, <u>+</u> 0.48), ostrich (0.648, <u>+</u> 0.23), and greater kudu (0.343, <u>+</u> 0.00). A faecal analysis was performed on 146 collected spotted hyaena scats, and prey items were identified and hairs cross-follicle analysed to the species level. Spotted hyaena diet at the study area remained opportunistic with 240 identified prey items representing eight differing prey species being recorded, ranging from ostrich eggs to large ungulates. The Ivlev's Electivity Index was used to determine which large herbivorous prey was most selected for. Although gemsbok had a higher representation of prey items in the sampled scats, all sampled large herbivorous prey species scored below 0, and are thus generally avoided in relation to their availability in the environment. If any prey preferences are expressed by spotted hyaena in the Namib, it can be presumed to be a non-sampled prey species. We therefore promote further detailed investigations into all other prey species present, and seasonal variations of prey densities and scat sampling, within the study environment.</p>
Supplementary material 2 from: Gauthey Z, Tentelier C, Lepais O, Elosegi A, Royer L, Glise S, Labonne J (2017) With our powers combined: integrating behavioral and genetic data to estimate mating success and sexual selection. Rethinking Ecology 2: 1-26. https://doi.org/10.3897/rethinkingecology.2.14956
JAGS code for the model : Data type: Programming code.
Supplementary material 1 from: Gauthey Z, Tentelier C, Lepais O, Elosegi A, Royer L, Glise S, Labonne J (2017) With our powers combined: integrating behavioral and genetic data to estimate mating success and sexual selection. Rethinking Ecology 2: 1-26. https://doi.org/10.3897/rethinkingecology.2.14956
Data and model outputs : Data type: Body size, behavioural and genetic data, and model output.
Data from: Sexual selection is positively associated with ecological generalism among agamid lizards
Natural and sexual selection shape the evolution of species, but the interplay between them is poorly understood. Two phylogenetic studies on birds have suggested that species with greater sexual dichromatism use more habitats. Here, we show that in Agamid lizards, species with more elaborate secondary sexual traits also are ecologically more opportunistic. Species with greater dimorphism in head size and ornamentation have greater altitudinal range and occupy more habitats, respectively, and species with greater sexual dichromatism have a wider microhabitat use. Body size was positively associated with sexual and ecological traits but associations between ecological and sexual traits remained after accounting for body size. The results are consistent with the earlier studies and we suggest that sexual and natural selection may be linked through sexual selection promotes generalism at the population level by favouring 'good genes', or higher population densities cause both stronger sexual selection and broader resource use.
Polygenic selection within a single generation leads to subtle divergence among ecological niches
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Data from: Selective press extinctions, but not random pulse extinctions, cause delayed ecological recovery in communities of digital organisms
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Data from: Local adaptation and ecological differentiation under selection, migration and drift in Arabidopsis lyrata
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Data from: Brain size evolution in pipefishes and seahorses: the role of feeding ecology, life history and sexual selection
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Data from: Ecological speciation in sympatric palms: 1. Gene expression, selection and pleiotropy
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Data from: Disentangling the contribution of sexual selection and ecology to the evolution of size dimorphism in pinnipeds
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Data from: Important impacts of tissue selection and lipid extraction on ecological parameters derived from stable isotope ratios
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Data from: Sexual selection is positively associated with ecological generalism among agamid lizards
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Data from: The predictability and magnitude of life-history divergence to ecological agents of selection: a meta-analysis in livebearing fishes
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