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首页> 外文期刊>The Journal of Experimental Biology >High phosphate uptake requirements of the scleractinian coral Stylophora pistillata
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High phosphate uptake requirements of the scleractinian coral Stylophora pistillata

机译:巩膜珊瑚Stylophora pistillata的高磷吸收需求

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Several untested aspects of the regulation of inorganic nutrient uptake were examined using nutrient depletion experiments with the symbiotic coral Stylophora pistillata. The total inhibition of phosphate uptake in artificial seawater lacking sodium indicates the involvement of a sodium/phosphate symporter for the uptake of phosphate across host membranes. Addition of ammonium or nitrate (up to 6.0 mu mol l(-1)) did not enhance saturated phosphate uptake rates, thus indicating that corals, or their symbiotic algae, were not, or not sufficiently, nitrogen limited to modify their phosphate needs. Conversely, the saturated uptake rate of ammonium increased by 2.5-fold in the presence of 3.0 mu mol l(-1) of phosphate, thus indicating that the corals or their symbionts were lacking intracellular phosphate to take advantage of the inorganic nitrogen compounds dissolved in their surrounding medium. Overall, these results highlight some greater limitation in phosphate rather than in nitrogen. Finally, the rate of phosphate uptake decreased with particulate feeding of the host (organic phosphate source). Indeed, corals that were fed 1 and 3. days before the uptake experiment took up phosphate 42 and 19% slower, respectively, than corals that were fed 21. days before. This result provides additional evidence of phosphate limitation in S. pistillata. This study therefore brings new insights into the relationships between nutrients and symbiotic corals, and may provide a rapid and effective tool to investigate which nutrient is the most limiting for coral metabolism.
机译:使用共生珊瑚Stylophora pistillata进行的养分消耗实验,研究了无机养分吸收调控的一些未经测试的方面。在缺少钠的人造海水中,磷酸盐吸收的总抑制作用表明钠/磷酸盐同向转运体参与了跨宿主膜的磷酸盐吸收。铵盐或硝酸盐(最多6.0μmol l(-1))的添加不会增加饱和磷酸盐的吸收速率,因此表明珊瑚或其共生藻类没有或不足以限制氮来改变其磷酸盐需求。相反,在3.0μmol l(-1)的磷酸盐存在下,铵的饱和吸收速率增加了2.5倍,因此表明珊瑚或其共生体缺乏细胞内磷酸盐来利用溶解在水中的无机氮化合物的优势。他们周围的媒介。总的来说,这些结果突出了磷酸盐而不是氮的更大限制。最后,磷酸盐的吸收速率随宿主(有机磷酸盐源)的颗粒进料而降低。实际上,在摄取实验前1天和3天喂食的珊瑚的磷酸盐吸收速度分别比21天前喂食的珊瑚慢42%和19%。该结果提供了另外的证据,证明Pistillata中的磷酸盐受限。因此,这项研究为养分与共生珊瑚之间的关系带来了新的见解,并可能提供一种快速有效的工具来研究哪种养分是珊瑚代谢最受限的。

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