Geoscience Reference
In-Depth Information
Hendriks, I.E., Duarte, C.M., and Alvarez, M. (2010).
Vulnerability of marine biodiversity to ocean acidii ca-
tion: a meta-analysis. Estuarine, Coastal and Shelf Science ,
86 , 157-64.
Hoegh-Guldberg, O., Mumby, P.J., Hooten, A.J. et al. (2007).
Coral reefs under rapid climate change and ocean acidi-
i cation. Science , 318 , 1737-42.
Hofmann, G.E., Barry, J.P., Edmunds, P.J. et al. (2010). The
effect of ocean acidii cation on calcifying organisms in
marine ecosystems: an organism to ecosystem perspec-
tive. Annual Review of Ecology, Evolution and Systematics ,
41 , 127-47.
Hutchins, D.A., Mulholland, M.R., and Fu, F. (2009).
Nutrient cycles and marine microbes in a CO 2 -enriched
ocean. Oceanography , 22 , 128-45.
Jablonski, D. and Chaloner, W.G. (1994). Extinctions in the
fossil record. Philosophical Transactions of the Royal Society
B: Biological Sciences , 344 , 11-17.
Kiessling, W., Simpson, C., and Foote, M. (2010). Reefs as
cradles of evolution and sources of biodiversity in the
Phanerozoic. Science , 327 , 196-8.
Kleypas, J.A., Buddemeier, R.W., Archer, D., Gattuso, J.-P.,
Langdon, C., and Opdyke, B.N. (1999). Geochemical
consequences of increased atmospheric carbon dioxide
on coral reefs. Science , 284 , 118-20.
Kleypas, J.A. and Yates, K.K. (2009). Coral reefs and ocean
acidii cation. Oceanography , 22 , 108-17.
Knoll, A.H., Bambach, R.K., Payne, J.L., Pruss, S., and
Fischer, W.W. (2007). Paleophysiology and the end-Per-
mian mass extinction. Earth Planetary Science Letters , 256 ,
295-313.
Kroeker, K.J., Kordas, R.L., Crim, R.N., and Singh, G.G.
(2010). Meta-analysis reveals negative yet variable
effects of ocean acidii cation on marine organisms.
Ecology Letters , 13 , 1419-34.
Kuffner, I.B., Andersson, A.J., Jokiel, P.L., Rodgers, K.S.,
and Mackenzie, F.T. (2008). Decreased abundance of
crustose coralline algae due to ocean acidii cation.
Nature Geoscience , 1 , 114-17.
Kurihara, H. (2008). Effects of CO 2 -driven ocean acidii ca-
tion on the early developmental stages of invertebrates.
Marine Ecology Progress Series , 373 , 275-84.
Loreau, M., Naeem, S., Inchausti, P. et al. (2001). Biodiversity
and ecosystem functioning: current knowledge and
future challenges. Science , 294, 804-8.
McLaughlin, P.A. and Rahayu, D.L. (2008). Pteropagurus and
Catapagurus (Decapoda, Anomura, Paguidae): resource
sharing or 'any port in a storm'? Zoosystema , 30 , 899-916.
McNeil, B.I. and Matear, R.J. (2008). Southern ocean acidi-
i cation: a tipping point at 450-ppm atmospheric CO 2 .
Proceedings of the National Academy of Sciences USA , 105 ,
18860-4.
Maier, C., Hegeman, J., Weinbauer, M.G., and Gattuso, J.-P.
(2009). Calcii cation of the cold-water coral Lophelia per-
tusa under ambient and reduced pH. Biogeosciences , 6 ,
1671-80.
Manzello, D.P. (2010). Ocean acidii cation hot spots: spa-
tiotemporal dynamics of the seawater CO 2 system of
eastern Pacii c coral reefs . Limnology and Oceanography ,
55 , 239-48.
Manzello, D.P., Kleypas, J.A., Budd, D.A., Eakin, C.M.,
Glynn, P.W., and Langdon, C. (2008). Poorly cemented
coral reefs of the eastern tropical Pacii c: possible
insights in reef development in a high-CO 2 world.
Proceedings of the National Academy of Sciences USA , 105 ,
10450-5.
Mayhew, P.J., Jenkins, G.B., and Benton, T.G. (2008).
A long-term association between global temperature
and biodiversity, origination and extinction in the fossil
record. Proceedings of the Royal Society, B, Biological
Sciences , 275 , 47-53.
Melzner, F., Göbel, S., Langenbuch, M., Gutowska, M.,
Pörtner, H.-O., and Lucassen, M. (2009a). Swimming
performance in Atlantic Cod ( Gadus morhua ) following
long-term (4-12 months) acclimation to elevated seawa-
ter P co 2 . Aquatic Toxicology , 92 , 30-7.
Melzner, F., Gutowska, M.A., and Langenbuch, M.,
(2009b). Physiological basis for high CO 2 tolerance in
marine ectothermic animals: pre-adaptation through
lifestyle and ontogeny? Biogeosciences , 6 , 2313-31.
Michaelidis, B., Ouzounis, C., Paleras, A., and Pörtner,
H.O. (2005). Effects of long-term moderate hypercapnia
on acid-base balance and growth rate in marine mussels
Mytilus galloprovincialis . Marine Ecology Progress Series ,
293 , 109-18.
Micheli, F. and Halpern, B.S. (2005). Low functional redun-
dancy in coastal marine assemblages. Ecology Letters , 8 ,
391-400.
Miles, H., Widdicombe, S., Spicer, J.I., and Hall-Spencer, J.
(2007). Effects of anthropogenic seawater acidii cation
on acid-base balance in the sea urchin Psammechinus mil-
iaris. Marine Pollution Bulletin , 54 , 89-96.
Miller, A.W., Reynolds, A.C., Sobrino, C., and Riedel, G.F.
(2009). Shelli sh face uncertain future in high CO 2 world:
inl uence of acidii cation on oyster larvae calcii cation
and growth in estuaries. PLoS One , 4 , e5661.
Ohman, M.D., Lavaniegos, B.E., and Townsend, A.W.
(2009). Multi-decadal variation in calcareous holozoo-
plankton in the California Current system: thecosome
pteropods, heteropods and foraminifera. Geophysical
Research Letters , 36 , L18608, doi:10.1029/2009GL033901.
Orr, J.C., Fabry, V.J., Aumont, O. et al. (2005). Anthropogenic
ocean acidii cation over the twenty-i rst century and its
impact on calcifying organisms. Nature , 437 , 681-6.
Search WWH ::




Custom Search