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Cyanobacteria gene and protein sequences in diurnal oscillation metabolic processes

机译:蓝藻基因和蛋白质序列在昼夜振荡代谢过程中的作用

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Daytime photosynthesis and nighttime nitrogen fixation metabolic processes have been reported in the bacterium, Cyanothece 51142. The organism's auto-fluorescence with 532 nm excitation would place cyanobacteria at the forefront in the remote sensing of microbial activity in astrobiology. The sensitivity of nitrogenase to oxygen was studied in terms of sequence nucleotide fluctuation. A nucleotide sequence fractal dimension can be calculated from a numerical series consisting of the atomic numbers of each nucleotide. The fractal dimension and Shannon entropy form a two-dimensional measure that is useful in assessing evolutionary pressures. The studied sequences include nitrogenase iron protein NifH, nitrogenase molybdenum-iron protein alpha chain NifD and beta chain NifK. The photosynthesis-lacking UCYN-A cyanobacterium as reported recently in the journal, Nature, was observed to have the lowest entropy with relatively high fractal dimension values in the studied NifH, NifD and NifH sequences. The fractal dimension of NifH sequences correlates with the NifD sequence values with an R-square of 0.91 (N = 8). The Shannon mononucleotide entropy of NifD sequences correlates with the NifK sequence values with an R-square value of 0.92 (N = 8). The observed strong correlation suggests the presence of gradual evolutionary pressure among the studied cyanobacteria, and throws light on the reported paradox in evolution for the case of UCYN-A. The results show that diurnal oscillation metabolic processes in cyanobacteria (including the photosynthesis-deficient case) are not associated with extraordinary evolutionary pressures and thus are processes consistent with putative astrobiological organisms.
机译:Cyanothece 51142细菌已经报道了白天的光合作用和夜间固氮代谢过程。该生物体以532 nm激发的自发荧光作用将蓝细菌置于遥测天体生物学中的微生物活动中。根据核苷酸序列的波动研究了固氮酶对氧气的敏感性。核苷酸序列的分形维数可以从由每个核苷酸的原子序数组成的数值序列计算得出。分形维数和香农熵形成一个二维量度,可用于评估演化压力。研究的序列包括固氮酶铁蛋白NifH,固氮酶钼铁蛋白α链NifD和β链NifK。如最近在《自然》杂志上报道的,缺乏光合作用的UCYN-A蓝细菌在研究的NifH,NifD和NifH序列中具有最低的熵和相对较高的分形维数。 NifH序列的分形维数与NifD序列值相关,R平方为0.91(N = 8)。 NifD序列的Shannon单核苷酸熵与NifK序列值相关,R平方值为0.92(N = 8)。观察到的强相关性表明所研究的蓝细菌之间存在渐进的进化压力,并且对于UCYN-A案例中所报道的进化悖论提供了启示。结果表明,蓝细菌的昼夜振荡代谢过程(包括光合作用不足的情况)与异常的进化压力无关,因此与假定的天体生物一致。

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