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兰花基因组揭示了独特形态特征的进化。

The Cymbidium genome reveals the evolution of unique morphological traits.

作者信息

Ai Ye, Li Zhen, Sun Wei-Hong, Chen Juan, Zhang Diyang, Ma Liang, Zhang Qing-Hua, Chen Ming-Kun, Zheng Qing-Dong, Liu Jiang-Feng, Jiang Yu-Ting, Li Bai-Jun, Liu Xuedie, Xu Xin-Yu, Yu Xia, Zheng Yu, Liao Xing-Yu, Zhou Zhuang, Wang Jie-Yu, Wang Zhi-Wen, Xie Tai-Xiang, Ma Shan-Hu, Zhou Jie, Ke Yu-Jie, Zhou Yu-Zhen, Lu Hsiang-Chia, Liu Ke-Wei, Yang Feng-Xi, Zhu Gen-Fa, Huang Laiqiang, Peng Dong-Hui, Chen Shi-Pin, Lan Siren, Van de Peer Yves, Liu Zhong-Jian

机构信息

Key Laboratory of National Forestry and Grassland Administration for Orchid Conservation and Utilization at College of Landscape Architecture, Fujian Agriculture and Forestry University, Fuzhou, China.

Department of Plant Biotechnology and Bioinformatics, Ghent University, Gent, Belgium.

出版信息

Hortic Res. 2021 Dec 1;8(1):255. doi: 10.1038/s41438-021-00683-z.

Abstract

The marvelously diverse Orchidaceae constitutes the largest family of angiosperms. The genus Cymbidium in Orchidaceae is well known for its unique vegetation, floral morphology, and flower scent traits. Here, a chromosome-scale assembly of the genome of Cymbidium ensifolium (Jianlan) is presented. Comparative genomic analysis showed that C. ensifolium has experienced two whole-genome duplication (WGD) events, the most recent of which was shared by all orchids, while the older event was the τ event shared by most monocots. The results of MADS-box genes analysis provided support for establishing a unique gene model of orchid flower development regulation, and flower shape mutations in C. ensifolium were shown to be associated with the abnormal expression of MADS-box genes. The most abundant floral scent components identified included methyl jasmonate, acacia alcohol and linalool, and the genes involved in the floral scent component network of C. ensifolium were determined. Furthermore, the decreased expression of photosynthesis-antennae and photosynthesis metabolic pathway genes in leaves was shown to result in colorful striped leaves, while the increased expression of MADS-box genes in leaves led to perianth-like leaves. Our results provide fundamental insights into orchid evolution and diversification.

摘要

极其多样的兰科植物构成了被子植物中最大的科。兰科中的蕙兰属以其独特的植株形态、花部形态和花香特征而闻名。在此,我们展示了建兰基因组的染色体水平组装。比较基因组分析表明,建兰经历了两次全基因组复制(WGD)事件,其中最近的一次是所有兰花共有的,而较古老的事件是大多数单子叶植物共有的τ事件。MADS-box基因分析结果为建立独特的兰花花发育调控基因模型提供了支持,并且建兰花形突变被证明与MADS-box基因的异常表达有关。鉴定出的最丰富的花香成分包括茉莉酸甲酯、金合欢醇和芳樟醇,并确定了建兰花香成分网络中涉及的基因。此外,叶片中光合作用天线和光合作用代谢途径基因的表达降低导致叶片出现彩色条纹,而叶片中MADS-box基因表达的增加导致出现类似花被的叶子。我们的结果为兰花的进化和多样化提供了基本见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54a2/8633000/30b3b71b7313/41438_2021_683_Fig1_HTML.jpg

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