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4 results for “local flower density”

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dryad36/100

Data from: Fine-scale genetic structure in the orchid Gymnadenia conopsea is not associated with local density of flowering plants

<p><span><strong>Premise</strong>:</span><span> Density-dependent pollinator visitation can lead to density-dependent mating patterns and within-population genetic structure. In Gymnadenia conopsea, individuals in low-density patches receive more self-pollen than individuals in high-density patches, suggesting higher relatedness at low density. Ongoing fragmentation is also expected to cause more local matings, potentially leading to biparental inbreeding depression.</span></p> <p><span><strong>Methods</strong>: </span><span>To evaluate whether relatedness decreases with local density, we analysed 1315 SNP loci in 113 individuals within two large populations. We quantified within-population genetic structure in one of the populations, recorded potential habitat barriers, and visualized gene flow using estimated effective migration surfaces (EEMS). We further estimated the magnitude of biparental inbreeding depression that would result from matings restricted to within 5 m.</span></p> <p><span><strong>Results</strong>: </span><span>There was no significant relationship between local density and relatedness in any population. We detected significant fine-scale genetic structure consistent with isolation-by-distance, with positive kinship coefficients at distances below 10 m. Kinship coefficients were low, and predicted biparental inbreeding depression resulting from matings within the closest 5 m was a modest 1–3%.</span> <span>EEMS suggested that rocks and bushes may act as barriers to gene flow within a population.</span></p> <p><span><strong>Conclusions</strong>: </span><span>The results suggest that increased self-pollen deposition in sparse patches does not necessarily cause higher selfing rates, or that inbreeding depression results in low establishment success of inbred individuals. The modest relatedness suggests that biparental inbreeding depression is unlikely to be an immediate problem following fragmentation of large populations. The results further indicate that habitat structure may contribute to governing fine-scale genetic structure in <em>G. conopsea</em>.</span></p>

opencc-zeroNov 2023View details →
dryad36/100

Data from: Fine-scale genetic structure in the orchid Gymnadenia conopsea is not associated with local density of flowering plants

Open the record for dataset details and reuse information.

publicNov 2023View details →
dryad32/100

Influence of local density and sex ratio on pollination in an ambophilous flowering plant

<p class="MSbody"><span><b>PREMISE OF THE STUDY:</b> Variation in local density and sex ratio in dioecious plants can affect mating success through the actions of pollen vectors, principally generalist insects or wind. Increased density and male-biased sex ratios should promote pollen transfer and seed production, but their combined effects have not been investigated for ambophilous species, which exhibit both insect and wind pollination. </span></p> <p class="MSbody"><span><b>METHODS: </b>We manipulated density (low vs. high) and sex ratio (1:1 vs. 3:1 male-biased) in arrays of dioecious ambophilous <i>Thalictrum pubescens</i>. We quantified visitation rates and foraging time to examine whether pollinators exhibited sex-specific preferences and determined the seed set of arrays.<b>        </b></span></p> <p class="MSbody"><b>KEY RESULTS:</b> Pollinators visited more plants per foraging bout at high than low density. Visitation rates and foraging times of visitors were greater for male than female plants but did not depend on the density or sex ratio of arrays. However, whereas solitary bees displayed a strong preference for males, hover flies were indifferent to plant sex phenotype. Solitary bees also visited significantly more plants per foraging bout than hover flies. There was a significant interaction between density and sex ratio on seed set. At low density, seed set was greater for 1:1 than 3:1 arrays, but at high density the opposite pattern occurred.  </p> <p class="MSbody"><b>CONCLUSIONS: </b>The demographic factors we investigated had complex influences on pollinator foraging behavior and patterns of seed set. Several factors may explain our results including the influence of density and sex ratio on pollen export from arrays, grooming by pollinators and the contribution of wind pollination.</p>

opencc-zeroAug 2021View details →
dryad32/100

Influence of local density and sex ratio on pollination in an ambophilous flowering plant

Open the record for dataset details and reuse information.

publicSep 2021View details →

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