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贾第鞭毛虫根瘤菌DNA结合反应调节因子A3AY_RS01基因启动子区域及调控元件分析

Analysis of promoter region and regulatory elements of Rhizobium giardinii DNA-binding response regulator A3AY_RS01 genes.

作者信息

Atsbeha Genet, Kebede Mulugeta, Samuel Behailu, Baraki Haftom, Tadesse Hailekiros, Sbhatu Desta Berhe

机构信息

Department of Applied Biology, School of Applied Natural Science, Adama Science and Technology University, Adama, Ethiopia.

Department of Plant Biology and Biodiversity Management, Addis Ababa University, Addis Ababa, Ethiopia.

出版信息

J Genet Eng Biotechnol. 2024 Sep;22(3):100397. doi: 10.1016/j.jgeb.2024.100397. Epub 2024 Jun 20.

Abstract

BACKGROUND

Rhizobium giardinii has been demonstrated to colonize the roots of a variety of legume species, including common beans, and to increase nitrogen fixation. This suggests that Rhizobium giardinii might be a beneficial tool for sustainable agriculture by lowering dependency on synthetic nitrogen fertilizers and enhancing soil fertility. Understanding the regulatory components in the R. giardinii A3AY_RS01 genes might also lead to the creation of innovative ways for increasing the effectiveness of nitrogen fixation in other agriculturally important bacteria. Therefore, this study was aimed to predict regulatory element of R. giardinii DNA-binding response regulator A3AY_RS01 genes.

RESULTS

The locations for 19 % of the Transcriptional start site (TSSs) were within -300 bp relative to the start codon and ten candidate motifs were identified that are shared by at least 50 % of the R. giardinii A3AY_RS01 promoter input sequences from both strands. Motif 1 was revealed as the common promoter motif for all of R. giardinii A3AY_RS01 genes that serves as binding sites for TFs involved in the expression regulation of these genes. Hence, it was revealed that Motif 1 may serve as the binding site chiefly for Ferric uptake regulator (Fur) transcription factor family to regulate expression of A3AY_RS01 genes. High CpG density in the promoter than body regions were observed for most of the genes except for A3AY_RS0102950, A3AY_RS0120195 and A3AY_RS0131150 genes. Nonetheless, promoter areas were richer than body regions in both techniques.

CONCLUSIONS

MV1 motif can serve as a binding site for the Fur transcription factor gene family in R. giardinii to regulate the expression of R. giardinii A3AY_RS01 genes. R. giardinii A3AY_RS01 genes are rich in CpG Islands, and play an important role in the regulation of the gene expression of nitrogen fixing in this bacterium.

摘要

背景

已证明贾氏根瘤菌能定殖于包括菜豆在内的多种豆科植物的根部,并能增加固氮作用。这表明贾氏根瘤菌可能是可持续农业的一种有益工具,可降低对合成氮肥的依赖并提高土壤肥力。了解贾氏根瘤菌A3AY_RS01基因中的调控成分,也可能带来创新方法,以提高其他具有农业重要性的细菌的固氮效率。因此,本研究旨在预测贾氏根瘤菌DNA结合反应调节因子A3AY_RS01基因的调控元件。

结果

19%的转录起始位点(TSSs)位于相对于起始密码子的-300 bp范围内,并且鉴定出了十个候选基序,两条链上至少50%的贾氏根瘤菌A3AY_RS01启动子输入序列都共享这些基序。基序1被揭示为所有贾氏根瘤菌A3AY_RS01基因的共同启动子基序,作为参与这些基因表达调控的转录因子的结合位点。因此,揭示出基序1可能主要作为铁摄取调节因子(Fur)转录因子家族的结合位点,以调节A3AY_RS01基因的表达。除了A3AY_RS0102950、A3AY_RS0120195和A3AY_RS0131150基因外,大多数基因的启动子区域的CpG密度高于基因体区域。尽管如此,在两种技术中,启动子区域都比基因体区域更丰富。

结论

MV1基序可作为贾氏根瘤菌中Fur转录因子基因家族的结合位点,以调节贾氏根瘤菌A3AY_RS01基因的表达。贾氏根瘤菌A3AY_RS01基因富含CpG岛,并且在该细菌的固氮基因表达调控中起重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f16c/11231716/bbd0c997050e/gr1.jpg

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