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In situ ATR-IR spectroscopic and electron microscopic analyses of settlement secretions of Undaria pinnatifida kelp spores

机译:裙带菜海藻孢子沉降分泌物的原位ATR-IR光谱和电子显微镜分析

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摘要

Knowledge about the settlement of marine organisms on substrates is important for the development of environmentally benign new methods for control of marine biofouling. The adhesion to substrates by spores of Undaria pinnatifida, a kelp species that is invasive to several countries, was studied by scanning electron and transmission electron microscopies (SEM/TEM) as well as by in situ attenuated total reflection infrared (ATR-IR) spectroscopy. The IR spectra showed that adhesive secretion began approximately 15 min after initial settlement and that the adhesive bulk material contained protein and anionic polysaccharides. Energy dispersive X-ray microanalysis of the adhesive identified sulphur and phosphorus as well as calcium and magnesium ions, which facilitate the gelation of the anionic polysaccharides in the sea water. The adhesive may be secreted from Golgi bodies in the spore, which were imaged by TEM of spore thin sections. Additionally, an in situ settlement study on TiO2 particle film by ATR-IR spectroscopy revealed the presence of phosphorylated moieties directly binding the substrate. The presence of anionic groups dominating the adhesive suggests that inhibition of spore adhesion will be favoured by negatively charged surfaces.
机译:关于海洋生物在底物上的沉积的知识对于开发对环境无害的控制海洋生物污染的新方法很重要。通过扫描电子和透射电子显微镜(SEM / TEM)以及原位衰减全反射红外(ATR-IR)光谱研究了裙带菌(Undaria pinnatifida)的孢子对基质的粘附性,海带物种已侵入多个国家。 。红外光谱表明,粘合剂的分泌开始于初始沉降后约15分钟,并且粘合剂的主体材料包含蛋白质和阴离子多糖。胶粘剂的能量色散X射线微分析鉴定出了硫和磷以及钙和镁离子,这些离子有助于海水中阴离子多糖的凝胶化。粘合剂可以从孢子中的高尔基体中分泌出来,这是通过孢子薄片的TEM成像的。此外,通过ATR-IR光谱对TiO2颗粒薄膜进行的原位沉降研究表明,存在直接结合底物的磷酸化部分。阴离子基团占主导地位的粘合剂表明,带负电的表面将有利于抑制孢子粘附。

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