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Inorganic Carbon Limitation and Light Control the Expression of Transcripts Related to the CO2-Concentrating Mechanism in the Cyanobacterium Synechocystis sp. Strain PCC6803

机译:蓝藻蓝藻中无机碳的限制和光控制与CO2浓缩机制有关的转录本的表达。株PCC6803

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摘要

The cyanobacterium Synechocystis sp. strain PCC6803 possesses three modes of inorganic carbon (Ci) uptake that are inducible under Ci stress and that dramatically enhance the efficiency of the CO2-concentrating mechanism (CCM). The effects of Ci limitation on the mRNA transcript abundance of these inducible uptake systems and on the physiological expression of the CCM were investigated in detail in this cyanobacterium. Transcript abundance was assessed with semiquantitative and real-time reverse transcriptase-polymerase chain reaction techniques. Cells aerated with CO2-free air for 30 min in the light, but not in the dark, depleted the total [Ci] to near zero levels. Under these conditions, the full physiological expression of the CCM was apparent within 2 h. Transcripts for the three inducible Ci uptake systems, ndhF3, sbtA, and cmpA, showed near-maximal abundance at 15 min under Ci limitation. The transcriptional regulators, cmpR and ndhR, were more moderately expressed, whereas the rbcLXS and ccmK-N operons and ndhF4/ndhD4/chpX and ccaA genes were insensitive to the low-Ci treatment. The combined requirement of low Ci and light for the expression of several CCM-related transcripts was examined using real-time reverse transcriptase-polymerase chain reaction. CmpA, ndhF3, and sbtA were strongly expressed in the light, but not in the dark, under low-Ci conditions. We could find no evidence for induction of these or other CCM-related genes by a high-light treatment under high-CO2 conditions. This provided evidence that high-light stress alone could not trigger the expression of CCM-related transcripts in Synechocystis sp. PCC6803. Potential signals triggering induction of the high-affinity state of the CCM are discussed.
机译:蓝藻集胞藻PCC6803菌株具有三种在Ci胁迫下可诱导的无机碳(Ci)吸收模式,并大大提高了CO2浓缩机制(CCM)的效率。在这种蓝细菌中详细研究了Ci限制对这些可诱导摄取系统的mRNA转录本丰度和CCM的生理表达的影响。使用半定量和实时逆转录酶-聚合酶链反应技术评估转录物的丰度。在没有光照的情况下,用无二氧化碳的空气充气细胞30分钟,但在黑暗中则没有,将总的[Ci]消耗至接近零水平。在这些条件下,CCM的完整生理表达在2 h内明显。三个诱导性Ci吸收系统的转录本,ndhF3,sbtA和cmpA,在Ci限制下在15分钟时显示出接近最大的丰度。转录调节子cmpR和ndhR较适度表达,而rbcLXS和ccmK-N操纵子以及ndhF4 / ndhD4 / chpX和ccaA基因对低Ci处理不敏感。使用实时逆转录酶-聚合酶链反应检查了低Ci和轻的组合要求的几个CCM相关转录的表达。在低Ci条件下,CmpA,ndhF3和sbtA在明亮的​​条件下强烈表达,而在黑暗中则不表达。我们找不到在高CO2条件下通过强光处理诱导这些或其他CCM相关基因的证据。这提供了证据,仅靠强光胁迫不能触发Synechocystis sp。中CCM相关转录本的表达。 PCC6803。讨论了触发CCM高亲和力状态的潜在信号。

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