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首页> 外文期刊>International journal of biological sciences >Effect of KNO 3 on Lipid Synthesis and CaCO 3 Accumulation in Pleurochrysis dentata Coccoliths with a Special Focus on Morphological Characters of Coccolithophores
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Effect of KNO 3 on Lipid Synthesis and CaCO 3 Accumulation in Pleurochrysis dentata Coccoliths with a Special Focus on Morphological Characters of Coccolithophores

机译:KNO 3对脂质合成和Caco 3积累的植物曲霉属Dentata Coccoliths的影响,特别关注Coccolithophores形态特征

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Pleurochrysis genus algae are widely distributed in ocean waters. Pleurochrysis sp. algae are popularly known for its coccolithophores. Calcium carbonate (CaCO3) shells are major components of the coccolithophore, and they are key absorbers of carbondioxide. In this study, we have reported the effects of potassium nitrate (KNO3) concentration on calcium accumulation and total lipid, carbohydrate and protein contents of Pleurochrysis dentata. Results obtained from complexometric titration and scanning electron microscopy analysis showed higher rates of CaCO3 accumulation on Pleurochrysis dentata cell surface. We have also observed that overall cell size of Pleurochrysis dentata reached maximum when it was cultured at 0.75 mmol L-1 of KNO3. During 10 days of Pleurochrysis dentata culture total lipids and carbohydrate contents decreased, with slightly increased protein content. Results obtained from Fourier-Transform Infrared Spectroscopy (FTIR) also reported an increase in protein and decrease in lipids and carbohydrate contents, respectively. Similarly, Pleurochrysis dentata cultured at 1 mmol L-1 concentration of KNO3 exhibited the lowest carbohydrate (21.08%) and highest protein (32.87%) contents. Interestingly, Pleurochrysis dentata cultured without KNO3 exhibited 33.61% of total lipid content which reduced to a total lipid content of 13.67% when cultured at 1 mmol L-1 concentration of KNO3. Thus, culture medium containing higher than 1 mmol L-1 of KNO3 could inhibit the cell size of Pleurochrysis dentata and CaCO3 accumulation in shells but it could promote its cell growth. For the first time we have reported a relatively complete coccolith structure devoid of its protoplast. In this study, we have also described about the special planar structure of Pleurochrysis dentata CaCO3 shells present on its inner tube of the R unit and parallel to the outer tube of the V unit which we named it as "doornail structure". We believe that this doornail structure provides structural stability and support to the developing coccoliths in Pleurochrysis dentata. Also, we have discussed about the "double-disc" structure of coccoliths which are closely arranged and interlocked with each other. The double-disc structure ensures fixation of each coccolith and objecting its free horizontal movement and helps in attaining a complementary coccolith structure.? The author(s).
机译:Pleurochrysis属藻类广泛分布在海水中。 pleurochrysis sp。藻类普及以其Coccolithophores普及。碳酸钙(CaCO 3)壳是CoCColhishore的主要成分,它们是碳二氧化碳的关键吸收剂。在这项研究中,我们已经报道了硝酸钾(KNO3)浓度对Pleurochrysis Dentata的钙积累和总脂质,碳水化合物和蛋白质含量的影响。从复杂的滴定和扫描电子显微镜分析获得的结果显示出较高的CaCO 3积累在Pleurochrysis Dentata细胞表面上的速率。我们还观察到,当在0.75mmol L-1的KNO3培养时,Pleurochrysis Dentata的整体细胞尺寸达到最大。在Pleurochrysis Dentata培养的10天内,总脂质和碳水化合物含量下降,蛋白质含量略微增加。从傅立叶变换红外光谱(FTIR)获得的结果也分别报告了蛋白质增加和脂质和碳水化合物含量的降低。类似地,在1mmol L-1浓度的KnO3下培养的Pleurochrysis Dentata表现出最低的碳水化合物(21.08%)和最高蛋白质(32.87%)含量。有趣的是,没有KNO3培养的Pleurochrysis Dentata表现出总脂质含量的33.61%,当在1mmol L-1浓度的KNO3培养时,将总脂质含量降低至13.67%的总脂质含量。因此,含有高于1mmol的KNO3的培养基可以抑制壳中PLEUROCHRYSIS DENTATA和CACO3积累的细胞尺寸,但它可以促进其细胞生长。我们首次报告了一种缺乏其原生质体的相对完整的Coccolith结构。在这项研究中,我们还描述了在R单位的其内管上存在的Pleurochrysis Dentata Caco3壳的特殊平面结构,并与V单元的外管平行,我们将其命名为“Dooreail结构”。我们认为,这种无人机结构为Pleurochrysis Dentata中的开发Coccolith提供了结构稳定性和支持。此外,我们已经讨论了COCColiths的“双盘”结构,其紧密地布置和彼此互锁。双盘结构确保每个Coccolith的固定并反对其自由水平运动,并有助于获得互补的CoColith结构。作者。

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