The genome sequence of tetraploid sweet basil, Ocimum basilicum L., provides tools for advanced genome editing and molecular breeding.

IF 3.9 2区 生物学 Q1 GENETICS & HEREDITY DNA Research Pub Date : 2020-12-03 DOI:10.1093/dnares/dsaa027
Itay Gonda, Adi Faigenboim, Chen Adler, Renana Milavski, Merrie-Jean Karp, Alona Shachter, Gil Ronen, Kobi Baruch, David Chaimovitsh, Nativ Dudai
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引用次数: 10

Abstract

Sweet basil, Ocimum basilicum L., is a well-known culinary herb grown worldwide, but its uses go beyond the kitchen to traditional medicine, cosmetics and gardening. To date, the lack of an available reference genome has limited the utilization of advanced molecular breeding methods. We present a draft version of the sweet basil genome of the cultivar 'Perrie', a fresh-cut Genovese-type basil. Genome sequencing showed basil to be a tetraploid organism with a genome size of 2.13 Gbp, assembled in 12,212 scaffolds, with > 90% of the assembly being composed of 107 scaffolds. About 76% of the genome is composed of repetitive elements, with the majority being long-terminal repeats. We constructed and annotated 62,067 protein-coding genes and determined their expression in different plant tissues. We analysed the currently known phenylpropanoid volatiles biosynthesis genes. We demonstrated the necessity of the reference genome for a comprehensive understanding of this important pathway in the context of tetraploidy and gene redundancy. A complete reference genome is essential to overcome this redundancy and to avoid off-targeting when designing a CRISPR: Cas9-based genome editing research. This work bears promise for developing fast and accurate breeding tools to provide better cultivars for farmers and improved products for consumers.

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四倍体甜罗勒(Ocimum basilicum L.)的基因组序列为先进的基因组编辑和分子育种提供了工具。
甜罗勒(Ocimum basilicum L.)是一种世界闻名的烹饪草药,但它的用途不仅限于厨房,还包括传统医药、化妆品和园艺。迄今为止,缺乏可用的参考基因组限制了先进分子育种方法的利用。我们提出了一个草案版本的甜罗勒基因组的栽培'Perrie',一个新鲜的切基诺维斯型罗勒。基因组测序表明罗勒是一个四倍体生物,基因组大小为2.13 Gbp,由12212个支架组成,其中大于90%的支架由107个支架组成。大约76%的基因组是由重复元素组成的,其中大部分是长端重复序列。我们构建并注释了62,067个蛋白质编码基因,并测定了它们在不同植物组织中的表达。我们分析了目前已知的苯丙烷挥发物生物合成基因。我们证明了参考基因组在四倍体和基因冗余的背景下对这一重要途径的全面理解的必要性。在设计基于CRISPR: cas9的基因组编辑研究时,一个完整的参考基因组对于克服这种冗余和避免脱靶至关重要。这项工作有望开发出快速、准确的育种工具,为农民提供更好的品种,为消费者提供更好的产品。
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来源期刊
DNA Research
DNA Research 生物-遗传学
CiteScore
6.00
自引率
4.90%
发文量
39
审稿时长
4.5 months
期刊介绍: DNA Research is an internationally peer-reviewed journal which aims at publishing papers of highest quality in broad aspects of DNA and genome-related research. Emphasis will be made on the following subjects: 1) Sequencing and characterization of genomes/important genomic regions, 2) Comprehensive analysis of the functions of genes, gene families and genomes, 3) Techniques and equipments useful for structural and functional analysis of genes, gene families and genomes, 4) Computer algorithms and/or their applications relevant to structural and functional analysis of genes and genomes. The journal also welcomes novel findings in other scientific disciplines related to genomes.
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