Volume 7 Issue 1
Dec.  2019
Turn off MathJax
Article Contents
Sen Song, Jiani Chen, Bo Jiang, Naifa Liu. 2016: Variation in egg and clutch size of the Black Redstart (Phoenicurus ochruros) at the northeastern edge of the Qinghai-Tibetan Plateau. Avian Research, 7(1): 20. DOI: 10.1186/s40657-016-0055-0
Citation: Sen Song, Jiani Chen, Bo Jiang, Naifa Liu. 2016: Variation in egg and clutch size of the Black Redstart (Phoenicurus ochruros) at the northeastern edge of the Qinghai-Tibetan Plateau. Avian Research, 7(1): 20. DOI: 10.1186/s40657-016-0055-0

Variation in egg and clutch size of the Black Redstart (Phoenicurus ochruros) at the northeastern edge of the Qinghai-Tibetan Plateau

More Information
  • Corresponding author:

    Naifa Liu, naifaliu@sohu.com

  • Received Date: 01 Aug 2016
  • Accepted Date: 17 Oct 2016
  • Available Online: 24 Apr 2022
  • Published Date: 03 Nov 2016
  • Background 

    In birds, the trade-off between the quality and number of nestlings is one of the most important theories of the evolution of life history of birds, which is closely related with climate. We investigated variation in egg and clutch size of the Black Redstart (Phoenicurus ochruros) on the northeastern edge of the Qinghai-Tibetan Plateau in order to explore and test the relation between egg size and clutch size and the rules governing the variation in these two components with climate change.

    Methods 

    We monitored each located nest daily to determine the exact laying order of the eggs and measured their sizes. The variations in egg volume and clutch size between 2008 and 2009 were studied by independent sample t tests. The difference in egg volume in the sequence of the laying order was tested by Kendall's W test and we employed Pearson correlations to investigate the relation between egg size and laying order. All statistical analyses were performed with IBM SPSS Statistics, version 19.0

    Results 

    In 2008, the mean egg volume of the Black Redstart was 2.40 ± 0.20 cm3 (n = 50), and the mean clutch size 4.90 ± 0.57 (n = 11). In 2009, the mean egg volume and clutch size were 2.26 ± 0.18 cm3 (n = 74) and 5.20 ± 0.26 (n = 15) respectively. We found a significantly positive correlation between egg size and laying order (r = 0.397, p = 0.030), while egg size was strongly and negatively correlated with clutch size (r = -0.274, p = 0.002). Black Redstarts tend to lay smaller eggs but a larger clutch in a brood in a resource-rich year, whereas larger eggs but smaller clutches are produced in a harsh year.

    Conclusions 

    The Black Redstart adopted a "brood survival strategy" to ensure that more offspring could survive. The Black Redstart' trade-off in egg volume and clutch size would guarantee that it will gain maximum benefit in any case.

  • loading
  • Amat JA, Fraga RM, Arroyo GM. Intraclutch egg-size variation and offspring survival in the Kentish Plover Charadrius alexandrinus. Ibis. 2001;143:17-23.
    Both C, Visser ME. The effect of climate change on the correlation between avian life-history traits. Glob Change Biol. 2005;11:1606-13.
    Christians JK. Avian egg size: variation within species and inflexibility within individuals. Biol Rev. 2002;77:1-26.
    Clark AB, Wilson DS. Avian breeding adaptations: hatching asynchrony, brood reduction, and nest failure. Q Rev Biol. 1981;56:253-77.
    Cody ML. A general theory of clutch size. Evolution. 1966;20:174-84.
    Coulson JC. Egg size and shape in the Kittiwake and their use in estimating age composition of populations. Proc Zool Soc Lond. 1963;140:211-27.
    Crick HQP. The impact of climate change on birds. Ibis. 2004;146(Suppl 1):48-56.
    Desrochers A, Magrath RD. Age-specific fecundity in European Blackbirds (Turdus merula): individual and population trends. Auk. 1993;110:255-62.
    Dolenec Z. Egg dimensions variation in relation to the laying order in Black Redstart (Phoenicurus ochruros Gmelin, 1774) in NW Croatia. Belg J Zool. 2006;136:257-8.
    Du B, Zhao QS, Liu CJ, Guan MM, Liu NF. Giant Babaxes mix brood reduction and brood survival strategies. J Ornithol. 2012;153:611-9.
    Du B, Liu CJ, Yang M, Bao SJ, Guan MM, Liu NF. Horned larks on the Tibetan Plateau adjust the breeding strategy according to the seasonal changes in the risk of nest predation and food availability. J Avian Biol. 2014;45:466-74.
    Fox CW, Czesak ME. Evolutionary ecology of progeny size in Arthropods. Annu Rev Entomol. 2000;45:341-69.
    Hargitai R, Török J, Tóth L, Hegyi G, Rosivall B, Szigeti B, Szöllősi E. Effects of environmental conditions and parental quality on inter- and intraclutch egg-size variation in the Collared Flycatcher (Ficedula albicolis). Auk. 2005;122:509-22.
    Hill DA. Laying date, clutch size and egg size of the Mallard (Anas platyrhynchos) and Tufted Duck (Aythya fuligula). Ibis. 1984;126:484-95.
    Högstedt G. Evolution of clutch size in birds: adaptive variation in relation to territory quality. Science. 1980;210:1148-50.
    Hőrak P, Mänd R, Ots I, Leivits A. Egg size in Great Tit Parus major: individual, habitat and geographic differences. Ornis Fenn. 1995;72:97-114.
    Hoyt DF. Practical methods of estimating volume and fresh weight of bird eggs. Auk. 1979;96:73-7.
    Lack D. The significance of clutch-size, Part Ⅰ and Part Ⅱ. Ibis. 1947;89:302-52.
    Lack D. The significance of clutch size, Part Ⅲ. Ibis. 1948;90:25-45.
    Lack D. The natural regulation of animal numbers. Oxford: Clarendon Press; 1954.
    Lack D, Lack E. The breeding biology of the Swift Apus apus. Ibis. 1951;93:501-46.
    Liu NF, Ma CY. Gahai-Zecha National Nature Reserve. Beijing: China Forestry Publishing Press; 1997.
    Lu X, Ma XH, Fan LQ. Nesting and cooperative breeding behaviours of a high-altitude babbler, Tibetan Babax Babax koslowi. Acta Ornithol. 2007;42:181-5.
    Lu X, Gong GH, Zeng XH. Reproductive ecology of browncheeked laughing thrushes (Garrulax benrici) in Tibet. J Field Ornithol. 2008;79:152-8.
    Lu X, Yu T, Liang W, Yang C. Comparative breeding ecology of two white-bellied redstart populations at different altitudes. J Field Ornithol. 2010;81:167-75.
    Martin TE. Food as a limit on breeding birds: a life-history perspective. Annu Rev Ecol Syst. 1987;18:453-87.
    Murphy TM. Breeding patterns of Eastern Phoebes in Kansas: adaptive strategies or physiological constraint? Auk. 1994;111:617-33.
    Murton RK, Westwood NJ, Isaacson AJ. Factors affecting egg-weight, body weight and moult of the Wood Pigeon Columba palumbus. Ibis. 1974;116:52-73.
    Newton I. Population Limitation in Birds. London: Academic Press; 1998.
    Oppliger A, Christe P, Richner H. Clutch size and malarial parasites in female great tites. Behav Ecol. 1997;8:148-52.
    Simith CC, Fretwell SD. The optimal balance between size and number of offspring. Am Nat. 1974;108:499-506.
    Slagsvold T. Clutch size variation in passerine birds: the nest predation hypothesis. Oecologia. 1982;54:159-69.
    Slagsvold T, Sandvik J, Rofstad G, Lorensten Ö, Husky M. On the adaptive value of intraclutch egg-size variations in birds. Auk. 1984;101:685-97.
    Smith HG, Ohlsson T, Wettermark KJ. Adaptive significance of egg size in the European Starling: experimental tests. Ecology. 1995;76:1-7.
    Stenseth NC, Mysterud A, Ottersen G, Hurrell JW, Chan KS, Lima M. Ecological effects of climate fluctuations. Science. 2002;297:1292-6.
    Tinbergen JM, Daan S. Family planning in the Great Tit (Parus major): optimal clutch size as integration of parent and offspring fitness. Behavior. 1990;114:161-90.
    Viñuela J. Opposing selective pressures on hatching asynchrony: egg viability, brood reduction, and nestling growth. Behav Ecol Sociobiol. 2000;48:333-43.
    Williams TD. Intraspecific variation in egg size and egg composition in birds: effects on offspring fitness. Biol Rev. 1994;68:35-59.
    Winkler DW, Wallin K. Offspring size and number: a life history model linking effort per offspring and total effort. Am Nat. 1987;129:708-20.
    Zhang XA, Zhao L, Liu ZH, Li LX. Manipulating brood size experiments of two species passerine birds-testing Lack's hypothesis. Acta Ecol Sin. 2003;23:657-64.
    Zhao L, Li LX, Zhang XA. Effects of hatching behavior on offspring quality in two species passerines. Zool Res. 2002a;23(1):25-30.
    Zhao L, Zhang XA, Li MC. Effects on nestling growth by brood manipulation in two passerine birds. Chin J Zool. 2002b;37(3):6-8.

Catalog

    Corresponding author: Naifa Liu, naifaliu@sohu.com

    1. On this Site
    2. On Google Scholar
    3. On PubMed

    Tables(3)

    Article Metrics

    Article views (463) PDF downloads (16) Cited by()

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return