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Seawater carbonate chemistry and growth, production rates, and cellular composition of Arctic diatom

Arctic phytoplankton and their response to future conditions shape one of the most rapidly changing ecosystems on the planet. We tested how much the phenotypic responses of strains from the same Arctic diatom population diverge and whether the physiology and intraspecific composition of multistrain populations differs from expectations based on single strain traits. To this end, we conducted incubation experiments with the diatom Thalassiosira hyalina under present‐day and future temperature and pCO2 treatments. Six fresh isolates from the same Svalbard population were incubated as mono‐ and multistrain cultures. For the first time, we were able to closely follow intraspecific selection within an artificial population using microsatellites and allele‐specific quantitative PCR. Our results showed not only that there is substantial variation in how strains of the same species cope with the tested environments but also that changes in genotype composition, production rates, and cellular quotas in the multistrain cultures are not predictable from monoculture performance. Nevertheless, the physiological responses as well as strain composition of the artificial populations were highly reproducible within each environment. Interestingly, we only detected significant strain sorting in those populations exposed to the future treatment. This study illustrates that the genetic composition of populations can change on very short timescales through selection from the intraspecific standing stock, indicating the potential for rapid population level adaptation to climate change. We further show that individuals adjust their phenotype not only in response to their physicochemical but also to their biological surroundings. Such intraspecific interactions need to be understood in order to realistically predict ecosystem responses to global change.

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Wolf, Klara K E, Romanelli, Elisa, Rost, Björn, John, Uwe, Collins, Sinéad, Weigand, Hannah, Hoppe, Clara Jule Marie (2019). Dataset: Seawater carbonate chemistry and growth, production rates, and cellular composition of Arctic diatom. https://doi.org/10.1594/PANGAEA.913498

DOI retrieved: 2019

Additional Info

Field Value
Imported on November 30, 2024
Last update November 30, 2024
License CC-BY-4.0
Source https://doi.org/10.1594/PANGAEA.913498
Author Wolf, Klara K E
Given Name Klara K E
Family Name Wolf
More Authors
Romanelli, Elisa
Rost, Björn
John, Uwe
Collins, Sinéad
Weigand, Hannah
Hoppe, Clara Jule Marie
Source Creation 2019
Publication Year 2019
Resource Type text/tab-separated-values - filename: Wolf-etal_2019_GCB
Subject Areas
Name: BiologicalClassification

Name: Chemistry

Name: Ecology

Related Identifiers
Title: Company matters: The presence of other genotypes alters traits and intraspecific selection in an Arctic diatom under climate change
Identifier: https://doi.org/10.1111/gcb.14675
Type: DOI
Relation: References
Year: 2019
Source: Global Change Biology
Authors: Wolf Klara K E , Romanelli Elisa , Rost Björn , John Uwe , Collins Sinéad , Weigand Hannah , Hoppe Clara Jule Marie , Gattuso Jean-Pierre , Epitalon Jean-Marie , Lavigne Héloïse , Orr James C , Gentili Bernard , Hagens Mathilde , Hofmann Andreas , Mueller Jens-Daniel , Proye Aurélien , Rae James , Soetaert Karline .

Title: seacarb: seawater carbonate chemistry with R. R package version 3.2.12
Identifier: https://CRAN.R-project.org/package=seacarb
Type: DOI
Relation: References
Year: 2019
Authors: Wolf Klara K E , Romanelli Elisa , Rost Björn , John Uwe , Collins Sinéad , Weigand Hannah , Hoppe Clara Jule Marie , Gattuso Jean-Pierre , Epitalon Jean-Marie , Lavigne Héloïse , Orr James C , Gentili Bernard , Hagens Mathilde , Hofmann Andreas , Mueller Jens-Daniel , Proye Aurélien , Rae James , Soetaert Karline .