Seki Y, Nitta K, Kaneko Y
Graduate School of Science and Engineering, Saitama University, Saitama, Kanagawa, Japan.
Analysis Technology Center, Research and Developmental Management Headquarters, Fuji Photo Film Co. Ltd., Minamiashigara, Kanagawa, Japan.
Plant Biol (Stuttg). 2014 Jan;16(1):258-63. doi: 10.1111/plb.12008. Epub 2013 Apr 10.
Although most cyanobacterial cells contain prominent polyphosphate bodies in the central cytoplasmic area enclosed by the peripheral thylakoid membranes, their roles are not fully understood. Storing phosphate for nucleotide production might be one of their important roles in survival of the cells. As a step towards identifying a possible contribution of the polyphosphate bodies to DNA synthesis, the relationship between polyphosphate bodies and DNA throughout cell division cycle of Synechococcus elongatus PCC 7942 cells cultured under light/dark cycles was investigated with light and electron microscopy. During the dark period, the average size of polyphosphate bodies increased gradually without significant change in their number and distribution. However, during the light period, the number of polyphosphate bodies increased, while the size of each polyphosphate body decreased and cells elongated until the end of the light period, when most cells divided. The ratio of the content of polyphosphate bodies to cell length increased gradually during the dark period and decreased during the light period. Hoechst 33342-stained DNA appeared diffuse during the dark period, but in the light period it became condensed and eventually formed a wavy, rope-like structure prior to cell division. Close association between fibres containing DNA and polyphosphate bodies was demonstrated by TEM using DNA-specific staining and BrdU labelling. These regular coordinated changes of polyphosphate bodies and DNA shape during the cell division cycle, together with their intimate interaction, imply a role of polyphosphate bodies in supplying material for DNA.
尽管大多数蓝藻细胞在由外周类囊体膜包围的中央细胞质区域含有显著的多聚磷酸体,但其作用尚未完全明确。储存磷酸盐用于核苷酸生产可能是它们在细胞存活中的重要作用之一。作为确定多聚磷酸体对DNA合成可能贡献的第一步,利用光学显微镜和电子显微镜研究了在光/暗循环条件下培养的聚球藻PCC 7942细胞整个细胞分裂周期中多聚磷酸体与DNA之间的关系。在黑暗时期,多聚磷酸体的平均大小逐渐增加,但其数量和分布没有显著变化。然而,在光照时期,多聚磷酸体的数量增加,而每个多聚磷酸体的大小减小,细胞伸长,直到光照期结束,此时大多数细胞进行分裂。黑暗时期多聚磷酸体含量与细胞长度的比值逐渐增加,光照时期则下降。黑暗时期,Hoechst 33342染色的DNA呈弥散状,但在光照时期,它变得浓缩,最终在细胞分裂前形成波浪状、绳索状结构。通过使用DNA特异性染色和BrdU标记的透射电子显微镜(TEM)证明了含有DNA的纤维与多聚磷酸体之间的紧密关联。在细胞分裂周期中多聚磷酸体和DNA形状的这些规律性协同变化,以及它们之间的密切相互作用,暗示了多聚磷酸体在为DNA提供物质方面的作用。