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Our analysis provides a new measure to gauge the relative performance of species based on their stomatal characteristics.
Overall, this study showed that the contribution of current landscape composition and pattern to the performance of species distribution models (SDMs) was relatively low.
Because the higher performance of species from the invasive range can be caused by their higher ability to acquire resources we compared growth of the plants in two different nutrient levels.
We discuss the utility of the PBST method for evaluating the robustness of gene tree-based phylogenetic estimations in general as well as for testing the clade-specific performance of species tree estimation methods and designing sampling strategies that increase the accuracy of estimated species relationships.
Failure to detect demographic cross-overs has appeared in many other studies of trees, and we suggest that negative density-dependence reduces growth and survival where species reach higher densities, thus masking the superior performance of species on their home habitats.
These actions will improve the performance of species distribution models and any conclusions drawn from them.
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Future studies should compare the performances of species from various habitats, using a range of appropriate bases of expression of PN rates (area, mass, chlorophyll and leaf N) to facilitate interdisciplinary comparisons by aquatic and terrestrial plant biologists.
We subsequently determined the threshold probability as the value that maximized the True Skill Statistic (TSS), which previously demonstrated performance independent of species prevalence and has often been used for this purpose [ 83].
We are aware of approaches to include species richness and composition into the same model when, as is the case here, information about the performance of individual species in mixtures is missing [ 22, 23].
The performance of plant species differed depending on their position in the competitive hierarchy.
If such a scenario were replicated at episodes of global warming during Earth history this would reduce the photosynthetic performance of C3 species; in particular, those individuals with lower transpiration efficiencies, or exposed to high evapotranspirative demand.
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success of species
representation of species
manifestation of species
implementation of species
efficiency of species
behavior of species
functioning of species
output of species
varieties of species
performance of microlenses
performance of microlens
performance of students
yield of species
trends of species
variety of species
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