NARA Discovery
Article Details
← Back to Search Results
Journal Article

Key rules of life and the fading cryosphere: Impacts in alpine lakes and streams

James J. Elser; Chenxi Wu; Angélica L. González; Daniel H. Shain; Heidi J. Smith; Ruben Sommaruga; Craig E. Williamson; Janice Brahney; Scott Hotaling; Joseph Vanderwall; Jinlei Yu; Vladimir Aizen; Elena Aizen; Tom J. Battin; Roberto Camassa; Xiu Feng; Hongchen Jiang; Lixin Lu; John J. Qu; Ze Ren; Jun Wen; Lijuan Wen; H. Arthur Woods; Xiong Xiong; Jun Xu; Gongliang Yu; Joel T. Harper; Jasmine E. Saros
Global Change Biology · Vol. 26, Issue 12 · pp. 6644-6656 · 2020

Abstract

Alpine regions are changing rapidly due to loss of snow and ice in response to ongoing climate change. While studies have documented ecological responses in alpine lakes and streams to these changes, our ability to predict such outcomes is limited. We propose that the application of fundamental rules of life can help develop necessary predictive frameworks. We focus on four key rules of life and their interactions: the temperature dependence of biotic processes from enzymes to evolution; the wavelength dependence of the effects of solar radiation on biological and ecological processes; the ramifications of the non‐arbitrary elemental stoichiometry of life; and maximization of limiting resource use efficiency across scales. As the cryosphere melts and thaws, alpine lakes and streams will experience major changes in temperature regimes, absolute and relative inputs of solar radiation in ultraviolet and photosynthetically active radiation, and relative supplies of resources (e.g., carbon, nitrogen, and phosphorus), leading to nonlinear and interactive effects on particular biota, as well as on community and ecosystem properties. We propose that applying these key rules of life to cryosphere‐influenced ecosystems will reduce uncertainties about the impacts of global change and help develop an integrated global view of rapidly changing alpine environments. However, doing so will require intensive interdisciplinary collaboration and international cooperation. More broadly, the alpine cryosphere is an example of a system where improving our understanding of mechanistic underpinnings of living systems might transform our ability to predict and mitigate the impacts of ongoing global change across the daunting scope of diversity in Earth's biota and environments.

Bibliographic Information

JournalGlobal Change Biology
PublisherWiley
Publication Date2020-12-01
Publication Year2020
Volume26
Issue12
Pages6644-6656
Document TypeJournal Article
Print ISSN1354-1013
eISSN1365-2486
DOI10.1111/gcb.15362
SubjectConservation Science

Access Information

NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/13652486
Publisher PageOpen Publisher Page
Full-text access depends on NARA's subscribed coverage and institutional access.