Designing a synthetic moss genome using GenoDesigner

IF 15.8 1区 生物学 Q1 PLANT SCIENCES
Wenfei Yu, Shuo Zhang, Shijun Zhao, Lian-ge Chen, Jie Cao, Hao Ye, Jianbin Yan, Qiao Zhao, Beixin Mo, Ying Wang, Yuling Jiao, Yingxin Ma, Xiaoluo Huang, Wenfeng Qian, Junbiao Dai
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引用次数: 0

Abstract

The de novo synthesis of genomes has made unprecedented progress and achieved milestones, particularly in bacteria and yeast. However, the process of synthesizing a multicellular plant genome has not progressed at the same pace, due to the complexity of multicellular plant genomes, technical difficulties associated with large genome size and structure, and the intricacies of gene regulation and expression in plants. Here we outline the bottom-up design principles for the de novo synthesis of the Physcomitrium patens (that is, earthmoss) genome. To facilitate international collaboration and accessibility, we have developed and launched a public online design platform called GenoDesigner. This platform offers an intuitive graphical interface enabling users to efficiently manipulate extensive genome sequences, even up to the gigabase level. This tool is poised to greatly expedite the synthesis of the P. patens genome, offering an essential reference and roadmap for the synthesis of plant genomes. The authors present the design principles of a synthetic earthmoss (Physcomitrium patens) genome. To aid future genome design projects, they also develop GenoDesigner, a software package that provides users with an intuitive graphical interface to efficiently manipulate genomic sequences.

Abstract Image

Abstract Image

使用 GenoDesigner 设计合成苔藓基因组
基因组的从头合成取得了前所未有的进展,特别是在细菌和酵母中取得了里程碑式的成就。然而,由于多细胞植物基因组的复杂性、与大基因组规模和结构相关的技术难度以及植物基因调控和表达的错综复杂性,合成多细胞植物基因组的过程并没有取得同样的进展。在此,我们概述了从头合成Physcomitrium patens(即土苔)基因组的自下而上的设计原则。为了促进国际合作和可访问性,我们开发并推出了一个名为 GenoDesigner 的公共在线设计平台。该平台提供了一个直观的图形界面,使用户能够高效地处理大量基因组序列,甚至达到千兆位级。该工具将大大加快白头翁基因组的合成,为植物基因组的合成提供重要的参考和路线图。
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来源期刊
Nature Plants
Nature Plants PLANT SCIENCES-
CiteScore
25.30
自引率
2.20%
发文量
196
期刊介绍: Nature Plants is an online-only, monthly journal publishing the best research on plants — from their evolution, development, metabolism and environmental interactions to their societal significance.
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