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The complexity of structural variations in Brassica rapa revealed by assembly of two complete T2T genomes

两个端到端无缺口基因组的完整组装揭示了Brassica rapa中复杂的结构变异

作     者:Yifan Zhou Hanzhe Ye Enwei Liu Jingjing Tian Liping Song Zhiyong Ren Man Wang Zhenghui Sun Liguang Tang Zhongyue Ren Jinquan Li Qijun Nie Aihua Wang Kun Wang 周一凡;叶瀚哲;刘恩纬;田京京;宋莉萍;任志勇;王蔓;孙征辉;汤利光;任中月;李金泉;聂启军;汪爱华;王坤

作者机构:State Key Laboratory of Hybrid RiceHubei Hongshan LaboratoryCollege of Life SciencesWuhan UniversityWuhan 430072China Wuhan Vegetable Research InstituteWuhan Academy of Agricultural SciencesWuhan 430045China Institute of Economic CropsHubei Academy of Agricultural SciencesWuhan 430064China Institute for Advanced StudiesWuhan UniversityWuhan 430072China RNA InstituteWuhan UniversityWuhan 430072China 

出 版 物:《Science Bulletin》 (科学通报(英文版))

年 卷 期:2024年第69卷第15期

页      面:2346-2351页

核心收录:

学科分类:09[农学] 0902[农学-园艺学] 090202[农学-蔬菜学] 

基  金:supported by Hubei Provincial Key R&D Program (2021BBA102) Hubei Provincial Natural Science Foundation of China (2021CFA055 and 2021BBA102) to Kun Wang The Science and Technology support project of rural Vitalization in Hubei Province (2022BBA121) to Aihua Wang and Liping Song 

主  题:structural proximity assembly 

摘      要:Brassica has long been of paramount importance to agriculture and human nutrition. Among the Brassica genus, Brassica rapa,the AA diploid, stands out as a prominent representative, valued for its versatility both as a vegetable and oil crop and its genetic proximity to other Brassica species. Economically, B. rapa plays an important role in the food industry, contributing to 12%of the global edible oil supply and 10%of vegetable yield [1].

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