首页> 外文期刊>Lethaia: An International Journal of Palaeontology and Stratigraphy >Diopatra cuprea worm burrow parchment: a cautionary tale of infaunal surface reactivity
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Diopatra cuprea worm burrow parchment: a cautionary tale of infaunal surface reactivity

机译:Diopatra Cuprea蠕虫洞穴羊皮纸:警示婴儿表面反应性的故事

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Many infaunal marine invertebrates produce mucus excretions that play an important role in metal binding, authigenic mineralization and burrow stabilization. To date, only a handful of studies have characterized the functional groups that control the surface reactivity of burrow linings and backfills. This makes it difficult to place estimates on the overall impact that bioturbation has on metal cycling in tidal flats, the inner shelf, estuaries and other shallow marine environments. Here, we examined the parchment linings of Diopatra cuprea burrows from the Ogeechee River estuary near Savannah, Georgia, USA. Acid-base titrations coupled with Fourier transform infrared spectroscopy demonstrate that the parchment is essentially composed of hydroxyl (R-OH) groups, yielding total ligand densities of only 0.017 mmol/g. To place this value into context, it is orders of magnitude less than previously reported mucopolysaccharides for other marine worms, indicating that D. cuprea is essentially unreactive in the estuarine waters from which it was collected. This was corroborated by minimal Cd2+ adsorption to, and limited silicification of, pre-rinsed parchment. The lack of silica adsorption was surprising given that the parchment was generally coated with an abundance of quartz grains when extracted from the sediment. This suggests that perhaps the physical, rather than chemical, characteristics of the parchment material were responsible for this association. Indeed, scanning electron microscope images show that the parchment is fibrous and envelopes quartz grains, implying that detritus may get trapped by the parchment mesh. It appears that unlike many other infaunal mucopolysaccharide-rich linings that might be produced to provide reactive surfaces to which dissolved metal cations can adsorb for the organism's nutritional benefit, the parchment of D. cuprea may instead function to protect the animal from stresses such as predation or high-energy disturbances.
机译:许多婴儿海洋无脊椎动物产生粘液排泄,在金属结合,Aherigenic矿化和挖掘机稳定中发挥着重要作用。迄今为止,只有少数研究表征了控制挖洞衬里和回填的表面反应性的官能团。这使得难以将生物扰动对潮汐平板,内架,河口和其他浅海洋环境循环的整体影响估计。在这里,我们研究了从美国佐治亚州佐治亚州大草原附近的Ogeechee河河口的Diopatra Cuprea挖洞的羊皮纸衬里。与傅里叶变换红外光谱相结合的酸碱滴定表明,羊皮纸基本上由羟基(R-OH)基团组成,产生仅0.017mmol / g的总配体密度。为了将该值放入上下文中,它比以前报告的其他海洋蠕虫报告的数量级,表明D. Cuprea基本上在收集的酯水域中基本上是非反应性的。通过最小的CD2 +吸附和预冲洗的羊皮纸,这是通过最小CD2 +吸附和有限的硅化。缺乏二氧化硅吸附令人惊讶的是,鉴于从沉淀物中提取时羊皮纸通常涂有丰富的石英粒。这表明,羊皮纸材料的物理,而不是化学,羊皮纸的特征负责这种关联。实际上,扫描电子显微镜图像表明羊皮纸是纤维性的,包围石英谷物,暗示碎屑可能被羊皮纸网眼困住。似乎与许多其他婴儿杀氧质糖的衬里不同,可以生产用于提供溶解的金属阳离子可以吸附在生物体的营养益处的反应性表面,D. Cuprea的羊皮纸可以替代地用于保护动物免受捕食等应力的影响或高能量扰动。

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