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O'Steen et al. [57] examined the contemporary evolution of predator escape ability in several guppy introduction experiments, including the set of populations we utilized here.
As noted, O'Steen et al. [57] have previously shown that predator release drove the rapid loss of guppy escape ability in multiple introduction experiments (including the one examined here).
Along with introduction experiments, studies on guppy life-history traits, mate choice behavior, and predator guppy as well as guppy environment interactions have demonstrated that guppy populations can adapt rapidly to new environments (for an overview, see Magurran 2005).
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We utilized a historical introduction experiment where Trinidadian guppies (Poecilia reticulata) were relocated from a site with predatory fishes to a site lacking predators.
To test whether release from predators has led to increased guppy population density and sharpened foraging traits, we took advantage of an introduction experiment initiated in 1976 where guppies were relocated from a site containing predatory fishes to a site lacking strong fish predators [30], [31].
As mentioned in the introduction, previous experiments can be classified into two main categories: those using static images or image sequences.
As discussed in the introduction, validation experiments are based on RNAi and can have their own FN issues.
As we noted in the introduction, Bem's experiments can be viewed as conceptual replications of the presentiment experiments in which participants display physiological arousal to erotic and negative photographs a few seconds before the photographs are selected and displayed (Mossbridge et al., 2012).
Pascal's introduction to barometric experiments occurred by chance when the royal engineer, Pierre Petit (1598 1667), passed through Rouen in September 1646 and informed both Pascals, father and son, about Evangelista Torricelli's experiments in Italy.
The most likely source of toxicity was induced oxidative stress (see Introduction) and future experiments will probe the mechanism of cell death to determine the validity of this hypothesis.
Many previous experiments (Introduction and the first part in Results) have established that TRD1 recognizes the 5' half of the recognition sequence and TRD2 the 3' half.
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