长读时代的植物基因组序列组装:进展、挑战与未来方向。

Boas Pucker, Iker Irisarri, Jan de Vries, Bo Xu
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引用次数: 26

摘要

第三代长读测序正在改变植物基因组学。牛津纳米孔技术公司和太平洋生物科学公司正在提供竞争性的长读测序技术,使植物科学家能够研究甚至大型和复杂的植物基因组。测序项目可以由单个研究小组进行,较小的植物基因组测序可以在几天内完成。这也导致了对多物种基因组的大规模研究,以解决与陆地植物起源和进化相关的基本问题。越来越多的测序设备和用户友好的软件允许更多的研究人员参与基因组学。当前的挑战是准确地确定二倍体或多倍体基因组序列,并通过从使用单一参考基因组序列转向使用泛基因组图谱来更好地解释种内多样性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Plant genome sequence assembly in the era of long reads: Progress, challenges and future directions.

Third-generation long-read sequencing is transforming plant genomics. Oxford Nanopore Technologies and Pacific Biosciences are offering competing long-read sequencing technologies and enable plant scientists to investigate even large and complex plant genomes. Sequencing projects can be conducted by single research groups and sequences of smaller plant genomes can be completed within days. This also resulted in an increased investigation of genomes from multiple species in large scale to address fundamental questions associated with the origin and evolution of land plants. Increased accessibility of sequencing devices and user-friendly software allows more researchers to get involved in genomics. Current challenges are accurately resolving diploid or polyploid genome sequences and better accounting for the intra-specific diversity by switching from the use of single reference genome sequences to a pangenome graph.

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