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[物种名称]的染色体水平参考基因组:用于两型豆科植物研究和复杂开花模式的新资源。

Chromosome-Scale Reference Genome of : A New Resource for Amphicarpic Plants Research and Complex Flowering Pattern.

作者信息

Song Tingting, Zhou Mengyan, Yuan Yuying, Yu Jinqiu, Cai Hua, Li Jiawei, Chen Yajun, Bai Yan, Zhou Gang, Cui Guowen

机构信息

Department of Grassland Science, College of Animal Science and Technology, Northeast Agricultural University, Harbin, China.

Novogene Bioinformatics Institute, Beijing, China.

出版信息

Front Plant Sci. 2021 Nov 18;12:770660. doi: 10.3389/fpls.2021.770660. eCollection 2021.

Abstract

, an annual twining herb, is a widely distributed species and an attractive model for studying complex flowering types and evolutionary mechanisms of species. Herein, we have generated a high-quality assembly of by using a combination of PacBio, 10× Genomics libraries, and Hi-C mapping technologies. The final 11 chromosome-level scaffolds covered 90.61% of the estimated genome (343.78Mb), which is a chromosome-scale assembled genome of an amphicarpic plant. Subsequently, we characterized the genetic diversity and population structure of species by resequencing individuals collected from their natural area of distribution. Using transcriptome profiling, we observed that specific phenotypes are regulated by a complex network of light, hormones, and MADS-box gene families. These data are beneficial for the discovery of genes that control major agronomic traits and spur genetic improvement of and functional genetic studies in legumes, as well as supply comparative genetic resources for other amphicarpic plants.

摘要

[物种名称]是一种一年生缠绕草本植物,分布广泛,是研究复杂开花类型和物种进化机制的理想模式植物。在此,我们结合PacBio、10×基因组文库和Hi-C图谱技术,生成了高质量的[物种名称]基因组组装。最终的11个染色体水平的支架覆盖了估计基因组(343.78Mb)的90.61%,这是一个双结果实植物的染色体规模组装基因组。随后,我们通过对从其自然分布区域收集的个体进行重测序,对[物种名称]的遗传多样性和群体结构进行了表征。利用转录组分析,我们观察到特定表型受光、激素和MADS-box基因家族的复杂网络调控。这些数据有利于发现控制主要农艺性状的基因,促进豆类作物的遗传改良和功能基因研究,并为其他双结果实植物提供比较遗传资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61f0/8637744/ccdf647736bf/fpls-12-770660-g001.jpg

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