24小时热门版块排行榜    

会议专版广告。小木虫无法确保会议的真实性。如果发现有虚假欺诈会议,请立即举报给我们。 [刊登会议、举报虚假会议广告,均请联系微信:18510626021 ]

查看: 3872  |  回复: 68
当前只显示满足指定条件的回帖,点击这里查看本话题的所有回帖

流风易逝

铁杆木虫 (正式写手)


[交流] 【2013-12-31】Frontiers in Microbiology专刊征稿【SCIE】

截稿日期:
2013年12月31日

DNA Replication Origins in Microbial Genomes

导师主持的专刊,如有合适的工作,欢迎各位投稿。如有兴趣,可站内信联系。

http://www.frontiersin.org/evolu ... origins_in_mic/2193

In collaboration with Frontiers in Microbiology, we are organizing a Research Topic titled "DNA Replication Origins in Microbial Genomes”.

Frontiers, a Swiss open-access publisher, recently partnered with Nature Publishing Group to expand its researcher-driven Open Science platform. Frontiers articles are rigorously peer-reviewed, can be disseminated freely and are widely read by your colleagues and by the broader scientific and medical research communities.

Research Topic
DNA replication, a central event for cell proliferation, is the basis of biological inheritance. Complete and accurate DNA replication is integral to the maintenance of the genetic integrity of organisms. In all three domains of life, DNA replication begins at replication origins. In bacteria, replication initiates from a single replication origin (oriC), which contains several DnaA boxes. In eukaryotic genomes, replication initiates from significantly more replication origins, ranging from hundreds in yeast to tens of thousands in human, activated simultaneously at a specific time. For eukaryotic organisms, replication origins are best characterized in the unicellular eukaryote budding yeast Saccharomyces cerevisiae and the fission yeast Schizosaccharomyces pombe. The budding yeast origins contain an essential sequence element called the ARS (autonomously replicating sequence), while the fission yeast origins consist of AT-rich sequences. Within the archaeal domain, the multiple replication origins have been identified by a predict-and-verify approach in the hyperthermophilic archaeon Sulfolobus. Archaeal origins contain two or more short repetitive DNA sequences, known as origin recognition boxes (ORBs). It appears that archaea have a simplified version of the eukaryotic replication apparatus, which has led to considerable interest in the archaeal machinery as a model of that in eukaryotes.

The identification of replication origins is important not only in providing insights into the structure and function of the replication origins but also in understanding the regulatory mechanisms of the initiation step in DNA replication. Therefore, intensive studies have been carried out on the identification of replication origins in the last two decades. The pioneer work to identify bacterial oriCs in silico is the GC-skew analysis. Later, a method of cumulative GC skew without sliding windows was proposed to give better resolution. Meanwhile, an oligomer-skew method was also proposed to predict oriC regions in bacterial genomes. As a unique representation of a DNA sequence, the Z-curve method has been proved to be an accurate and effective approach to predict bacterial and archaeal replication origins. Budding yeast origins have been predicted by Oriscan using similarity to the characterized ones, while the fission yeast origins have been indentified initially from AT content calculation. In comparison with the in silico analysis, the experimental methods are convincing and reliable, but time-consuming and labor-intensive. The microbial replication origins can be identified by several experimental methods including construction of replicative oriC plasmids, microarray-based or high-throughput sequencing-based marker frequency analysis, two-dimensional gel electrophoresis analysis and replication initiation point mapping (RIP mapping) etc. The recent genome-wide approaches to identify and characterize replication origin locations have boosted the number of mapped yeast replication origins. The availability of increasing complete microbial genomes and emerging approaches has created challenges and opportunities for identification of their replication origins in silico, as well as in vivo.

This research topic invites for the studies of microbial replication origins, addressing all the issues mentioned above, by in silico analyses as well as in vivo experiments. Manuscripts describing original research, methods, opinions, reviews are all welcome, which would provide a comprehensive overview of this field.

[ Last edited by 流风易逝 on 2013-11-4 at 12:03 ]

» 猜你喜欢

» 抢金币啦!回帖就可以得到:

查看全部散金贴

已阅   关注TA 给TA发消息 送TA红花 TA的回帖

流风易逝

铁杆木虫 (正式写手)


引用回帖:
66楼: Originally posted by 锋峰 at 2015-01-28 09:43:33
楼主能否跟我说一下投稿这个期刊的经验

这个杂志专刊居多,一般是需要有相关方面的研究,其次是需要向客座编辑申请。另外这个杂志已经是SCI2区了,可以试试。如果对我们这本专刊感兴趣的话,可以和我们联系,我们这本还没有结束。
67楼2015-01-28 10:46:23
已阅   关注TA 给TA发消息 送TA红花 TA的回帖

流风易逝

铁杆木虫 (正式写手)


引用回帖:
68楼: Originally posted by 锋峰 at 2015-01-28 14:28:08
多谢了哈  如何向客座编辑申请呢?申请大约多久呢?  我是做真菌多样性研究的...

我老板的专刊主要是关于微生物基因组复制原点的,可能和你的方向有差别。
申请很容易啊,网站上有说明,理论上的流程是向客座编辑投一个摘要,实际上先发个邮件这样快一些。
69楼2015-01-28 16:27:50
已阅   关注TA 给TA发消息 送TA红花 TA的回帖
相关版块跳转 我要订阅楼主 流风易逝 的主题更新
信息提示
请填处理意见