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143 results for “mating success”
Data from: Multi-night territorial behavior, chorus attendance, and mating success in red-eyed treefrogs
<p>For many frog species that aggregate around ponds or streams, chorus attendance, the percentage of time or nights a given male is present and actively calling at an aggregation, is the strongest documented predictor of inter-male variation in reproductive success in the wild. Males are, thus, thought to compete via endurance rivalry, where available energetic reserves and individual physiology interact to determine chorus tenure. Frogs often exhibit territorial behavior within these aggregations, and territorial status is likely to influence a male's rate of energy expenditure. While males of several anuran species have been shown to hold territories across nights, it is not well understood whether such calling site fidelity is correlated with chorus attendance or mating success. Using subdermal RFID (PIT) tags, to minimize disturbance to chorus structure, we quantified site fidelity, chorus attendance, and mating success for all male red-eyed treefrogs (<em>Agalychnis callidryas</em>) within a breeding aggregation in Panama across 50 consecutive nights. We found that nearly half of these males held territories across nights, that this cross-night territorial behavior was highly correlated with chorus attendance, and that chorus attendance was, in turn, the strongest predictor of male mating success. Males were most faithful to calling sites containing vegetation contiguous with adjacent sites and were more likely to remain at a site if they were successful in acquiring a mate there on the previous night. To our knowledge, this is the first study linking male site fidelity to chorus attendance and mating success in anurans. While female mate choice is an established driver of lineage diversification and the evolution of sexual signals, agonistic interactions between males at breeding aggregations are well-documented from a wide range of anuran taxa. The relationship between male-male interactions and mating success deserves broader research attention among anuran species.</p>
Effects of temperature on mating behaviour and mating success: a meta-analysis
<p>In light of global climate change, there is a pressing need to understand how populations will respond to rising temperatures. Understanding the effects of temperature changes on mating behaviour is particularly important, given its implications for population viability. To this end, we performed a meta-analysis of 53 studies to examine how temperature changes influence mating latency, choosiness, and mating success. We hypothesized that if higher temperatures make mate searching and mate assessment more costly due to elevated metabolism, this may lead to a reduction in mating latency and choosiness, thereby increasing overall mating success. We found no evidence for an overall effect of temperature on mating latency, choosiness, or mating success. There was an increase in mating success when animals were exposed to higher temperatures during mating trials, but not when they were exposed before mating trials. In addition, in a subset of studies that measured both mating latency and mating success, there was a strong negative relationship between the effect sizes for these traits. This suggests that a decrease in mating latency at higher temperatures was associated with an increase in mating success and vice versa. In sum, our meta-analysis provides new insights into the effects of temperature on mating patterns. The absence of a consistent directional effect of temperature on mating behaviours and mating success suggests it may be difficult to predict changes in the strength of sexual selection in natural populations in a warming world. Nevertheless, there is some evidence that (i) higher temperatures during mating may lead to an increase in mating success and that (ii) an increase in mating success is associated with a decrease in mating latency.</p>
Activational and organizational effects of testosterone on the number of mating partners and reproductive success in males of a social rodent
<p>The timing of exposure to the steroid hormone, testosterone, produces activational and organizational effects in vertebrates. These activational and organizational effects are hypothesized to relate with the number of female mating partners and reproductive success in males. We tested this hypothesis by examining 151 wild degu (<em>Octodon degus</em>) males across a 10-year study. We quantified the association between adult serum testosterone levels (i.e., an indirect index of adult activational effects) and anogenital distance (AGD) length (i.e., a direct index of fetal organizational effects), and their interaction on the number of female mating partners and reproductive success. We found no evidence of an association between adult male serum testosterone levels and the number of female mating partners, or between adult male serum testosterone levels and reproductive success. However, male AGD was positively associated with reproductive success, but not so with the number of female mating partners. Additionally, the positive association between male AGD and male reproductive success was mediated by the number of mates. Our findings do not support major roles of activational or organizational effects of testosterone on the number of female mating partners and its consequences on male reproductive success. Instead, our results suggest that compared with individual male attributes, the female social environment plays a more important role in driving male reproductive success.</p>
Data from: Cryptic male mate choice for high-quality females reduces male postcopulatory success in future matings
<p>Cryptic male mate choice occurs when males differentially allocate resources to females during or after copulation. When male resources are limited, males may benefit by strategically allocating more resources toward higher-quality females. In the fruit fly, <em>Drosophila melanogaster</em>, males mate for longer and may transfer more sperm and more seminal proteins when they mate with larger females compared to smaller females. It is unclear, however, whether this increased investment in large females has any impact on the males' later matings. We mated <em>D. melanogaster</em> males sequentially to females of large or small body size in all possible combinations to test whether cryptic male mate choice for large females is costly to the males' subsequent matings. Second matings were shorter for males compared to their first matings, but there were no differences in fecundity between females mated first or second by a male. Interestingly, male success at defensive sperm competition declined between his first and second matings only when his first mating had been with a large female. This suggests that the higher initial investment in large females reduced male postcopulatory success in their subsequent matings. Cryptic male mate choice may carry underappreciated costs to males that could limit their reproductive potential.</p>
Iporangaia – Body condition affecting mating success and parenting behavior
<p>Female mate choice is usually based on traits that signal male quality as a sexual partner. According to the 'good parent hypothesis', female mate choice may also consider male quality as a caregiver in species with male-only care. Because parental activities may be costly, males in good condition should be more attractive to females than those in poor condition. We experimentally manipulated the body condition of parental and non-parental males of the egg-tending harvestman <em>Iporangaia pustulosa</em> and then evaluated how it affected their mating success and ability to protect eggs under field conditions. For non-parental males, individuals in good condition had twice the probability of mating than those in poor condition. For parental males, individuals in good condition had two times more chances of mating and acquired four times more eggs than those in poor condition. Surprisingly, males' body condition had no effect on the efficiency of egg protection. Thus, our results indicate that the male condition is a sexually selected trait, but we found no support for the 'good parent hypothesis' given that an increase in body condition does not improve the survival of the offspring under male care. Instead, these findings are congruent with predictions of the 'essential male care' model, which suggests that, when the costs of parental care are low (as is the case of egg attendance), most males can provide the minimum necessary care for offspring survival. However, only males in good condition can allocate surplus energy to advertise their overall quality and attract more mates.</p>
Data from: Development time mediates the effect of larval diet on ageing and mating success of male antler flies in the wild
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Iporangaia – Body condition affecting mating success and parenting behavior
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Behavioral estimates of mating success corroborate genetic evidence for pre-copulatory selection
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Data from: Longer matings increase male competitive fertilization success in <em>Drosophila melanogaster</em>
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Data for: Increased male mating success in the presence of prey and rivals in a sexually cannibalistic mantis
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Data from: Correlational selection on personality and social plasticity: morphology and social context determine behavioural effects on mating success
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Data from: Condition-dependent interaction between mating success and competitive fertilization success in Drosophila melanogaster
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Data from: Multi-night territorial behavior, chorus attendance, and mating success in red-eyed treefrogs
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Effects of temperature on mating behaviour and mating success: a meta-analysis
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Low toxicity crop fungicide (Fenbuconazole) impacts reproductive male quality signals leading to a reduction of mating success in a wild solitary bee
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Data from: Infrapopulation size and mate availability influence reproductive success of a parasitic plant
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Data for: The suppression of a selfish genetic element increases a male's mating success in a fly
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Activational and organizational effects of testosterone on the number of mating partners and reproductive success in males of a social rodent
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Data from: Cryptic male mate choice for high-quality females reduces male postcopulatory success in future matings
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Data and code for: Decline in offspring quantity but not quality from successive matings in male rainforest <em>Drosophila</em>, with no evidence for genetic divergence in male mating behaviour along climatic and density gradients
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