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The California State University

Publications

  • Gunderson, A., E. Armstrong and J. Stillman. 2016. Multiple Stressors in a Changing World. Annual Review of Marine Science, Vol 8 8: 357-357.

  • Diner, R., I. Benner, U. Passow, T. Komada, E. Carpenter and J. Stillman. 2015. Negative effects of ocean acidification on calcification vary within the coccolithophore genus Calcidiscus. Marine Biology 162: 1287-1305.

  • Martz, T., K. Daly, R. Byrne, J. Stillman and D. Turk. 2015. TECHNOLOGY FOR OCEAN ACIDIFICATION RESEARCH Needs and Availability. Oceanography 28: 40-47.

  • Bjelde, B., N. Miller, J. Stillman and A. Todgham. 2015. Role of Oxygen in Determining Upper Thermal Limits in Lottia digitalis under Air Exposure and Submersion. Physiological and Biochemical Zoology 88: 483-493.

  • Garland, M., J. Stillman and L. Tomanek. 2015. proteomic response of cheliped myofibril tissue in the eurythermal porcelain crab Petrolisthes cinctipes to heat shock following acclimation to daily temperature fluctuations. Journal of Experimental Biology 218: 388-403.

  • Podrabsky, J., J. Stillman and L. Tomanek. 2015. Biochemical adaptation. Journal of Experimental Biology 218: 1797-1798.

  • Bjelde, B., N. Miller, J. Stillman and A. Todgham. 2015. Role of Oxygen in Determining Upper Thermal Limits inLottia digitalisunder Air Exposure and Submersion. Physiological and Biochemical Zoology: Ecological and Evolutionary Approaches 88: 483-493.

  • Stillman, J. and A. Paganini. 2015. Biochemical adaptation to ocean acidification. Journal of Experimental Biology 218: 1946-1955.

  • Gunderson, A. and J. Stillman. 2015. Plasticity in thermal tolerance has limited potential to buffer ectotherms from global warming. Proceedings of the Royal Society B-biological Sciences 282: 20150401-20150408.

  • Stillman, J. and E. Armstrong. 2015. Genomics Are Transforming Our Understanding of Responses to Climate Change. BioScience 65: 237-246.

  • Miller, N., X. Chen and J. Stillman. 2014. Metabolic Physiology of the Invasive Clam, Potamocorbula amurensis. PLOS ONE 9: e91064-e91066.

  • Paganini, A., N. Miller and J. Stillman. 2014. Temperature and acidification variability reduce physiological performance in the intertidal zone porcelain crab Petrolisthes cinctipes. Journal of Experimental Biology 217: 3974-3980.

  • Sunday, J., P. Calosi, S. Dupont, P. Munday, J. Stillman and T. Reusch. 2014. Evolution in an acidifying ocean. Trends in Ecology & Evolution 29: 117-125.

  • Gunderson, A. and J. Stillman. 2014. affinity for biochemical adaptation to temperature. Journal of Experimental Biology 217: 4273-4274.

  • Miller, N., X. Chen and J. Stillman. 2014. Metabolic Physiology of the Invasive Clam, Potamocorbula amurensis: The Interactive Role of Temperature, Salinity, and Food Availability. PLoS One 9.

  • Vogt, R., T. Ignoffo, L. Sullivan, J. Herndon, J. Stillman and W. Kimmerer. 2013. Feeding capabilities and limitations in the nauplii of two pelagic estuarine copepods, Pseudodiaptomus marinus and Oithona davisae. Limnology and Oceanography 58: 2145-2157.

  • Benner, I., R. Diner, S. Lefebvre, D. Li, T. Komada, E. Carpenter and J. Stillman. 2013. Emiliania huxleyi increases calcification but not expression of calcification-related genes in long-term exposure to elevated temperature and pCO2. Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences 368: 20130049.

  • Ceballos-Osuna, L., H. Carter, N. Miller and J. Stillman. 2013. Effects of ocean acidification on early life-history stages of the intertidal porcelain crab Petrolisthes cinctipes. Journal of Experimental Biology 216: 1405-1411.

  • Carter, H., L. Ceballos-Osuna, N. Miller and J. Stillman. 2013. Impact of ocean acidification on metabolism and energetics during early life stages of the intertidal porcelain crab Petrolisthes cinctipes. Journal of Experimental Biology 216: 1412-1422.

  • Miller, N. and J. Stillman. 2013. Seasonal and spatial variation in the energetics of the invasive clam Corbula amurensis in the upper San Francisco Estuary. Marine Ecology Progress Series 476: 129-129.

  • Miller, N., A. Paganini and J. Stillman. 2013. Differential thermal tolerance and energetic trajectories during ontogeny in porcelain crabs, genus Petrolisthes. Journal of Thermal Biology 38: 79-85.

  • Todgham, A. and J. Stillman. 2013. Physiological Responses to Shifts in Multiple Environmental Stressors. Integrative and Comparative Biology 53: 539-544.

  • Lefebvre, S., I. Benner, J. Stillman, A. Parker, M. Drake, P. Rossignol, K. Okimura, T. Komada and E. Carpenter. 2012. Nitrogen source and pCO2 synergistically affect carbon allocation, growth and morphology of the coccolithophore Emiliania huxleyi. Global Change Biology 18: 493-503.

  • Miller, N. and J. Stillman. 2012. Neural Thermal Performance in Porcelain Crabs, GenusPetrolisthes. Physiological and Biochemical Zoology: Ecological and Evolutionary Approaches 85: 29-39.

  • Miller, N. and J. Stillman. 2012. Neural Thermal Performance in Porcelain Crabs, Genus Petrolisthes. Physiological and Biochemical Zoology: 29-39.

  • Lefebvre, S., I. Benner, J. Stillman, A. Parker, M. Drake, P. Rossignol, K. Okimura, T. Komada and E. Carpenter. 2012. Nitrogen source and pCO(2) synergistically affect carbon allocation, growth and morphology of the coccolithophore Emiliania huxleyi. Global Change Biology: 493-503.

  • Chen, X. and J. Stillman. 2012. Multigenerational analysis of temperature and salinity variability affects on metabolic rate, generation time, and acute thermal and salinity tolerance in Daphnia pulex. Journal of Thermal Biology: 185-194.

  • Ronges, D., J. Walsh, B. Sinclair and J. Stillman. 2012. Changes in extreme cold tolerance, membrane composition and cardiac transcriptome during the first day of thermal acclimation in the porcelain crab Petrolisthes cinctipes. Journal of Experimental Biology: 1824-1836.

  • Cayenne, A., B. Gabert and J. Stillman. 2011. Identification of proteins interacting with lactate dehydrogenase in claw muscle of the porcelain crab Petrolisthes cinctipes. Comparative Biochemistry and Physiology Part D Genomics & Proteomics: 393-398.

  • Dorgan, K., S. Lefebvre, J. Stillman and M. Koehl. 2011. Energetics of burrowing by the cirratulid polychaete Cirriformia moorei. Journal of Experimental Biology: 2202-2214.

  • Stillman, J., M. Denny, D. Padilla, M. Wake, S. Patek and B. Tsukimura. 2011. Grand Opportunities. Integrative & Comparative Biology 51: 7-13.

  • Lindquist, E., J. Stillman, S. Sunagawa, M. Wong, K. Teranishi, Y. Tanaka and A. Tagmount. 2010. Porcelain Crab Transcriptome and PCAD, the Porcelain Crab Microarray and Sequence Database. Plos One 5: e9327-e9311.

  • Paganini, A., W. Kimmerer and J. Stillman. 2010. Metabolic responses to environmental salinity in the invasive clam Corbula amurensis. Aquatic Biology: 139-147.

  • Tagmount, A., M. Wang, E. Lindquist, Y. Tanaka, K. Teranishi, S. Sunagawa, M. Wong and J. Stillman. 2010. Porcelain Crab Transcriptome and PCAD, the Porcelain Crab Microarray and Sequence Database. PLoS One.

  • Mykles, D., C. Ghalambor, J. Stillman and L. Tomanek. 2010. Grand Challenges in Comparative Physiology. Integrative and Comparative Biology: 6-16.

  • Rais, A., N. Miller and J. Stillman. 2010. No evidence for homeoviscous adaptation in intertidal snails. Marine Biology (Berlin): 2407-2414.

  • McGaw, I. and J. Stillman. 2010. Cardiovascular system of the Majidae (Crustacea. Arthropod Structure & Development: 340-349.

  • Gaston, K., S. Chown, P. Calosi, J. Bernardo, D. Bilton, A. Clarke, S. Clusella‐Trullas, C. Ghalambor, M. Konarzewski and L. Peck. 2009. Macrophysiology. The American Naturalist 174: 595-612.

  • Gaston, K., S. Chown, P. Calosi, J. Bernardo, D. Bilton, A. Clarke, S. Clusella-Trullas, C. Ghalambor, M. Konarzewski and L. Peck. 2009. Macrophysiology. American Naturalist: 595-612.

  • Stillman, J. and A. Tagmount. 2009. Seasonal and latitudinal acclimatization of cardiac transcriptome responses to thermal stress in porcelain crabs, Petrolisthes cinctipes. Molecular Ecology: 4206-4226.

  • Cristescu, M., D. Innes, J. Stillman and T. Crease. 2008. D- and L-lactate dehydrogenases during invertebrate evolution. BMC Evolutionary Biology.

  • Stillman, J., J. Colbourne, C. Lee, N. Patel, M. Phillips, D. Towle, B. Eads, G. Gelembuik, R. Henry and E. Johnson. 2008. Recent advances in crustacean genomics. Integrative and Comparative Biology: 852-868.

  • Cristescu, M., D. Innes, J. Stillman and T. Crease. 2008. D- and L-lactate dehydrogenases during invertebrate evolution. BMC evolutionary biology: 268.

  • Teranishi, K. and J. Stillman. 2007. cDNA microarray analysis of the response to heat stress in hepatopancreas tissue of the porcelain crab Petrolisthes cinctipes. Comparative Biochemistry and Physiology Part D Genomics & Proteomics: 53-62.

  • Stillman, J. 2006. Construction and Characterization of EST Libraries from the Porcelain Crab, Petrolisthes cinctipes. Integrative and Comparative Biology 46: 919-930.

  • Pörtner, H., A. Bennett, F. Bozinovic, A. Clarke, M. Lardies, M. Lucassen, B. Pelster, F. Schiemer and J. Stillman. 2006. Trade‐Offs in Thermal Adaptation. Physiological and Biochemical Zoology: Ecological and Evolutionary Approaches 79: 295-313.

  • Poertner, H., A. Bennett, F. Bozinovic, A. Clarke, M. Lardies, M. Lucassen, B. Pelster, F. Schiemer and J. Stillman. 2006. Trade-offs in thermal adaptation. Physiological and Biochemical Zoology: 295-313.

  • Stillman, J., K. Teranishi, A. Tagmount, E. Lindquist and P. Brokstein. 2006. Construction and characterization of EST libraries from the porcelain crab, Petrolisthes cinctipes. Integrative and Comparative Biology: 919-930.

  • Stillman, J. 2004. comparative analysis of plasticity of thermal limits in porcelain crabs across latitudinal and intertidal zone clines. International Congress Series 1275: 267-274.

  • Stillman, J. 2003. Acclimation capacity underlies susceptibility to climate change. Science (Washington D C).

  • Stillman, J. 2003. Acclimation capacity underlies susceptibility to climate change. Science (New York, N.Y.): 65.

  • Dahlhoff, E., J. Stillman and B. Menge. 2002. Physiological Community Ecology. Integrative & Comparative Biology 42: 862-871.

  • Stillman, J. 2002. Causes and Consequences of Thermal Tolerance Limits in Rocky Intertidal Porcelain Crabs, Genus Petrolisthes. Integrative & Comparative Biology 42: 790-796.

  • Stillman, J. and G. Somero. 2001. COMPARATIVE ANALYSIS OF THE EVOLUTIONARY PATTERNING AND MECHANISTIC BASES OF LACTATE.. Journal of Experimental Biology 204: 767-776.

  • Stillman, J. and G. Somero. 2001. comparative analysis of the evolutionary patterning and mechanistic bases of lactate dehydrogenase thermal stability in porcelain crabs, genus Petrolisthes. Journal of Experimental Biology: 767-776.

  • Stillman, J. and C. Reeb. 2001. Molecular phylogeny of eastern Pacific porcelain crabs, genera Petrolisthes and Pachycheles, based on the mtDNA 16S rDNA sequence. Molecular Phylogenetics and Evolution: 236-245.

  • Stillman, J. 2000. Evolutionary History and Adaptive Significance of Respiratory Structures on the Legs of Intertidal Porcelain Crabs, GenusPetrolisthes. Physiological and Biochemical Zoology: Ecological and Evolutionary Approaches 73: 86-96.

  • Stillman, J. 2000. Evolutionary history and adaptive significance of respiratory structures on the legs of intertidal porcelain crabs, genus Petrolisthes. Physiological and Biochemical Zoology: 86-96.

  • Stillman, J. and G. Somero. 2000. comparative analysis of the upper thermal tolerance limits of eastern Pacific porcelain crabs, genus Petrolisthes. Physiological and Biochemical Zoology: 200-208.

  • Stillman, J. and G. Somero. 1996. Adaptation to temperature stress and aerial exposure in congeneric species of intertidal porcelain crabs (genus Petrolisthes). Journal of Experimental Biology: 1845-1855.

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Educational Background

  • 1999 – PhD, Oregon State University (Zoology)

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Collaborators, Advisors & Advisees

  • Carpenter, E – SFSU-RTC

  • Kimmerer, W – RTC-SFSU

  • Komada, T – RTC-SFSU

  • Tomanek, L – CalPoly SLO

  • Tsukimura, B – CSU Fresno

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