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红藻分支中细菌、古菌和质体的最适生长温度和基因间隔区

Optimal Growth Temperature and Intergenic Distances in Bacteria, Archaea, and Plastids of Rhodophytic Branch.

机构信息

Institute for Information Transmission Problems of the Russian Academy of Sciences (Kharkevich Institute), Bolshoy Karetny 19, Moscow 127051, Russia.

出版信息

Biomed Res Int. 2020 Jan 18;2020:3465380. doi: 10.1155/2020/3465380. eCollection 2020.

Abstract

The lengths of intergenic regions between neighboring genes that are convergent, divergent, or unidirectional were calculated for plastids of the rhodophytic branch and complete archaeal and bacterial genomes. Statistically significant linear relationships between any pair of the medians of these three length types have been revealed in each genomic group. Exponential relationships between the optimal growth temperature and each of the three medians have been revealed as well. The leading coefficients of the regression equations relating all pairs of the medians as well as temperature and any of the medians have the same sign and order of magnitude. The results obtained for plastids, archaea, and bacteria are also similar at the qualitative level. For instance, the medians are always low at high temperatures. At low temperatures, the medians tend to statistically significant greater values and scattering. The original model was used to test our hypothesis that the intergenic distances are optimized in particular to decrease the competition of RNA polymerases within the locus that results in transcribing shortened RNAs. Overall, this points to an effect of temperature for both remote and close genomes.

摘要

已计算了红藻分支的质体、完整的古细菌和细菌基因组中相邻基因之间的基因间区域的长度,这些基因间区域是会聚的、发散的或单向的。在每个基因组群中,都揭示了这三种长度类型的中位数之间存在统计学上显著的线性关系。还揭示了最佳生长温度与这三种中位数中的每一种之间的指数关系。将中位数的所有对以及温度与任何中位数相关的回归方程的主导系数具有相同的符号和数量级。在质体、古细菌和细菌方面获得的结果在定性水平上也相似。例如,在高温下中位数总是较低。在低温下,中位数往往具有统计学上更大的值和更分散。原始模型用于检验我们的假设,即基因间距离是优化的,特别是为了减少导致转录缩短 RNA 的 RNA 聚合酶在基因座内的竞争。总体而言,这表明温度对远程和近基因组都有影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6611/6991167/6df987002bf2/BMRI2020-3465380.001.jpg

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