Marine ecologists studying coccolithophores—microscopic plankton that construct calcium carbonate shells—have long held that ocean acidification, driven by rising atmospheric carbon dioxide, uniformly impairs shell calcification. However, a recent longitudinal study in the North Atlantic revealed that *Emiliania huxleyi*, the most prevalent coccolithophore species, exhibited increased calcification rates and shell mass under moderately elevated carbon dioxide levels, provided that ambient nutrient concentrations remained above a critical threshold. The researchers hypothesized that elevated carbon dioxide enhances photosynthetic efficiency, generating surplus metabolic energy that offsets the heightened energetic cost of calcification in acidic waters.
Based on the passage, which of the following statements, if true, would undermine the researchers' physiological hypothesis? Select all that apply.
- In laboratory cultures with optimal nutrient levels, individual *Emiliania huxleyi* cells exposed to elevated carbon dioxide show no measurable increase in photosynthetic output.Cevap
- BNutrient-depleted regions of the North Atlantic show a marked decline in overall coccolithophore shell calcification during periods of ocean acidification.
- The metabolic energy required for calcification in *Emiliania huxleyi* under elevated carbon dioxide conditions exceeds the additional energy generated by any increase in photosynthetic rate.Cevap