Crop Production Systems Research Unit, USDA-ARS, Stoneville, MS, 38776, USA.
Department of Chemical and Biomolecular Engineering, Clemson University, Clemson, SC, 29634, USA.
BMC Res Notes. 2020 Jul 10;13(1):330. doi: 10.1186/s13104-020-05169-0.
The objective of the research presented here was to determine whether autonomous replication sequences (ARS) discovered in the eccDNA replicon of glyphosate resistant Amaranthus palmeri enable self-replication in a yeast system.
Sequence analysis of the eccDNA replicon revealed a region of sharp changes in A + T/G + C content with characteristic bending indicative of an autonomous replication sequence. Further sequence analysis revealed an extended autonomous replication sequence (EACS) in close proximity to multiple DNA unwinding element (DUE) sequences. This region of the eccDNA replicon enabled autonomous replication of an ARS-less yeast plasmid.
本研究旨在确定在抗草甘膦的马齿苋 eccDNA 复制子中发现的自主复制序列 (ARS) 是否能在酵母系统中实现自我复制。
对 eccDNA 复制子的序列分析显示,A+T/G+C 含量有一个急剧变化的区域,具有特征性弯曲,表明存在自主复制序列。进一步的序列分析显示,在多个 DNA 解旋元件 (DUE) 序列附近存在一个扩展的自主复制序列 (EACS)。该 eccDNA 复制子的这一区域使缺乏 ARS 的酵母质粒能够实现自主复制。