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Adjustments to Photosystem Stoichiometry and Electron Transfer Proteins Are Key to the Remarkably Fast Growth of the Cyanobacterium Synechococcus elongatus UTEX 2973

机译:对照测量化学计量和电子转移蛋白的调整是Cyanobacterium Snechococcus Elongatus Utex 2973显着快速生长的关键

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摘要

At the genome level, Synechococcus elongatus UTEX 2973 (Synechococcus 2973) is nearly identical to the model cyanobacterium Synechococcus elongatus PCC 7942 (Synechococcus 7942) with only 55 single nucleotide differences separating the two strains. Despite the high similarity between the two strains, Synechococcus 2973 grows three times faster, accumulates significantly more glycogen, is tolerant to extremely high light intensities, and displays higher photosynthetic rates. The high homology between the two strains provides a unique opportunity to examine the factors that lead to increased photosynthetic rates. We compared the photophysiology of the two strains and determined the differences in Synechococcus 2973 that lead to increased photosynthetic rates and the concomitant increase in biomass production. In this study, we identified inefficiencies in the electron transport chain of Synechococcus 7942 that have been alleviated in Synechococcus 2973. Photosystem II (PSII) capacity is the same in both strains. However, Synechococcus 2973 exhibits a 1.6-fold increase in PSI content, a 1.5-fold increase in cytochrome b6f content, and a 2.4-fold increase in plastocyanin content on a per cell basis. The increased content of electron carriers allows a higher flux of electrons through the photosynthetic electron transport chain, while the increased PSI content provides more oxidizing power to maintain upstream carriers ready to accept electrons. These changes serve to increase the photosynthetic efficiency of Synechococcus 2973, the fastest growing cyanobacterium known.
机译:在基因组水平上,SyneChococcus ulongatus Utex 2973(SyneChoccus 2973)与模型梭菌肌细胞蛋白酶菌蛋白肌菌PCC 7942(SyneChococcus 7942)几乎相同,其仅具有分离两个菌株的55个单核苷酸差异。尽管两种菌株之间具有高相似性,但同系细胞2973速度速度速度速度速度三倍,累积较大的糖原较大,耐受极高的光强度,并显示出更高的光合速率。两种菌株之间的高同源性提供了一种独特的机会,可以检查导致光合速率增加的因素。我们比较了两种菌株的光学性学,并确定了扦插2973的差异,导致光合速率提高和生物量产生的伴随增加。在这项研究中,我们确定了在SyneChococcus 2973中被缓解的SyneChococcus 7942的电子传输链中的效率低。光系统II(PSII)容量在两种菌株中都是相同的。然而,SyneChocccus 2973表现出pSI含量的1.6倍,细胞色素B6F含量增加1.5倍,每种细胞含量增加2.4倍的增塑素含量。电子载体的增加含量允许通过光合电子传输链的较高的电子通量,而增加的PSI含量提供更多的氧化能力以维持准备接受电子的上游载波。这些变化有助于提高SyneChoccus 2973的光合效率,已知增长最快的蓝杆菌。

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