Compensating for delayed hatching across consecutive life-history stages in an amphibian

被引:43
|
作者
Orizaola, German [1 ]
Dahl, Emma [1 ]
Laurila, Anssi [1 ]
机构
[1] Uppsala Univ, Evolutionary Biol Ctr, Dept Ecol & Evolut, SE-75236 Uppsala, Sweden
关键词
GROWTH-RATES; RAPID GROWTH; INCUBATION-TEMPERATURE; TIME CONSTRAINTS; RANA-TEMPORARIA; EMBRYONIC-DEVELOPMENT; ESCAPE BEHAVIOR; TRADE-OFFS; BODY-SIZE; PREDATION;
D O I
10.1111/j.1600-0706.2009.17956.x
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Environmental conditions experienced early in the ontogeny can have a strong impact on individual fitness and performance later in life. Organisms may counteract the negative effects of poor developmental conditions by developing compensatory responses in growth and development. However, previous studies on compensatory responses have largely ignored the effects that poor embryonic conditions could have during the later life stages. In this study, we examined the effects of artificially delayed development in early life over two later life history transitions by investigating the compensatory growth of larval moor frogs Rana arvalis in response to temperature variation during embryonic development, and the associated costs during the larval 'and postmetamorphic stages. Low temperature during embryonic stage lead to delayed hatching at smaller size. The groups with delayed embryonic development showed strong compensatory growth during the larval stage, and reached similar metamorphic size than the controls in a shorter time. However, the most strongly delayed group was not able to fully catch up the total development time. These compensatory responses were found in the absence of photoperiod cues indicating that the delay in embryonic development was sufficient to initiate the compensatory response in larval growth and development. No apparent costs of compensatory growth were detected in terms of morphology or locomotor performance at the juvenile stage. We found that compensatory responses can be activated as early as at the embryonic stage and extend over several consecutive life history transitions, mitigating the effects of poor conditions experienced early in development. Potential short-term costs in natural environments and the occurrence of long-term costs, which prevent the generalisation of a faster larval life style, are discussed.
引用
收藏
页码:980 / 987
页数:8
相关论文
共 50 条
  • [21] Trait-mediated effects of predation across life-history stages in container mosquitoes
    Costanzo, Katie S.
    Muturi, Ephantus J.
    Alto, Barry W.
    ECOLOGICAL ENTOMOLOGY, 2011, 36 (05) : 605 - 615
  • [22] Variable inbreeding effects across life-history stages in a captive carnivorous mammal population
    Bilski, D. R.
    Pie, M. R.
    Passos, F. C.
    ANIMAL CONSERVATION, 2013, 16 (06) : 633 - 640
  • [23] Competition and coexistence with multiple life-history stages
    Moll, Jason D.
    Brown, Joel S.
    AMERICAN NATURALIST, 2008, 171 (06): : 839 - 843
  • [24] MATRIX MODELS FOR ALGAL LIFE-HISTORY STAGES
    ANG, PO
    DEWREEDE, RE
    MARINE ECOLOGY PROGRESS SERIES, 1990, 59 (1-2) : 171 - 181
  • [25] Identification of life-history stages in fusulinid foraminifera
    Shi, Yukun
    MacLeod, Norman
    MARINE MICROPALEONTOLOGY, 2016, 122 : 87 - 98
  • [26] Energetic linkages among life-history stages
    Lawrence, JM
    George, S
    OCEANOLOGICA ACTA, 1996, 19 (3-4) : 469 - 469
  • [27] Disease-associated change in an amphibian life-history trait
    Scheele, Benjamin C.
    Skerratt, Lee F.
    Hunter, David A.
    Banks, Sam C.
    Pierson, Jennifer C.
    Driscoll, Don A.
    Byrne, Philip G.
    Berger, Lee
    OECOLOGIA, 2017, 184 (04) : 825 - 833
  • [28] Extreme Climate-Induced Life-History Plasticity in an Amphibian
    Becker, Francois S.
    Tolley, Krystal A.
    Measey, G. John
    Altwegg, Res
    AMERICAN NATURALIST, 2018, 191 (02): : 250 - 258
  • [29] Disease-associated change in an amphibian life-history trait
    Benjamin C. Scheele
    Lee F. Skerratt
    David A. Hunter
    Sam C. Banks
    Jennifer C. Pierson
    Don A. Driscoll
    Philip G. Byrne
    Lee Berger
    Oecologia, 2017, 184 : 825 - 833
  • [30] Modelling the population viability of a threatened amphibian with a fast life-history
    Pickett, Evan J.
    Stockwell, Michelle P.
    Clulow, John
    Mahony, Michael J.
    AQUATIC CONSERVATION-MARINE AND FRESHWATER ECOSYSTEMS, 2016, 26 (01) : 9 - 19