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1.
Synopis Reproductively developed male fathead minnows, Pimephales promelas, exhibited courtship behaviour in the presence of female conspecifies under laboratory conditions. Male courtship consisted of several distinctive and visually conspicuous behaviours directed toward females, including approach, display, and two contact behaviours, as well as leading behaviour from the female to a suitable spawning site. An ovulated condition in females was not necessary to generate male courtship behaviour; in fact, the amount of courtship exhibited by males may depend inversely on the readiness of females to spawn.  相似文献   
2.
Synopsis Fathead minnow embryos (Pimephales promelas Rafinesque) of 5 different developmental ages (5, 33, 48, 72 and 96 hrs after fertilization) were used as controls and exposed for 2 hrs to a solution of 0.25 Ci ml–1 of3H-Uridine. Another set of embryos (5, 33, 48, 72 and 96 hrs after fertilization) were subjected to the same treatment except that during the one hour immediately preceding the3H-Uridine incubation, the control embryos were placed in water while the experimental embryos were placed in water containing 15 ppm 11.2 LAS. In both cases, radiation counts minute–1 embryo–1 and per milligram of embryo increased over the 4 day developmental period. The embryos with LAS treatment displayed lower radiation counts at all ages as compared to controls, indicating an inhibition of diffusion and uptake of3H-Uridine and/or RNA synthesis. The possible mechanism of LAS is discussed.  相似文献   
3.
While some prey species possess an innate recognition of their predators, others require learning to recognize their predators. The specific characteristics of the predators that prey learn and whether prey can generalize this learning to similar predatory threats have been virtually ignored. Here, we investigated whether fathead minnows that learned to chemically recognize a specific predator species as a threat has the ability to generalize their recognition to closely related predators. We found that minnows trained to recognize the odour of a lake trout as a threat (the reference predator) generalized their responses to brook trout (same genus as lake trout) and rainbow trout (same family), but did not generalize to a distantly related predatory pike or non-predatory suckers. We also found that the intensity of antipredator responses to the other species was correlated with the phylogenetic distance to the reference predator; minnows responded with a higher intensity response to brook trout than rainbow trout. This is the first study showing that prey have the ability to exhibit generalization of predator odour recognition. We discuss these results and provide a theoretical framework for future studies of generalization of predator recognition.  相似文献   
4.
In phylogenetic analyses, conducted on the ND4L gene and part of the ND4 gene from species of the genus Pimephales , maximum parsimony yielded four trees, with the strict consensus providing no resolution of relationships among species. Maximum likelihood and minimum evolution methods yielded identical tree topologies, which differed from previous hypotheses of relationships for these species. If this topology is correct, it implies independent evolution of morphological characters, possibly associated with convergent trophic specialization.  相似文献   
5.
Many recent studies have employed molecular markers to uncover important aspects of mating systems in teleost fishes. The fathead minnow (Pimephales promelas) is a nest‐building North American cyprinid that spawns multiply and exhibits exclusive male parental care. A battery of microsatellite markers was developed to analyse paternity in this species. The seven characterized loci possess four to 31 alleles and expected heterozygosities of 0.455–0.974. In combination, they elicit an exclusion probability of 0.999, a desirable level for paternity analysis. In addition, cross‐amplifications were conducted to test primer efficacy in 13 other taxa, including two congeners.  相似文献   
6.
Epidermal club cells of fishes in the superorder ostariophysi have puzzled evolutionary biologists because they were historically linked to chemical alarm signalling and relied on group selectionist explanations. Alternative hypotheses to explain the existence of these cells include the possibility of an anti‐pathogenic or anti‐parasitic function. If this is so, individual fish should invest in increased numbers of club cells after exposure to parasites, and club cells should contain components that reduce the infectivity of skin‐penetrating larvae. Infectivity of cercariae of the trematode Ornithodiplostomum sp. was significantly reduced when exposed to the skin extract of fathead minnows (an ostariophysan), but also to skin extract of mollies (a non‐ostariophysan that lacks club cells), respectively, compared to controls. Moreover, club cell density was not affected by exposure to cercariae. Taken together, these results are inconsistent with an anti‐parasite function for these cells and instead suggest a generic role in response to injury. © 2009 The Linnean Society of London, Biological Journal of the Linnean Society, 2009, 98 , 884–890.  相似文献   
7.
Ostariophysan fishes have specialized epidermal alarm substance cells (ASCs). In this study, metabolic cost to the production and maintenance of these cells was demonstrated. Fathead minnows Pimephales promelas were maintained on high or low food rations and, to test for the effect of social context on the number of ASCs, they were held with either zero or two shoalmates. Shoalmates were familiar (from the focal fish's shoal), or unfamiliar (from a shoal separated by 1 km from the focal fish's shoal). After 16 days, epidermal thickness, number of mucus cells and number of ASCs were all significantly greater for minnows on the high ration than for those on the low ration. Within the high ration group, physical condition was positively correlated with epidermal thickness and ASC number. The shoalmate treatment had no measurable effect on the epidermis. It was concluded that food availability determines investment into ASCs, inferring a trade-off between the cost of ASCs and the fitness benefits they accrue.  相似文献   
8.
Synopsis Some mechanisms proposed to account for the evolution of animal alarm signals require that the signal sender survive in order to benefit. The ostariophysan alarm pheromone system requires mechanical damage for the release of the alarm pheromone. A natural situation is described in which up to 16% of the fathead minnows in a population have survived damaging encounters with predators. This indicates that post-signal selective benefits can operate in the evolution of the ostariophysan alarm system.  相似文献   
9.
Synopsis Critical thermal maxima (CTM) were determined for three species of fish in hypoxic (1.2 mg l-1), normoxic (7 mg l-1) and hyperoxic (12 mg l-1) oxygen tensions. All fish were acclimated to 30°C under a regulated photoperiod of 12:12. During each CTM determination, one-half of the test fish were allowed free access to the surface (to permit aquatic surface respiration) while the remaining one-half were denied access to the surface. Under hypoxic conditions, CTMs of Fundulus notatus, Notropis lutrensis and Pimephales vigilax given access to the surface were significantly higher than those of conspecifics without access to the surface. With access to the surface, all species had significantly lower CTMs under hypoxic conditions than under normoxic and hyperoxic conditions. CTMs measured under normoxic and hyperoxic conditions were not different for any of the test species. Under all comparable oxygen tensions with surface access, F. notatus had the highest CTM, N. lutrensis intermediate and P. vigilax had the lowest CTM. The critical oxygen concentration for N. lutrensis during CTM determinations occurred between 1.2 and 2 mg l-1.  相似文献   
10.
We tested the hypothesis that exposure to a conspecific alarmpheromone improves survival of fathead minnows (Pimephales promelas)during staged encounters with an unfamiliar predator (northernpike: Esox luaus). Minnows exposed to the alarm pheromone survived39. 5% longer than controls. This difference in survival timeappeared to result not from direct inhibition of the pike butrather from some aspect of the minnows' antipredator behavior.Minnows exhibited significant increases in both shoaling andshelter use after exposure to the alarm pheromone. For controlminnows, the degree of shoaling was positively correlated withsurvival time, suggesting that increased shoaling is an effectiveantipredator response. This study provides the first directexperimental evidence that chemical alarm signals in fishesimprove survival of receivers.  相似文献   
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