首页> 外文会议>Instruments and methods for astrobiology and planetary missions XII >Multi-fractal property of perchlorate reductase gene sequences and DNA photonics application to UV fluorescence detection on Mars-like surfaces
【24h】

Multi-fractal property of perchlorate reductase gene sequences and DNA photonics application to UV fluorescence detection on Mars-like surfaces

机译:高氯酸盐还原酶基因序列的多重分形特性和DNA光子学在类火星表面UV荧光检测中的应用

获取原文
获取原文并翻译 | 示例

摘要

The discovery of perchlorate on Mars raises the possibility of the existence of perchlorate reduction microbes on that planet. The perchlorate reductase gene sequence fractal dimensions of two Dechloromonas species were compared with five other sequences in the microbial dimethyl sulfoxide (DMSO) reductase family. A nucleotide sequence can be expressed as a numerical sequence where each nucleotide is assigned its proton number. The resulting numerical sequence can be investigated for its fractal dimension in terms of evolution and chemical properties for comparative studies. Analysis of the fractal dimensions for the DMSO reductase family supports phylogenetic analyses that show that the perchlorate reductase gene sequences are members of the same family. A sub-family with roughly the same nucleotide length emerges having the property that the gene fractal dimension is negatively correlated with the Shannon di-nucleotide entropy (R2 ~ 0.95, N =5). The gene sequence fractal dimension is found to be positively correlated with the neighbor joining distances reported in a published protein phylogeny tree (R2~ 0.92, N = 5). The multi-fractal property associated with these genes shows that perchlorate reductase has lower dimensionality as compared to the relatively higher dimensionality DNA-break repair genes Rec-A and Rad-A observed in the Dechloromonas aromatica and Deinococcus radiodurans genomes. The studied perchlorate gene sequences show a higher Shannon di-nucleotide entropy (~3.97 bits) relative to Dechloromonas aromatica DNA repair sequences (~3.87 bits Rec-A, ~3.92 bits Rad-A), suggesting that there are fewer constraints on nucleotide variety in the perchorlate sequences . These observations thus allow for the existence of perchlorate reducing microbes on Mars now or in the past. Time-resolved UV fluorescence study near the emission bands of nucleotide sequences could be used for bio-detection on Mars-like surfaces and the results may further constrain the proposed conjectures.
机译:在火星上发现高氯酸盐会增加在该星球上存在高氯酸盐还原菌的可能性。比较了两种Dechloromonas物种的高氯酸盐还原酶基因序列的分形维数与微生物二甲基亚砜(DMSO)还原酶家族中的其他五个序列。核苷酸序列可以表示为数字序列,其中为每个核苷酸分配了其质子数。可以根据演化和化学性质研究所得的数值序列的分形维数,以进行比较研究。 DMSO还原酶家族的分形维数分析支持系统发育分析,这些分析表明高氯酸盐还原酶基因序列是同一家族的成员。出现具有大致相同核苷酸长度的亚科,其特性是基因分形维数与香农二核苷酸熵负相关(R2〜0.95,N = 5)。发现基因序列的分形维数与已发表的蛋白质系统树中报道的邻居连接距离正相关(R2〜0.92,N = 5)。与这些基因相关的多重分形特性表明,与在芳香族十氯单胞菌和放射性双歧球菌基因组中观察到的相对较高维度的DNA断裂修复基因Rec-A和Rad-A相比,高氯酸盐还原酶具有较低的维度。研究的高氯酸盐基因序列显示出相对于芳香十氯单胞菌DNA修复序列(〜3.87位Rec-A,〜3.92位Rad-A)更高的Shannon二核苷酸熵(〜3.97位),这表明对核苷酸多样性的约束较少在perchorlate序列中。因此,这些观察结果使得现在或过去在火星上都存在还原高氯酸盐的微生物。核苷酸序列发射带附近的时间分辨紫外荧光研究可用于在火星状表面上进行生物检测,其结果可能会进一步限制所提出的猜想。

著录项

  • 来源
  • 会议地点 San Diego CA(US)
  • 作者单位

    Regina Sullivan, Pat Schneider, Alex Flamholz, David H. Lieberman, Tak D. Cheung Queensborough Community College of CUNY, 222-05 56th Ave. Bayside, NY 11364;

    Regina Sullivan, Pat Schneider, Alex Flamholz, David H. Lieberman, Tak D. Cheung Queensborough Community College of CUNY, 222-05 56th Ave. Bayside, NY 11364;

    Regina Sullivan, Pat Schneider, Alex Flamholz, David H. Lieberman, Tak D. Cheung Queensborough Community College of CUNY, 222-05 56th Ave. Bayside, NY 11364;

    Regina Sullivan, Pat Schneider, Alex Flamholz, David H. Lieberman, Tak D. Cheung Queensborough Community College of CUNY, 222-05 56th Ave. Bayside, NY 11364;

    Regina Sullivan, Pat Schneider, Alex Flamholz, David H. Lieberman, Tak D. Cheung Queensborough Community College of CUNY, 222-05 56th Ave. Bayside, NY 11364;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 天体测量学;
  • 关键词

    perchlorate reductase gene; multi-fractal; rec-A; rad-A;

    机译:高氯酸盐还原酶基因;分形rec-A;拉德;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号