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1.
Sperm competitive ability and genetic relatedness in Drosophila melanogaster: similarity breeds contempt 总被引:1,自引:0,他引:1
Mack PD Hammock BA Promislow DE 《Evolution; international journal of organic evolution》2002,56(9):1789-1795
Abstract.— Offspring of close relatives often suffer severe fitness consequences. Previous studies have demonstrated that females, when given a choice, will choose to avoid mating with closely related males. But where opportunities for mate choice are limited or kin recognition is absent, precopulatory mechanisms may not work. In this case, either sex could reduce the risks of inbreeding through mechanisms that occur during or after copulation. During mating, males or females could commit fewer gametes when mating with a close relative. After mating, females could offset the effects of mating with a closely related male through cryptic choice. Few prior studies of sperm competition have examined the effect of genetic similarity, however, and what studies do exist have yielded equivocal results. In an effort to resolve this issue, we measured the outcome of sperm competition when female Drosophila melanogaster were mated to males of four different degrees of genetic relatedness and then to a standardized competitor. We provide the strongest evidence to date that sperm competitive ability is negatively correlated with relatedness, even after controlling for inbreeding depression. 相似文献
2.
Weinberg R 《Bioethics》2008,22(3):166-178
Sperm donation is a widely accepted and increasingly common practice. In the standard case, a sperm donor sells sperm to an agency, waives his parental rights, and is absolved of parental responsibility. We tend to assume that this involves no problematic abandonment of parental responsibility. If we regard the donor as having parental responsibilities at all, we may think that his parental responsibilities are transferred to the sperm recipients. But, if a man creates a child accidentally, via contraception failure, we tend to assume that the man does indeed have parental responsibilities. Assessing these contrasting conclusions requires a theory of parental responsibility. I analyse prevalent theories of what makes someone parentally responsible and show that none of these theories can withstand scrutiny. I propose a new theory of parental responsibility, which, I argue, is more plausible than the alternatives. My theory of parental responsibility is based on our ownership and control over hazardous materials, namely, our gametes. I show that neither my theory, nor the theories I reject, can support our contrasting intuitions. I conclude that sperm donors are fathers, with parental responsibility. I argue that the alternative conclusion, that neither sperm donors nor accidental fathers are parentally responsible for their resulting offspring, is less plausible. I then consider whether parental responsibility can be transferred and argue that it is far from clear that it can. Finally, I address objections and consider some practical implications of these views. 相似文献
3.
Existing empirical research often do not explain which concepts about genetics underlie the assumption that genetic information is deemed important for donor-conceived offspring. This study focused on how donor-conceived individuals following anonymous sperm donation give meaning to and make sense of genes and genetics. Analysis is based on focus groups and interviews with adult donor-conceived offspring. Findings suggest that genes are part of their specific context of being donor-conceived but also play a role in daily life. Genes make sense on an individual level and a relational level, both on parent-child as sibling-level. On an individual level they were perceived as (1) a biological starting package, (2) their own unique combination and (3) as a reference point. On a relational level, genes were seen as (1) “person-al”, (2) connecting and (3) locating individuals. This information is essential for those supporting/counseling donor conceived offspring and families as well as for policy-members. 相似文献
4.
Queller David C.; Negron-Sotomayor Jorge A.; Straasmann Joan E.; Hughes Colin R. 《Behavioral ecology》1993,4(1):7-13
We found that genetic relatedness among Polybia occidentalisworkers was .26±0.057, a value high enough to make altruisticbehavior by workers relatively easy to explain. This comparativelyhigh level of relatedness can be attributed to close relatednessamong queens of .57±0.077 and to great variation amongcolonies in numbers of queens. The harmonic mean of queen numberis 3.1 queens per colony, which is much lower than the arithmeticmean of 10.6 queens per colony. These results are consistentwith a colony cycle called cyclical oligogyny, that is characterizedby a reduction in queen number from colony initiation to colonyreproduction. We did not find any evidence that one or a fewqueens monopolized egg laying or that there was any inbreeding,both of which have been hypothesized to increase relatednessamong workers. Another factor that can increase relatednessamong workers and the brood they rear is withincolony segregationon the basis of relatedness. We found that combmate pupae aresignificantly more closely related to each other (r = .41) thanthey are to pupae in other combs (r = .33), but we have notinvestigated whether workers take advantage of these relatednesspatterns. This distribution of relatedness among combs willoccur if queens do not lay eggs randomly throughout the nest,but concentrate their egg laying on one or a subset of the availablecombs. 相似文献
5.
The cooperatively breeding bell miner, Manorina melanophrys, differs from most other cooperative breeding species in the complexity of its social system, where discrete social organization occurs on at least three levels. Microsatellite markers were used to investigate the degree of genetic structure underlying the social organization of M. melanophrys by comparing colonies, coteries and nest contingents. The genetic data confirmed behavioural observations of M. melanophrys living in male kin-based groups between which females disperse short distances to breed. Estimates of FST revealed restricted gene flow between eight colonies located within 30 km that was significantly associated with geographical distance when the two most distant colonies were included. Within a high density colony significant differences were found between coteries; analysis of the degree of relatedness between coterie members showed that this is due to related individuals associating preferentially with each other. Similarly, the contingent of individuals attending a nest were generally close relatives of the young they were aiding, supporting models invoking kin selection as the selective agency mediating helping. 相似文献
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Carol S. Walther 《Ethnic and racial studies》2014,37(3):517-536
AbstractConception through donor insemination is an attractive option for many couples and single women in the USA, being a relatively simple and inexpensive way of having a baby by a biological birth. Sperm banks provide online catalogues in which sperm donors can be selected according to their physical and social characteristics. One sperm bank's catalogue was analysed based on the pregnancy of selected donors. Three hypotheses were tested related to colourism, biracial stratification and tri-racialism. Specifically, the selection of donors did not reflect: (1) any general preference for a lighter skin tone; (2) a black–white polarity; or (3) any trend towards tri-racialism. Donors who could be identified as Jewish or Muslim were more likely to be selected. Donors whose major was law were less likely to be selected. 相似文献
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10.
The validity and value of inclusive fitness theory 总被引:1,自引:0,他引:1
Bourke AF 《Proceedings. Biological sciences / The Royal Society》2011,278(1723):3313-3320
Social evolution is a central topic in evolutionary biology, with the evolution of eusociality (societies with altruistic, non-reproductive helpers) representing a long-standing evolutionary conundrum. Recent critiques have questioned the validity of the leading theory for explaining social evolution and eusociality, namely inclusive fitness (kin selection) theory. I review recent and past literature to argue that these critiques do not succeed. Inclusive fitness theory has added fundamental insights to natural selection theory. These are the realization that selection on a gene for social behaviour depends on its effects on co-bearers, the explanation of social behaviours as unalike as altruism and selfishness using the same underlying parameters, and the explanation of within-group conflict in terms of non-coinciding inclusive fitness optima. A proposed alternative theory for eusocial evolution assumes mistakenly that workers' interests are subordinate to the queen's, contains no new elements and fails to make novel predictions. The haplodiploidy hypothesis has yet to be rigorously tested and positive relatedness within diploid eusocial societies supports inclusive fitness theory. The theory has made unique, falsifiable predictions that have been confirmed, and its evidence base is extensive and robust. Hence, inclusive fitness theory deserves to keep its position as the leading theory for social evolution. 相似文献
11.
Karol Fijałkowski Helena Masiuk Danuta Czernomysy‐Furowicz Jolanta Karakulska Paweł Nawrotek Aleksandra Paszkowska Magdalena Struk Stefania Giedrys‐Kalemba 《Microbiology and immunology》2013,57(10):674-683
This study evaluated the superantigen gene profiles, genetic relatedness and biological activity of exosecretions of 50 Staphylococcus aureus isolates obtained from milk of cows with clinical mastitis. Genomic relatedness of S. aureus was determined by pulsed field gel electrophoresis analysis of macro‐restricted chromosomes. The presence of genes encoding superantigens was confirmed by multiplex PCR. To study the biological activity of S. aureus exosecretions, the supernatants from bacterial liquid cultures were classified into three groups: those with leukotoxin‐like properties, those with superantigen‐like properties and those with no particular activity on leukocytes cultured in vitro. It was shown that all analyzed bacterial isolates belonged to the same clonal type and harbored the same combination of superantigen genes, namely sed, selj and ser. However, 22% of all isolates produced factors with superantigen‐like and 48% of them with leukotoxin‐like activities. Finally, although there were no detectable genetic differences between the analyzed bacterial isolates, the virulence factors secreted by them differed considerably. 相似文献
12.
An essential step toward reconstructing pathogen transmission and answering epidemiologically relevant questions from genomic data is obtaining pairwise genetic distance between infections. For recombining organisms such as malaria parasites, relatedness measures quantifying recent shared ancestry would provide a meaningful distance, suggesting methods based on identity by descent (IBD). While the concept of relatedness and consequently an IBD approach is fairly straightforward for individual parasites, the distance between polyclonal infections, which are prevalent in malaria, presents specific challenges, and awaits a general solution that could be applied to infections of any clonality and accommodate multiallelic (e.g. microsatellite or microhaplotype) and biallelic [single nucleotide polymorphism (SNP)] data. Filling this methodological gap, we present Dcifer (Distance for complex infections: fast estimation of relatedness), a method for calculating genetic distance between polyclonal infections, which is designed for unphased data, explicitly accounts for population allele frequencies and complexity of infection, and provides reliable inference. Dcifer’s IBD-based framework allows us to define model parameters that represent interhost relatedness and to propose corresponding estimators with attractive statistical properties. By using combinatorics to account for unobserved phased haplotypes, Dcifer is able to quickly process large datasets and estimate pairwise relatedness along with measures of uncertainty. We show that Dcifer delivers accurate and interpretable results and detects related infections with statistical power that is 2–4 times greater than that of approaches based on identity by state. Applications to real data indicate that relatedness structure aligns with geographic locations. Dcifer is implemented in a comprehensive publicly available software package. 相似文献
13.
The use of AFLPs to examine genetic relatedness in barley 总被引:7,自引:0,他引:7
Ellis Roger P. McNicol James W. Baird Eileen Booth Allan Lawrence Pat Thomas Bill Powell Wayne 《Molecular breeding : new strategies in plant improvement》1997,3(5):359-369
The generation of AFLPs in spring barley cultivars provided genetic information relating to the development of the crop in the UK since 1953. Principal co-ordinate (PCO) analysis of genetic similarities (gs) confirmed the marked contrast in the cultivars used in the 1970s and 1980s. The earliest cultivars, many derived from Proctor, were succeeded by tall-strawed, disease-resistant types with high yield but poor malting potential. In the 1980s they were in turn replaced by short-strawed cultivars with excellent yield and good malting quality, which originated from Triumph. A PCO plot of gs provided insight into the effects of selection for disease resistance and the antagonism between malting quality and particular resistance genes. The analysis of gs was more useful than pedigrees and estimates of kinship in revealing the genetic relationship between cultivars. Theoretical considerations for maximising the efficiency of an AFLP genotyping programme are discussed in the context of the number of primer pairs required to distinguish genotypes at varying levels of similarity. 相似文献
14.
Kin and levels-of-selection models are common approaches for modelling social evolution. Indirect genetic effect (IGE) models represent a different approach, specifying social effects on trait values rather than fitness. We investigate the joint effect of relatedness, multilevel selection and IGEs on response to selection. We present a measure for the degree of multilevel selection, which is the natural partner of relatedness in expressions for response. Response depends on both relatedness and the degree of multilevel selection, rather than only one or the other factor. Moreover, response is symmetric in relatedness and the degree of multilevel selection, indicating that both factors have exactly the same effect. Without IGEs, the key parameter is the product of relatedness and the degree of multilevel selection. With IGEs, however, multilevel selection without relatedness can explain evolution of social traits. Thus, next to relatedness and multilevel selection, IGEs are a key element in the genetical theory of social evolution. 相似文献
15.
Helen R. Taylor 《Ecology and evolution》2015,5(15):3140-3150
Genetic marker‐based estimators remain a popular tool for measuring relatedness (rxy) and inbreeding (F) coefficients at both the population and individual level. The performance of these estimators fluctuates with the number and variability of markers available, and the relatedness composition and demographic history of a population. Several methods are available to evaluate the reliability of the estimates of rxy and F, some of which are implemented in the program COANCESTRY. I used the simulation module in COANCESTRY since assess the performance of marker‐based estimators of rxy and F in a species with very low genetic diversity, New Zealand's little spotted kiwi (Apteryx owenii). I also conducted a review of published papers that have used COANCESTRY as its release to assess whether and how the reliability of the estimates of rxy and F produced by genetic markers are being measured and reported in published studies. My simulation results show that even when the correlation between true (simulated) and estimated rxy or F is relatively high (Pearson's r = 0.66–0.72 and 0.81–0.85, respectively) the imprecision of the estimates renders them highly unreliable on an individual basis. The literature review demonstrates that the majority of studies do not report the reliability of marker‐based estimates of rxy and F. There is currently no standard practice for selecting the best estimator for a given data set or reporting an estimator's performance. This could lead to experimental results being interpreted out of context and render the robustness of conclusions based on measures of rxy and F debatable. 相似文献
16.
The problem of sampling families rather than populations: relatedness among individuals in samples of juvenile brown trout Salmo trutta L. 总被引:2,自引:0,他引:2
In species exhibiting a nonrandom distribution of closely related individuals, sampling of a few families may lead to biased estimates of allele frequencies in populations. This problem was studied in two brown trout populations, based on analysis of mtDNA and microsatellites. In both samples mtDNA haplotype frequencies differed significantly between age classes, and in one sample 17 out of 18 individuals less than 1 year of age shared one particular mtDNA haplotype. Estimates of relatedness showed that these individuals most likely represented only three full-sib families. Older trout exhibiting the same haplotypes generally were not closely related. 相似文献
17.
Effects of ovarian fluid and genetic differences on sperm performance and fertilization success of alternative reproductive tactics in Chinook salmon 下载免费PDF全文
S. J. Lehnert I. A. E. Butts E. W. Flannery K. M. Peters D. D. Heath T. E. Pitcher 《Journal of evolutionary biology》2017,30(6):1236-1245
In many species, sperm velocity affects variation in the outcome of male competitive fertilization success. In fishes, ovarian fluid (OF) released with the eggs can increase male sperm velocity and potentially facilitate cryptic female choice for males of specific phenotypes and/or genotypes. Therefore, to investigate the effect of OF on fertilization success, we measured sperm velocity and conducted in vitro competitive fertilizations with paired Chinook salmon (Oncorhynchus tshawytscha) males representing two alternative reproductive tactics, jacks (small sneaker males) and hooknoses (large guarding males), in the presence of river water alone and OF mixed with river water. To determine the effect of genetic differences on fertilization success, we genotyped fish at neutral (microsatellites) and functional [major histocompatibility complex (MHC) II ß1] markers. We found that when sperm were competed in river water, jacks sired significantly more offspring than hooknoses; however, in OF, there was no difference in paternity between the tactics. Sperm velocity was significantly correlated with paternity success in river water, but not in ovarian fluid. Paternity success in OF, but not in river water alone, was correlated with genetic relatedness between male and female, where males that were less related to the female attained greater paternity. We found no relationship between MHC II ß1 divergence between mates and paternity success in water or OF. Our results indicate that OF can influence the outcome of sperm competition in Chinook salmon, where OF provides both male tactics with fertilization opportunities, which may in part explain what maintains both tactics in nature. 相似文献
18.
M. Z. Ahmed P. J. De Barro A. Olleka S.‐X. Ren N. S. Mandour J. M. Greeff B.‐L. Qiu 《Journal of Applied Entomology》2012,136(7):510-519
The sweet potato whitefly, Bemisia tabaci (Gennadius), is a cryptic species complex composed of at least 24 different morphologically indistinguishable species. The considerable differences in the pest status across the complex, and the ability of some to develop resistance to, insecticides make awareness of their identity critical in terms of developing effective control measures. Previously, phylogenetic reconstructions have been used to identify different B. tabaci, but this approach is no longer necessary because of the existence of mitochondrial cytochrome oxidase one consensus sequences for each of the known species. We therefore use these consensus sequences to determine the identities of the members of the complex in Syria and Egypt and then used genetic networks to reveal the pattern of their genetic relatedness to other haplotypes in the species to which they were assigned. The results showed the presence of three species in Syria, AsiaII 1, Middle East–Asia Minor 1 (this equates to the global invader known commonly as the B biotype) and Mediterranean (this equates to the global invader known commonly as the Q biotype). Egypt was shown to have two cryptic species, Middle East–Asia Minor 1 and Mediterranean. In Syria, Middle East–Asia Minor 1 was found around Damascus only (south‐west Syria), while Mediterranean was found throughout Aleppo (northern Syria) and Hama (north central Syria). AsiaII 1 was found around Hims (south central Syria) and Damascus (south‐western Syria). In Egypt, Mediterranean was found in Cairo and Ismailia (central Upper Egypt), while Middle East–Asia Minor 1 was found in the remaining all parts of Upper Egypt, Suez, North Sinai, Port Said, Dakahila, Behera and Alexandria which cover the main agricultural zone of Egypt. Genetic relatedness of Syrian and Egyptian populations with each other and with rest of world is also discussed. 相似文献
19.
Comparative research on sperm donors and egg donors in the United States suggests that while men view themselves as fathers of their offspring, women do not view themselves as mothers. Comparative research suggests as well that men and women are equally interested in contact with offspring, equally curious about them, and equally likely to hold themselves responsible for those offspring. This paper re-examines these differences and similarities using data from a survey of donors who registered on a third-party website with hopes of having some contact with their genetic offspring. Our findings suggest that women and men offer similar reasons for donating and similar assessments of the experience. Yet, the two groups have developed quite different patterns of interest in their offspring. The men create a sense of “prideful lineage” rather than fatherhood. The women create a pattern of feeling that involves “concerned responsibility” rather than motherhood. 相似文献
20.
Males with high genetic similarity to females sire more offspring in sperm competition in Peron's tree frog Litoria peronii 总被引:1,自引:0,他引:1
Sherman CD Wapstra E Uller T Olsson M 《Proceedings. Biological sciences / The Royal Society》2008,275(1637):971-978
Recent work has confirmed that genetic compatibility among mates can be an important determinant of siring success in sperm competition experiments and in free-ranging populations. Most of this work points towards mate choice of less related mates. However, there may also be the potential for mate choice for intermediate or even genetically similar mates to prevent outbreeding depression or hybridization with closely related taxa. We studied relatedness effects on post-copulatory gametic choice and/or sperm competition in an external fertilizer, Peron's tree frog (Litoria peronii), since external fertilizers offer exceptional control in order to test gametic interaction effects on probability of paternity and zygote viability. Sperm competition experiments were done blindly with respect to genetic relatedness among males and females. Thereafter, paternity of offspring was assigned using eight microsatellite loci. Three hybridization trials between L. peronii and a closely related sympatric species Litoria tyleri were also carried out. In the sperm competition trials, males that are more genetically similar to the female achieved higher siring success compared with less genetically similar males. The hybridization trials confirmed that the two species can interbreed and we suggest that the risk of hybridization may contribute to selection benefits for genetically more similar males at fertilization. To our knowledge, this study is the first to show evidence for post-copulatory selection of sperm from genetically more similar individuals within a natural population. 相似文献