<p><b>Table 3.</b> Pearson correlation coefficients of log-transformed data for all variables. Correlations >0.55 and significant at <em>P</em> < 0.05 shown in bold. Cond is conductivity, PP is phytoplankton production, BPthy and BPleu are bacterial production measured with the thymidine and leucine methods. </p> <p><strong>Abstract</strong></p> <p>We compared planktonic primary and secondary production across twenty meltwater ponds on the surface of the McMurdo Ice Shelf in January 2007, including some ponds with basal brines created by meromictic stratification. Primary production ranged from 1.07 to 65.72 mgC m<sup>−3</sup> h<sup>−1</sup> in surface waters. In stratified ponds primary production was al...
Recent observations in polar marine waters have shown that a large fraction of primary production ma...
7 pages, 4 figures, 2 tablesWe analyzed the strength of phytoplankton-bacterioplankton coupling by c...
<p>Results of Pearson’s and exponential correlations between parameters describing the zooplankton a...
<p><b>Table 4.</b> Multiple linear regression statistics describing dependence of...
<p><b>Table 5.</b> Regression tree threshold values, uncertainty estimates, and <...
<p><b>Table 2.</b> Photosynthetic and bacterial production rates of 20 study pond...
<p><b>Table 1.</b> Physicochemical variables of all ponds studied, and of the monimo...
<p><strong>Figure 1.</strong> Comparison of (a) primary production and (b) secondary production (mea...
<p><strong>Figure 2.</strong> The relationship of significant predictors from multiple linear regres...
<p><strong>Figure 3.</strong> Results from CART analysis of phytoplankton production rates (mgC m<su...
<p><strong>Figure 4.</strong> Results from CART analysis of bacterial production rates (mgC m<sup>−3...
<p>Values in brackets show the possible range of correlation coefficients obtained for different all...
phytoplankton and bacteria interactions; production; carbon coupling; exudates; aquatic systems. Pos...
<p>* p < 0.1,</p><p>** p < 0.05</p><p>*** p < 0.01</p><p><sup>†</sup> p < 0.001</p><p>Pearson correl...
Recent observations in polar marine waters have shown that a large fraction of primary production ma...
Recent observations in polar marine waters have shown that a large fraction of primary production ma...
7 pages, 4 figures, 2 tablesWe analyzed the strength of phytoplankton-bacterioplankton coupling by c...
<p>Results of Pearson’s and exponential correlations between parameters describing the zooplankton a...
<p><b>Table 4.</b> Multiple linear regression statistics describing dependence of...
<p><b>Table 5.</b> Regression tree threshold values, uncertainty estimates, and <...
<p><b>Table 2.</b> Photosynthetic and bacterial production rates of 20 study pond...
<p><b>Table 1.</b> Physicochemical variables of all ponds studied, and of the monimo...
<p><strong>Figure 1.</strong> Comparison of (a) primary production and (b) secondary production (mea...
<p><strong>Figure 2.</strong> The relationship of significant predictors from multiple linear regres...
<p><strong>Figure 3.</strong> Results from CART analysis of phytoplankton production rates (mgC m<su...
<p><strong>Figure 4.</strong> Results from CART analysis of bacterial production rates (mgC m<sup>−3...
<p>Values in brackets show the possible range of correlation coefficients obtained for different all...
phytoplankton and bacteria interactions; production; carbon coupling; exudates; aquatic systems. Pos...
<p>* p < 0.1,</p><p>** p < 0.05</p><p>*** p < 0.01</p><p><sup>†</sup> p < 0.001</p><p>Pearson correl...
Recent observations in polar marine waters have shown that a large fraction of primary production ma...
Recent observations in polar marine waters have shown that a large fraction of primary production ma...
7 pages, 4 figures, 2 tablesWe analyzed the strength of phytoplankton-bacterioplankton coupling by c...
<p>Results of Pearson’s and exponential correlations between parameters describing the zooplankton a...