数字农科院2.0

Identification of BoFLC2 as a major gene controlling flowering time in cabbage (Brassica oleracea var. capitata)

文献类型: 外文期刊

作者: Jia Wei Hou;Xu Cai;Yihan Xu;Jungen Kang;Xiaowu Wang;Jian Wu

作者机构:

关键词: BoFLC2;BSA-seq;Cabbage;Fine mapping;Flowering time;RNA-seq

期刊名称: Scientia Horticulturae

ISSN: 0304-4238

年卷期: 2025 年 351 卷

页码:

收录情况: SCIE(2025版)

摘要: Cabbage (Brassica oleracea var. capitata), a world-widely cultivated leafy vegetable, is characterized by its dense-leaved head formation. Premature bolting, where flowering occurs before head formation significantly reduces cabbage quality and yield. In this study, we employed bulked segregant analysis (BSA) and linkage analysis to identify the quantitative trait loci (QTL) associated with flowering time variation in cabbage. Our analysis revealed a major QTL - designed as qFT2.1, located on chromosome C02. The QTL spans a 12.8 kb region that encompasses five genes. Further analysis identified BoFLC2 (an ortholog of AtFLC) as the candidate gene for qFT2.1. Comparative sequence analysis revealed a 215 bp-insertion in the first intron of BoFLC2 in the early-flowering parental line, along with a 3 bp-insertion and three missense mutations in the second exon. RNA-sequencing revealed that BoFLC2 expression in non-flowering individuals (extremely late flowering) was significantly higher than that in the early-flowering individuals. Analysis of the BoFLC2 sequence across 37 published B. oleracea genomes revealed six haplotypes that are likely associated with flowering time domestication in B. oleracea. Our results suggest that BoFLC2 as a major regulator in flowering time control, has been under selection during the domestication of B. oleracea.

分类号:

  • 相关文献

[1]BSA-Seq结合RNA-Seq技术挖掘大豆叶片提前黄化衰老基因. 李世宽,洪慧龙,付佳祺,谷勇哲,孙如建,邱丽娟. 2023

[2]基于BSA-seq和RNA-seq挖掘水稻株高相关QTL. 吴元明,林佳怡,柳雨汐,李丹婷,张宗琼,郑晓明,逄洪波. 2023

[3]基于BSA-seq和RNA-seq挖掘桃单果重性状候选基因. 别航灵,杜嘉怡,陈昌文,方伟超,王力荣,曹珂. 2025

[4]Genetic analysis and identification of major locus and candidate genes linked to thousand-seed weight in flax (Linum usitatissimum). Yanni Qi,Limin Wang,Wenjuan Li,Zhao Dang,Wei Zhao,Ping Wang,Yaping Xie,Chenmeng Xu,Yan Wang,Jianping Zhang,Wei Wang. 2025

[5]Genetic dissection of a major locus SC9.1 conferring seed color in broomcorn millet (Panicum miliaceum). Tianpeng Liu,Kongjun Dong,Jihong He,Mei Wang,Ruiyu Ren,Lei Zhang,Yawei Li,Minxuan Liu,Tianyu Yang. 2025

[6]Fine mapping of BoGL1, a gene controlling the glossy green trait in cabbage (Brassica oleracea L. Var. capitata). Liu, Dongming,Ye, Zhibiao,Liu, Dongming,Tang, Jun,Liu, Zezhou,Dong, Xin,Zhuang, Mu,Zhang, Yangyong,Lv, Honghao,Sun, Peitian,Liu, Yumei,Li, Zhansheng,Fang, Zhiyuan,Yang, Limei.

[7]Hybrid lethality caused by two complementary dominant genes in cabbage (Brassica oleracea L.). Hu, Yang,Xue, Yu-qian,Liu, Ji-sheng,Fang, Zhi-yuan,Yang, Li-mei,Zhang, Yang-yong,Lv, Hong-hao,Liu, Yu-mei,Li, Zhan-sheng,Zhuang, Mu.

[8]Fine mapping and identification of the downy mildew resistance gene BoDMR2 in Cabbage (Brassica oleracea L. var. capitata). Yuankang Wu,Bin Zhang,Limei yang,Mu zhuang,Honghao Lv,Yong wang,Jialei Ji,Xilin Hou,Yangyong Zhang. 2024

[9]Identification of core candidate genes responding to Verticillium wilt (Verticillium dahliae) in cotton via integrated methods. Zengqiang Zhao,Guoli Zhang,Hang Yu,Guoqing Sun,Jianbo Zhu. 2025

[10]Function Analysis of a Maize Endo-1,4-β-xylanase Gene ZmHSL in Response to High-Temperature Stress. Shengyan Pang,Hongyan Zheng,Jiankui Zhang,Xiaotian Ren,Xuefeng Zong,Junjie Zou,Lei Wang. 2024

[11]RAD-Seq-Based High-Density Linkage Maps Construction and Quantitative Trait Loci Mapping of Flowering Time Trait in Alfalfa (Medicago sativa L.). Jiang, Xueqian,Yang, Tianhui,Zhang, Fan,Yang, Xijiang,Yang, Changfu,He, Fei,Long, Ruicai,Gao, Ting,Jiang, Yiwei,Yang, Qingchuan,Wang, Zhen,Kang, Junmei. 2022

[12]Integration of GWAS, linkage analysis and transcriptome analysis to reveal the genetic basis of flowering time-related traits in maize. Xun Wu,Ying Liu,Xuefeng Lu,Liang Tu,Yuan Gao,Dong Wang,Shuang Guo,Yifei Xiao,Pingfang Xiao,Xiangyang Guo,Angui Wang,Pengfei Liu,Yunfang Zhu,Lin Chen,Zehui Chen. 2023

[13]Population-level gene expression can repeatedly link genes to functions in maize. Torres-Rodriguez, J. Vladimir,Li, Delin,Turkus, Jonathan,Newton, Linsey,Davis, Jensina,Lopez-Corona, Lina,Ali, Waqar,Sun, Guangchao,Mural, Ravi V.,Grzybowski, Marcin W.,Zamft, Bradley M.,Thompson, Addie M.,Schnable, James C.. 2024

[14]马铃薯短花药基因sa1的定位与候选基因预测. 王 培,,唐 蝶,,李玉梅,,杨中敏,,祝光涛,,黄三文,,张春芝. 2019

[15]马铃薯红色薯肉调控基因的精细定位与候选基因分析. 许芸梅,,李玉梅,,贾玉鑫,,张春芝,,李灿辉,,黄三文,,祝光涛. 2019

[16]基于BSA-seq技术对豌豆花色基因的精细定位. 严昕,项超,刘荣,李冠,李孟伟,李正丽,宗绪晓,杨涛. 2022

[17]棉花籽指数量性状位点(QTL)的初步定位. 李蓓,姚金波,李燕,朱守鸿,房圣涛,陈伟,张永山. 2022

[18]大豆红色种皮的色素鉴定和基因定位. 曹杰,谷勇哲,洪慧龙,吴海涛,张霞,孙建强,包立高,邱丽娟. 2023

[19]水稻柱头外露率主效QTL qTSE4的定位. 何晓娟,万华,高俊文,顾伟航,谢振威,赵志刚,万建民. 2022

[20]棉花功能基因图位克隆的研究进展. 臧新山,王康文,张先亮,王雪平,王军,梁雨,裴小雨,任翔,吕宇龙,高宇,王星星,彭云玲,马雄风. 2023

作者其他论文 更多>>