Literature DB >> 31743515

Ecological change in dynamic environments: Accounting for temporal environmental variability in studies of ocean change biology.

Kristy J Kroeker1, Lauren E Bell1, Emily M Donham1, Umihiko Hoshijima1, Sarah Lummis1, Jason A Toy1, Ellen Willis-Norton1.   

Abstract

The environmental conditions in the ocean have long been considered relatively more stable through time compared to the conditions on land. Advances in sensing technologies, however, are increasingly revealing substantial fluctuations in abiotic factors over ecologically and evolutionarily relevant timescales in the ocean, leading to a growing recognition of the dynamism of the marine environment as well as new questions about how this dynamism may influence species' vulnerability to global environmental change. In some instances, the diurnal or seasonal variability in major environmental change drivers, such as temperature, pH and seawater carbonate chemistry, and dissolved oxygen, can exceed the changes expected with continued anthropogenic global change. While ocean global change biologists have begun to experimentally test how variability in environmental conditions mediates species' responses to changes in the mean, the extensive literature on species' adaptations to temporal variability in their environment and the implications of this variability for their evolutionary responses has not been well integrated into the field. Here, we review the physiological mechanisms underlying species' responses to changes in temperature, pCO2 /pH (and other carbonate parameters), and dissolved oxygen, and discuss what is known about behavioral, plastic, and evolutionary strategies for dealing with variable environments. In addition, we discuss how exposure to variability may influence species' responses to changes in the mean conditions and highlight key research needs for ocean global change biology.
© 2019 John Wiley & Sons Ltd.

Entities:  

Keywords:  adaptive tracking; bioenergetic/behavioral strategies; manipulative experiments; physiological adaptations; variable environments

Mesh:

Substances:

Year:  2019        PMID: 31743515     DOI: 10.1111/gcb.14868

Source DB:  PubMed          Journal:  Glob Chang Biol        ISSN: 1354-1013            Impact factor:   10.863


  11 in total

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Review 3.  Life in fluctuating environments.

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4.  High PCO2 does not alter the thermal plasticity of developing Pacific herring embryos during a marine heatwave.

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5.  Predictability of thermal fluctuations influences functional traits of a cosmopolitan marine diatom.

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6.  Psychosocial Factors and Psychological Characteristics of Personality of Patients with Chronic Diseases Using Artificial Intelligence Data Mining Technology and Wireless Network Cloud Service Platform.

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7.  Environmental stability and phenotypic plasticity benefit the cold-water coral Desmophyllum dianthus in an acidified fjord.

Authors:  Kristina K Beck; Gertraud M Schmidt-Grieb; Jürgen Laudien; Günter Försterra; Verena Häussermann; Humberto E González; Juan Pablo Espinoza; Claudio Richter; Marlene Wall
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8.  A framework to understand the role of biological time in responses to fluctuating climate drivers.

Authors:  Luis Giménez; Noé Espinosa; Gabriela Torres
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9.  Upwelling-level acidification and pH/pCO2 variability moderate effects of ocean acidification on brain gene expression in the temperate surfperch, Embiotoca jacksoni.

Authors:  Jason A Toy; Kristy J Kroeker; Cheryl A Logan; Yuichiro Takeshita; Gary C Longo; Giacomo Bernardi
Journal:  Mol Ecol       Date:  2022-07-23       Impact factor: 6.622

10.  Diel oxygen fluctuation drives the thermal response and metabolic performance of coastal marine ectotherms.

Authors:  J M Booth; M Fusi; F Giomi; E C N Chapman; K Diele; C D McQuaid
Journal:  Proc Biol Sci       Date:  2021-06-23       Impact factor: 5.530

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