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51.
Approximately 45% of western bluebird (Sialia mexicana) femaleshave some chicks in the nest that are not sired by their socialmates. Extrapair fertilizations account for 42% of offspringin these nests and 19% of nestlings overall. I tested the hypothesisthat males reduce nestling provisioning when their certaintyof paternity or share of paternity is reduced. Capture and detentionof socially monogamous males for 1 h or 24 h during the layingperiod reduced males' copulatory access and their ability tomate guard, increasing the frequency with which extrapair malesintruded and attempted to copulate with resident females. Malesdetained during laying did not reduce their share of feedingtrips compared to control males detained during incubation,compared to unmanipulated males, or compared to males that werecaptured but not detained. Males detained on territory for 1h during the laying period did not reduce their share of feedingtrips when they observed male intrusion, nor when they observedtheir mates accepting extrapair copulations. Males that witnessedtheir mates accepting extrapair copulations did not reduce theirshare of risk in provisioning. Genetic fingerprinting at nonexperimentalnests indicated that males also failed to reduce their feedingcontributions when their estimated share of paternity was reduced,even when a helper male was present to reduce the impact onnestlings. These results suggest that male western bluebirdsdo not make significant adjustments in their share of provisioningwhen they have evidence of partial paternity loss. Togetherwith prior results, this study suggests that western bluebirdmales use an all-or-none rule, contributing approximately halfof the parental provisioning at nests, as long they have somecopulatory access to the female during egg laying.  相似文献   
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摘要:采用杂交方法对虹鳉(Poecilia reticulate)透明性状的遗传规律进行了研究。从F1自交和回交后代的表型分析,该性状由1对等位基因控制,呈隐性遗传,其遗传特征符合孟德尔基因分离定律。采用体视镜观察比较不同表型虹鳉体表色素细胞的差异,并应用石蜡切片和电镜技术对不同表型鱼的皮肤、腹膜等结构进行研究,结果显...  相似文献   
54.
Male sailfin mollies Poecilia latipinna were tested in five different treatments that varied in the relative frequency of heterospecific gynogens (Amazon molly Poecilia formosa) to conspecific females to determine whether social interactions among males within a population causes some males to mate with heterospecific females. Male P. latipinna inseminated a significantly higher proportion of conspecific females and fertilized a significantly higher number of conspecific eggs regardless of the treatment. Nonetheless, preference for conspecific females was not exclusive as a range of 20 to 50% of heterospecific females were fertilized. Social interactions among males may best explain the results and may therefore play an important role in the maintenance of unisexual--bisexual mating complexes.  相似文献   
55.
A major goal of modern evolutionary biology is to understand the causes and consequences of phenotypic plasticity, the ability of a single genotype to produce multiple phenotypes in response to variable environments. While ecological and quantitative genetic studies have evaluated models of the evolution of adaptive plasticity, some long-standing questions about plasticity require more mechanistic approaches. Here, we address two of those questions: does plasticity facilitate adaptive evolution? And do physiological costs place limits on plasticity? We examine these questions by comparing genetically and plastically regulated behavioural variation in sailfin mollies (Poecilia latipinna), which exhibit striking variation in plasticity for male mating behaviour. In this species, some genotypes respond plastically to a change in the social environment by switching between primarily courting and primarily sneaking behaviour. In contrast, other genotypes have fixed mating strategies (either courting or sneaking) and do not display plasticity. We found that genetic and plastic variation in behaviour were accompanied by partially, but not completely overlapping changes in brain gene expression, in partial support of models that predict that plasticity can facilitate adaptive evolution. We also found that behavioural plasticity was accompanied by broader and more robust changes in brain gene expression, suggesting a substantial physiological cost to plasticity. We also observed that sneaking behaviour, but not courting, was associated with upregulation of genes involved in learning and memory, suggesting that sneaking is more cognitively demanding than courtship.  相似文献   
56.
Males from different populations of the same species often differ in their sexually selected traits. Variation in sexually selected traits can be attributed to sexual selection if phenotypic divergence matches the direction of sexual selection gradients among populations. However, phenotypic divergence of sexually selected traits may also be influenced by other factors, such as natural selection and genetic constraints. Here, we document differences in male sexual traits among six introduced Australian populations of guppies and untangle the forces driving divergence in these sexually selected traits. Using an experimental approach, we found that male size, area of orange coloration, number of sperm per ejaculate and linear sexual selection gradients for male traits differed among populations. Within populations, a large mismatch between the direction of selection and male traits suggests that constraints may be important in preventing male traits from evolving in the direction of selection. Among populations, however, variation in sexual selection explained more than half of the differences in trait variation, suggesting that, despite within‐population constraints, sexual selection has contributed to population divergence of male traits. Differences in sexual traits were also associated with predation risk and neutral genetic distance. Our study highlights the importance of sexual selection in trait divergence in introduced populations, despite the presence of constraining factors such as predation risk and evolutionary history.  相似文献   
57.
The unprecedented polymorphism in the major histocompatibility complex (MHC) genes is thought to be maintained by balancing selection from parasites. However, do parasites also drive divergence at MHC loci between host populations, or do the effects of balancing selection maintain similarities among populations? We examined MHC variation in populations of the livebearing fish Poecilia mexicana and characterized their parasite communities. Poecilia mexicana populations in the Cueva del Azufre system are locally adapted to darkness and the presence of toxic hydrogen sulphide, representing highly divergent ecotypes or incipient species. Parasite communities differed significantly across populations, and populations with higher parasite loads had higher levels of diversity at class II MHC genes. However, despite different parasite communities, marked divergence in adaptive traits and in neutral genetic markers, we found MHC alleles to be remarkably similar among host populations. Our findings indicate that balancing selection from parasites maintains immunogenetic diversity of hosts, but this process does not promote MHC divergence in this system. On the contrary, we suggest that balancing selection on immunogenetic loci may outweigh divergent selection causing divergence, thereby hindering host divergence and speciation. Our findings support the hypothesis that balancing selection maintains MHC similarities among lineages during and after speciation (trans‐species evolution).  相似文献   
58.
通过研究黑玛丽Poecilia latipinna精子包破裂的过程和影响因素、精子运动的情况及影响因素,结果发现,当精液用Hank’s平衡盐溶液(HBSS)稀释约5 min后精子包开始破裂,约12 min后全部破裂。释放出的精子暂时处于休眠状态,约50 min后,处于HBSS稀释液中的精子会被激活。应用计算机辅助精子分析系统对黑玛丽精子在不同pH和不同温度下HBSS中的精子运动百分数、运动时间和平均运动速率进行观察。在pH7~8的中性或弱碱性溶液中,精子运动活力较强;而在酸性(pH<7)或碱性较强(pH>9)的溶液中,精子的运动活力都会降低。在不同温度下的HBSS中精子的活力不同,精子在低温(4℃)条件下的运动时间显著长于在室温(20℃)条件下,但运动速度较慢。本研究初步探讨了黑玛丽的精子包特性以及pH和温度对精子运动活力的影响,旨在对黑玛丽等卵胎生鱼类的人工授精,以及生殖生物学特性等的研究提供更丰富的基础资料。  相似文献   
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Under the threat of predation, animals can decrease their level of risk by moving towards other individuals to form compact groups. A significant body of theoretical work has proposed multiple movement rules, varying in complexity, which might underlie this process of aggregation. However, if and how animals use these rules to form compact groups is still not well understood, and how environmental factors affect the use of these rules even less so. Here, we evaluate the success of different movement rules, by comparing their predictions with the movement seen when shoals of guppies (Poecilia reticulata) form under the threat of predation. We repeated the experiment in a turbid environment to assess how the use of the movement rules changed when visual information is reduced. During a simulated predator attack, guppies in clear water used complex rules that took multiple neighbours into account, forming compact groups. In turbid water, the difference between all rule predictions and fish movement paths increased, particularly for complex rules, and the resulting shoals were more fragmented than in clear water. We conclude that guppies are able to use complex rules to form dense aggregations, but that environmental factors can limit their ability to do so.  相似文献   
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