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首页> 外文期刊>The Journal of Experimental Biology >A PHYSIOLOGICAL EVALUATION OF CARBON SOURCES FOR CALCIFICATION IN THE OCTOCORAL LEPTOGORGIA VIRGULATA (LAMARCK)
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A PHYSIOLOGICAL EVALUATION OF CARBON SOURCES FOR CALCIFICATION IN THE OCTOCORAL LEPTOGORGIA VIRGULATA (LAMARCK)

机译:竹叶鳞小球藻(LAMARCK)中用于钙化的碳源的生理学评价

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The union of calcium cations with carbonate anions to form calcium carbonate (CaCO3) is a fundamentally important physiological process of many marine invertebrates, in particular the corals, In an effort to understand the sources and processes of carbon uptake and subsequent deposition as calcium carbonate, a series of studies of the incorporation of C-14-labeled compounds into spicules was undertaken using the soft coral Leptogorgia virgulata. It has been surmised for some time that dissolved inorganic carbon in sea water is used in the biomineralization process. Furthermore, it was suspected that metabolically generated CO2 is also available for calcification, As a means of testing these possible sources of carbon in spicule calcification, key enzymes or transport systems in each pathway were inhibited, First, the enzyme carbonic anhydrase was specifically inhibited using acetazolamide, Second, the active transport of bicarbonate was inhibited using DIDS (4,4'-diisothiocyanato-stilbene-2,2'-disulfonic acid), Third, CO2 generation resulting from glycolysis and the citric acid cycle was arrested using iodoacetic acid, which interferes specifically with the enzyme glyceraldehyde-3-phosphate dehydrogenase, The results indicate that dissolved CO2 is the largest source of carbon used in the formation of calcitic sclerites, followed by HCO3- from dissolved inorganic carbon, In L. virgulata, the dissolved inorganic carbon is responsible for approximately 67 % of the carbon in the sclerites, The other 33 % comes from CO2 generated by glycolysis, Two important conclusions can be drawn from this work. First, carbon for spiculogenesis comes not only from dissolved inorganic carbon in the environment but also from metabolically produced carbon dioxide, While the latter has been theorized, it has never before been demonstrated in octocorals, Second, regardless of the carbon source, the enzyme carbonic anhydrase plays a pivotal role in the physiology of spicule formation in Leptogorgia virgulata. [References: 35]
机译:钙阳离子与碳酸根阴离子的结合形成碳酸钙(CaCO3)是许多海洋无脊椎动物(尤其是珊瑚)的根本上重要的生理过程,为了了解碳吸收和随后沉积为碳酸钙的来源和过程,使用软珊瑚钩端螺旋体对C-14标记的化合物掺入针剂进行了一系列研究。据推测一段时间以来,在生物矿化过程中使用了溶解在海水中的无机碳。此外,怀疑是代谢产生的CO2也可用于钙化。作为测试针状钙化中这些可能碳源的方法,每个途径中的关键酶或转运系统均被抑制。首先,碳酸酐酶被特异抑制乙唑酰胺,其次,使用DIDS(4,4'-diisothiocyanato-stilbene-2,2'-disulfonic acid)抑制碳酸氢盐的主动转运,其次,由糖酵解产生的CO2产生和使用碘乙酸阻止柠檬酸循环,结果表明,溶解的CO2是钙质钙长石形成过程中使用的最大碳源,其次是溶解的无机碳中的HCO3-,在维氏乳杆菌(L. virgulata)中是溶解的无机碳。碳占巩膜石中碳的约67%,其余33%来自糖酵解产生的CO2,两个这项工作可以得出重要的结论。首先,用于孢子发生的碳不仅来自环境中溶解的无机碳,还来自代谢产生的二氧化碳,尽管已经对后者进行了理论分析,但从未在八齿菌中证明过,其次,无论碳源如何,酶都是酸酐酶在维尔京钩端螺旋体的针状形成生理中起关键作用。 [参考:35]

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