The genome of the cucumber, Cucumis sativus L.

黄瓜 生物 基因组 桑格测序 遗传学 基因 全基因组测序 DNA测序 植物
作者
Sanwen Huang,Ruiqiang Li,Zhonghua Zhang,Li Li,Xingfang Gu,Wei Fan,William J. Lucas,Xiaowu Wang,Bingyan Xie,Peixiang Ni,Yuanyuan Ren,Hongmei Zhu,Jun Li,Kui Lin,Weiwei Jin,Zhangjun Fei,Guangcun Li,Jack E. Staub,Andrzej Kilian,E.A.G. van der Vossen
出处
期刊:Nature Genetics [Nature Portfolio]
卷期号:41 (12): 1275-1281 被引量:1418
标识
DOI:10.1038/ng.475
摘要

Jun Wang and colleagues report the genome sequence of the cucumber. The cucumber genome is the seventh plant genome sequence to be reported and was assembled with a combination of traditional Sanger and next-generation sequencing methods. Cucumber is an economically important crop as well as a model system for sex determination studies and plant vascular biology. Here we report the draft genome sequence of Cucumis sativus var. sativus L., assembled using a novel combination of traditional Sanger and next-generation Illumina GA sequencing technologies to obtain 72.2-fold genome coverage. The absence of recent whole-genome duplication, along with the presence of few tandem duplications, explains the small number of genes in the cucumber. Our study establishes that five of the cucumber's seven chromosomes arose from fusions of ten ancestral chromosomes after divergence from Cucumis melo. The sequenced cucumber genome affords insight into traits such as its sex expression, disease resistance, biosynthesis of cucurbitacin and 'fresh green' odor. We also identify 686 gene clusters related to phloem function. The cucumber genome provides a valuable resource for developing elite cultivars and for studying the evolution and function of the plant vascular system.
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