A note on the evolution of clutch size in altricial birds

1977 ◽  
pp. 193-214 ◽  
Author(s):  
R. E. Ricklefs
Keyword(s):  
2016 ◽  
Vol 94 (7) ◽  
pp. 473-477 ◽  
Author(s):  
N. Morrell ◽  
K.M. Johnson ◽  
C.E. Tarwater ◽  
P. Arcese

Individual variation in nest defense behaviour is common in altricial birds, but despite clear predictions about why such variation exists, there is no consensus on its causes. We tested for an influence of five predictors of individual variation in nest defense behaviour, including time of season, offspring age, parental age and sex, and clutch size in a well-studied Song Sparrow (Melospiza melodia (A. Wilson, 1810)) population. We recorded parental responses to a standardized human approach and used model selection to assess support for each predictor. Parents tended to approach observers less closely and alarm-call less as the breeding season progressed, indicating a modest seasonal decline in parental nest defense, which is consistent with the hypothesis that the reproductive value of offspring influenced parental defense behaviour. Clutch size effect estimates were insignificant, but it was weakly supported as a predictor of nest defense, which is expected if parental investment in defense and current reproductive effort are positively related. Offspring age, as well as parental age and sex, received little or no support as affecting parent nest defense. Our results offer limited support for the hypothesis that the reproductive value of offspring affects parental nest defense.


1987 ◽  
Vol 14 (3) ◽  
pp. 319 ◽  
Author(s):  
Yoram Yom-Tov

The relationships between body weight, clutch size, length of breeding season, breeding frequency, incubation and nestling periods were studied in the Australian passerines. The means of the above factors as well as allometric equations were calculated for all Australian passerines and separately for the four major families (Maluridae, Meliphagidae, Muscicapidae and Ploceidae) and six zones of distribution (all Australia; Bassian; Torresian; Torresian and Bassian; Irian; Eyrean). The mean clutch size of Australian passerines is significantly smaller than that of North African passerines. This is because the old invaders to Australia (e.g. the Meliphagidae, Maluridae and Muscicapidae) have significantly smaller clutches than the new invaders (e.g. Ploceidae and Corvidae). A significant difference in clutch size was found between the Irian and Eyrean zones, supporting an early claim by Kikkawa. Negative correlations were found between body weight and clutch size, length of breeding season and breeding frequency. These indicate that small passerines in Australia tend to have larger clutches and longer breeding seasons and to breed more frequently than larger species. Body weight is positively correlated with both incubation and nestling period, as found for other altricial birds. There are no significant differences in incubation length between the zones, but there are differences among the families. The ecological implications and the possible reasons for the above correlations and differences between the groups are discussed.


1987 ◽  
Vol 130 (6) ◽  
pp. 839-863 ◽  
Author(s):  
R. F. Rockwell ◽  
C. S. Findlay ◽  
F. Cooke

Author(s):  
Kristina Noreikienė ◽  
Kim Jaatinen ◽  
Benjamin B. Steele ◽  
Markus Öst

AbstractGlucocorticoid hormones may mediate trade-offs between current and future reproduction. However, understanding their role is complicated by predation risk, which simultaneously affects the value of the current reproductive investment and elevates glucocorticoid levels. Here, we shed light on these issues in long-lived female Eiders (Somateria mollissima) by investigating how current reproductive investment (clutch size) and hatching success relate to faecal glucocorticoid metabolite [fGCM] level and residual reproductive value (minimum years of breeding experience, body condition, relative telomere length) under spatially variable predation risk. Our results showed a positive relationship between colony-specific predation risk and mean colony-specific fGCM levels. Clutch size and female fGCM were negatively correlated only under high nest predation and in females in good body condition, previously shown to have a longer life expectancy. We also found that younger females with longer telomeres had smaller clutches. The drop in hatching success with increasing fGCM levels was least pronounced under high nest predation risk, suggesting that elevated fGCM levels may allow females to ensure some reproductive success under such conditions. Hatching success was positively associated with female body condition, with relative telomere length, particularly in younger females, and with female minimum age, particularly under low predation risk, showing the utility of these metrics as indicators of individual quality. In line with a trade-off between current and future reproduction, our results show that high potential for future breeding prospects and increased predation risk shift the balance toward investment in future reproduction, with glucocorticoids playing a role in the resolution of this trade-off.


2020 ◽  
Vol 10 (1) ◽  
Author(s):  
Cynthia Reséndiz-Infante ◽  
Gilles Gauthier

AbstractMany avian migrants have not adjusted breeding phenology to climate warming resulting in negative consequences for their offspring. We studied seasonal changes in reproductive success of the greater snow goose (Anser caerulescens atlantica), a long-distance migrant. As the climate warms and plant phenology advances, the mismatch between the timing of gosling hatch and peak nutritive quality of plants will increase. We predicted that optimal laying date yielding highest reproductive success occurred earlier over time and that the seasonal decline in reproductive success increased. Over 25 years, reproductive success of early breeders increased by 42%, producing a steeper seasonal decline in reproductive success. The difference between the laying date producing highest reproductive success and the median laying date of the population increased, which suggests an increase in the selection pressure for that trait. Observed clutch size was lower than clutch size yielding the highest reproductive success for most laying dates. However, at the individual level, clutch size could still be optimal if the additional time required to acquire nutrients to lay extra eggs is compensated by a reduction in reproductive success due to a delayed laying date. Nonetheless, breeding phenology may not respond sufficiently to meet future environmental changes induced by warming temperatures.


Copeia ◽  
1968 ◽  
Vol 1968 (2) ◽  
pp. 417 ◽  
Author(s):  
Allen E. Greer
Keyword(s):  

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