首页> 外文期刊>Journal of phycology >Heterocyst development and localization of cyanophycin in N_2-fixing cultures of Anabaena sp. pcc 7120 (Cyanobacteria)
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Heterocyst development and localization of cyanophycin in N_2-fixing cultures of Anabaena sp. pcc 7120 (Cyanobacteria)

机译:鱼腥藻N_2固定培养中藻胞的发育和定位。 pcc 7120(蓝细菌)

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The process of N_2 fixation in the filamentous cyanobacterium Anabaena sp. PCC 7120 is known to occur in terminally differentiated cells called heterocysts. This study is concerned with a morphological and immunocytochemical analysis of the developing heterocysts. The heterocysts continue a developmental process after synthesis of the specialized cell wall and the formation of the proheterocyst. The initial stages were described by Wilcox et al. (1973) and designated stages 1 through 7, with stages 5-7 associated with the maturing heterocyst. We now designate a stage 8 as the postmaturation stage, based on physiological and ultrastructural evidence. Immunocytochemistry to detect the nitrogenase protein NifH and the nonribosomally synthesized polypeptide cyanophycin demonstrated a complementary accumulation of these polypeptides. Accumulation of the nitrogenase protein was greatest at stages 5 and 6 and then declined precipitously. Cyanophycin was more prevalent after late stage 6 and was primarily associated with the polar nodule (polar plug) and the neck connecting the heterocyst with the adjoining vegetative cell. We suggest that the cyanophycin-containing polar plug is a key intermediate in the storage of fixed nitrogen in the heterocyst, a result consistent with the suggestion first made by Carr (1988) that cyanophycin exists as a dynamic reservoir of fixed nitrogen within the heterocysts.
机译:N_2固定在丝状蓝藻鱼腥藻中的过程。已知PCC 7120发生在称为异囊的终末分化细胞中。这项研究与发育中的异型囊肿的形态学和免疫细胞化学分析有关。在特化细胞壁合成和前囊肿形成之后,异囊继续发展过程。最初的阶段由Wilcox等人描述。 (1973)和指定的第1到第7阶段,第5到第7阶段与成熟的异囊肿相关。现在,基于生理和超微结构证据,我们将第8阶段指定为成熟后阶段。免疫细胞化学检测的固氮酶蛋白NifH和非核糖体合成的多肽蓝霉素证明了这些多肽的互补积累。固氮酶蛋白的积累在第5和第6阶段最大,然后急剧下降。蓝藻素在第6阶段后期更为普遍,主要与极性结节(极性栓塞)和将杂囊与邻接的营养细胞相连的颈部有关。我们认为,含氰霉素的极性塞是杂藻中固定氮存储的关键中间体,这一结果与Carr(1988)最初提出的建议一致,即氰霉素作为异种囊中固定氮的动态储集存在。

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