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钙和镁对菱形藻生长和钙化的影响:有孔虫细胞分裂和酸性多糖正常形成所需的钙。

Effects of Ca and Mg on growth and calcification of the coccolithophorid Pleurochrysis haptonemofera: Ca requirement for cell division in coccolith-bearing cells and for normal coccolith formation with acidic polysaccharides.

机构信息

School of Life Sciences, Tokyo University of Pharmacy and Life Sciences, 1432-1 Horinouchi, Hachioji, Tokyo 192-0392, Japan.

出版信息

Mar Biotechnol (NY). 2010 Feb;12(1):42-51. doi: 10.1007/s10126-009-9198-x. Epub 2009 May 16.

Abstract

The effects of Ca2+ and Mg2+ on cellular growth and calcification in Pleurochrysis haptonemofera were investigated. In the presence of a normal concentration of Mg2+, coccolith-bearing cells (C-cells) required more than 0.5 mM Ca2+ for growth, while naked cells could grow even with 0.5 mM Ca2+. The calcification rate of C-cells, which was determined using decalcified cells, was significantly repressed with less than or equal to 0.5 mM Ca2+. Although the calcification rate did not change so much with 5-30 mM Ca2+, it decreased with higher concentrations of Ca2+, as well as C-cell-specific growth repression. Under these conditions, Ca2+ affected the rate of coccolith formation, but neither the coccolith morphology nor total amounts and ratios of divalent cations and acidic polysaccharides (Ph-PS-1, -2, and -3) were included in coccoliths. These findings suggest that sufficient calcification is required for the division of C-cells. Under low Ca2+ and high Mg2+ conditions, coccoliths with an abnormal morphology, having immature shield elements, were synthesized. Composition analysis of the coccoliths revealed high Mg/Ca and low Ph-PS-2/(Ph-PS-1 and -3) ratios, as compared with those under low Ca2+ and normal Mg2+ conditions, suggesting that the abnormal morphology is due to a change in the crystal type and/or acidic polysaccharide composition.

摘要

研究了 Ca2+ 和 Mg2+ 对东海原甲藻细胞生长和钙化的影响。在正常 Mg2+ 浓度下,有壳细胞(C 细胞)的生长需要超过 0.5mM 的 Ca2+,而裸细胞即使在 0.5mM Ca2+ 下也能生长。使用脱钙细胞测定的 C 细胞钙化率在低于或等于 0.5mM Ca2+ 时受到显著抑制。虽然在 5-30mM Ca2+ 下钙化率没有太大变化,但随着 Ca2+ 浓度的升高,以及 C 细胞特异性生长抑制,钙化率下降。在这些条件下,Ca2+ 影响了颗石藻形成的速度,但颗石藻的形态以及二价阳离子和酸性多糖(Ph-PS-1、-2 和 -3)的总量和比例都没有包含在颗石藻中。这些发现表明,C 细胞的分裂需要足够的钙化。在低 Ca2+ 和高 Mg2+ 条件下,合成了具有不成熟盾片元素的异常形态颗石藻。对颗石藻的成分分析表明,与低 Ca2+ 和正常 Mg2+ 条件下相比,Mg/Ca 比值较高,Ph-PS-2/(Ph-PS-1 和 -3)比值较低,表明异常形态是由于晶体类型和/或酸性多糖组成的变化。

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