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Gretchen E Hofmann

Showing results (31-40 of 55) with videos related to

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Journal of Comparative Physiology. B, Biochemical, Systemic, and Environmental Physiology|August 22, 2007
Is cold the new hot? Elevated ubiquitin-conjugated protein levels in tissues of Antarctic fish as evidence for cold-denaturation of proteins in vivoAnne E Todgham, Elizabeth A Hoaglund, Gretchen E Hofmann
Global Change Biology|May 11, 2013
Natural variation and the capacity to adapt to ocean acidification in the keystone sea urchin Strongylocentrotus purpuratusMorgan W Kelly, Jacqueline L Padilla-Gamiño, Gretchen E Hofmann
Marine Genomics|June 23, 2019
Transcriptional profiles of early stage red sea urchins (Mesocentrotus franciscanus) reveal differential regulation of gene expression across developmentJuliet M Wong, Juan D Gaitán-Espitia, Gretchen E Hofmann
Plos One|September 16, 2014
Abiotic versus biotic drivers of ocean pH variation under fast sea ice in McMurdo Sound, AntarcticaPaul G Matson, Libe Washburn, Todd R Martz, et al.
Molecular Ecology|January 16, 2013
Transcriptomic responses to ocean acidification in larval sea urchins from a naturally variable pH environmentTyler G Evans, Francis Chan, Bruce A Menge, et al.
Ecology and Evolution|March 24, 2017
Sensitivity of sea urchin fertilization to pH varies across a natural pH mosaicLydia Kapsenberg, Daniel K Okamoto, Jessica M Dutton, et al.
Molecular Ecology|February 8, 2018
Transcriptomics reveal transgenerational effects in purple sea urchin embryos: Adult acclimation to upwelling conditions alters the response of their progeny to differential pCO<sub>2</sub> levelsJuliet M Wong, Kevin M Johnson, Morgan W Kelly, et al.
Integrative and Comparative Biology|June 29, 2011
Molecular chaperones in ectothermic marine animals: biochemical function and gene expressionGretchen E Hofmann, Bradley A Buckley, Sean P Place, et al.
Proceedings. Biological Sciences|August 31, 2022
Genetic variation underlies plastic responses to global change drivers in the purple sea urchin, <i>Strongylocentrotus purpuratus</i>Marie E Strader, Matthew E Wolak, Olivia M Simon, et al.
The Biological Bulletin|December 25, 2012
Development under elevated pCO2 conditions does not affect lipid utilization and protein content in early life-history stages of the purple sea urchin, Strongylocentrotus purpuratusPaul G Matson, Pauline C Yu, Mary A Sewell, et al.
Pageof 6

Showing results (31-40 of 55) with videos related to

Sort By:
Pageof 6
Journal of Comparative Physiology. B, Biochemical, Systemic, and Environmental Physiology|August 22, 2007
Is cold the new hot? Elevated ubiquitin-conjugated protein levels in tissues of Antarctic fish as evidence for cold-denaturation of proteins in vivoAnne E Todgham, Elizabeth A Hoaglund, Gretchen E Hofmann
Global Change Biology|May 11, 2013
Natural variation and the capacity to adapt to ocean acidification in the keystone sea urchin Strongylocentrotus purpuratusMorgan W Kelly, Jacqueline L Padilla-Gamiño, Gretchen E Hofmann
Marine Genomics|June 23, 2019
Transcriptional profiles of early stage red sea urchins (Mesocentrotus franciscanus) reveal differential regulation of gene expression across developmentJuliet M Wong, Juan D Gaitán-Espitia, Gretchen E Hofmann
Plos One|September 16, 2014
Abiotic versus biotic drivers of ocean pH variation under fast sea ice in McMurdo Sound, AntarcticaPaul G Matson, Libe Washburn, Todd R Martz, et al.
Molecular Ecology|January 16, 2013
Transcriptomic responses to ocean acidification in larval sea urchins from a naturally variable pH environmentTyler G Evans, Francis Chan, Bruce A Menge, et al.
Ecology and Evolution|March 24, 2017
Sensitivity of sea urchin fertilization to pH varies across a natural pH mosaicLydia Kapsenberg, Daniel K Okamoto, Jessica M Dutton, et al.
Molecular Ecology|February 8, 2018
Transcriptomics reveal transgenerational effects in purple sea urchin embryos: Adult acclimation to upwelling conditions alters the response of their progeny to differential pCO<sub>2</sub> levelsJuliet M Wong, Kevin M Johnson, Morgan W Kelly, et al.
Integrative and Comparative Biology|June 29, 2011
Molecular chaperones in ectothermic marine animals: biochemical function and gene expressionGretchen E Hofmann, Bradley A Buckley, Sean P Place, et al.
Proceedings. Biological Sciences|August 31, 2022
Genetic variation underlies plastic responses to global change drivers in the purple sea urchin, <i>Strongylocentrotus purpuratus</i>Marie E Strader, Matthew E Wolak, Olivia M Simon, et al.
The Biological Bulletin|December 25, 2012
Development under elevated pCO2 conditions does not affect lipid utilization and protein content in early life-history stages of the purple sea urchin, Strongylocentrotus purpuratusPaul G Matson, Pauline C Yu, Mary A Sewell, et al.
Pageof 6