Geochemists analyzing drill core samples from subglacial Lake Mercer in Antarctica discovered elevated concentrations of dissolved methane alongside specialized methanotrophic bacteria. Because these bacterial populations exhibit peak metabolic rates strictly within thermal gradients matching geothermal vents detected beneath the ice sheet, researchers concluded that geothermal activity, rather than surface organic runoff trapped during ice sheet formation, is the primary energy source sustaining the microbial ecosystem in the subglacial lake. Which of the following, if true, most strengthens the researchers' conclusion?
- Subglacial lakes in the region that lack geothermal activity contain trapped surface organic runoff comparable to Lake Mercer but show virtually no dissolved methane or active methanotrophic bacteria.Cevap
- BIsotopic analysis of the dissolved methane in Lake Mercer reveals chemical signatures identical to methane produced by ancient surface organic matter decomposing in anaerobic conditions.
- CGeothermal vents located in deep oceanic trenches support methanotrophic bacterial species with metabolic genes similar to those found in subglacial Lake Mercer.
- DWater temperatures in Lake Mercer have fluctuated slightly over the past decade in correlation with seasonal changes in Antarctic surface atmospheric conditions.
- EDeep-ice drilling equipment used to obtain the core samples requires specialized thermal heating elements to prevent sample contamination during extraction.
Cevap
Subglacial lakes in the region that lack geothermal activity contain trapped surface organic runoff comparable to Lake Mercer but show virtually no dissolved methane or active methanotrophic bacteria.
The correct answer provides a comparative control scenario. By showing that other subglacial lakes with trapped surface organic runoff but no geothermal activity fail to produce elevated methane or bacterial activity, it rules out surface runoff as the primary cause and confirms that geothermal activity is the key driving factor.
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Strengthening a Causal Argument by Ruling Out an Alternative Cause