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Resistance to thermal stress in corals without changes in symbiont composition by Anthony J. Bellantuono, Ove Hoegh-Guldberg, and Mauricio Rodriguez-Lanetty Proceedings B Volume 279(1731):1100-1107 March 22, 2012 ©2012 by The Royal Society

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Page 1: Resistance to thermal stress in corals without changes in symbiont composition by Anthony J. Bellantuono, Ove Hoegh-Guldberg, and Mauricio Rodriguez-Lanetty

Resistance to thermal stress in corals without changes in symbiont composition

by Anthony J. Bellantuono, Ove Hoegh-Guldberg, and Mauricio Rodriguez-Lanetty

Proceedings BVolume 279(1731):1100-1107

March 22, 2012

©2012 by The Royal Society

Page 2: Resistance to thermal stress in corals without changes in symbiont composition by Anthony J. Bellantuono, Ove Hoegh-Guldberg, and Mauricio Rodriguez-Lanetty

Temperature profiles of the thermal treatments with which Acropora millepora fragments were challenged.

Anthony J. Bellantuono et al. Proc. R. Soc. B 2012;279:1100-1107

©2012 by The Royal Society

Page 3: Resistance to thermal stress in corals without changes in symbiont composition by Anthony J. Bellantuono, Ove Hoegh-Guldberg, and Mauricio Rodriguez-Lanetty

Symbiodinium density (algal cells per square centimetre) at five different times: 18 and 5 days prior to exposure at 31°C, and 2, 6 and 8 days during the exposure to 31°C.

Anthony J. Bellantuono et al. Proc. R. Soc. B 2012;279:1100-1107

©2012 by The Royal Society

Page 4: Resistance to thermal stress in corals without changes in symbiont composition by Anthony J. Bellantuono, Ove Hoegh-Guldberg, and Mauricio Rodriguez-Lanetty

Correspondence analysis (CA) of reverse-transcribed bacterial 16S rRNA-DGGE banding patterns (treatment samples, as indicated in the legend, n = 3).

Anthony J. Bellantuono et al. Proc. R. Soc. B 2012;279:1100-1107

©2012 by The Royal Society