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In situ detection of transcripts for ribulose-1,5-bisphosphate carboxylase in cyanobacterial heterocysts.

机译:原位检测蓝藻杂胞中核糖-1,5-双磷酸羧化酶的转录本。

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摘要

Heterocysts of free-living cyanobacteria lack ribulose-1,5-bisphosphate carboxylase activity. Nevertheless, using in situ hybridizations, we demonstrate that transcripts for the rbcL and rbcS genes are present in both heterocysts and vegetative cells of Anabaena spp. in association with, or isolated from, the Azolla-Anabaena symbiosis. In contrast, rbcLS transcripts were detected only in vegetative cells of the free-living cyanobacterium Anabaena strain 7120. Under anaerobic growth conditions that inhibited heterocyst differentiation, transcripts for nitrogenase were present in all cells composing Anabaena strain 7120 filaments, whereas rbcL and rbcS transcripts were not detected. Thus, transcriptional regulation of genes related to photosynthesis and nitrogen fixation is under environmental, as well as developmental, control in Anabaena spp. In addition, these results suggest either the possible retention of regulatory patterns in symbiotically derived cyanobacterial isolates or differences in expression of rbcLS genes in different free-living cyanobacteria.
机译:自由生存的蓝细菌的胞囊缺乏核糖-1,5-双磷酸羧化酶活性。但是,使用原位杂交,我们证明了rbcL和rbcS基因的转录本同时存在于鱼腥藻的杂种囊和营养细胞中。与Azolla-Anabaena共生相关或与之分离。相反,仅在自由活动的蓝藻鱼腥藻菌株7120的营养细胞中检测到rbcLS转录物。在抑制异囊藻分化的厌氧生长条件下,组成鱼腥藻菌株7120细丝的所有细胞中都存在固氮酶的转录物,而rbcL和rbcS转录物是没有检测到。因此,与光合作用和固氮相关的基因的转录调控是在环境以及发育控制下,在鱼腥藻中。此外,这些结果表明,共生衍生的蓝细菌分离物中可能保留了调控模式,或者在不同的自由生存蓝细菌中rbcLS基因的表达存在差异。

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