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- W2038710080 abstract "Changes in the maximum rates of ammonium and nitrate transport (<it>T</it>max; expressed as C-specific N transport) into<it>Emiliana huxleyi</it> and <it>Heterosigma carterae</it> were related to N status (cellular N:C). There was considerable variation in the magnitude of <it>T</it>max relative to N:C. For nitrate transport in both species and for ammonium in<it>H.carterae</it>, the curve linking N:C and<it>T</it>max was bell shaped; <it>T</it>max increased initially as N:C fell and then <it>T</it>max decreased. In contrast, <it>T</it>max for ammonium in<it>E.huxleyi</it> did not decrease to such low levels and N-specific N transport increased continually as N:C decreased. While<it>T</it>max for ammonium into <it>E.huxleyi</it> could be an order of magnitude higher than the N-transport rate required to support growth, for nitrate transport into both species<it>T</it>max was coupled more closely to growth rate. In<it>H.carterae</it>, <it>T</it>max for ammonium was up to four times that for nitrate. Relationships for ammonium and nitrate<it>T</it>max have been computed for simulations of the growth of <it>E.huxleyi</it> and <it>H.carterae</it>. The implications of these results for modelling ammonium-nitrate interactions are discussed. It is shown that attempts to obtain a relationship between<it>T</it>max and N:C from steady-state chemostat data may result in significant deviations from relationships determined using incubation techniques. Further, it is more important to obtain a good estimate for ammonium <it>T</it>max because of its dominant role in affecting the ammonium-nitrate interaction." @default.
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- W2038710080 date "1999-02-01" @default.
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- W2038710080 title "Variations in the maximum transport rates for ammonium and nitrate in the prymnesiophyte Emiliania huxleyi and the raphidophyte Heterosigma carterae" @default.
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- W2038710080 doi "https://doi.org/10.1093/plankt/21.2.355" @default.
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