Fine mapping and candidate gene analysis of a major QTL for oil content in the seed of Brassica napus

被引:0
作者
Zhao, Qing [1 ]
Wu, Jian [2 ]
Lan, Lei [1 ]
Shahid, Muhammad [1 ]
Qasim, Muhammad Uzair [1 ]
Yu, Kaidi [1 ]
Zhang, Chunyu [1 ]
Fan, Chuchuan [1 ]
Zhou, Yongming [1 ]
机构
[1] Huazhong Agr Univ, Natl Key Lab Crop Genet Improvement, Wuhan, Peoples R China
[2] Yangzhou Univ, Key Lab Plant Funct Genom, Minist Educ, Yangzhou, Peoples R China
关键词
QUANTITATIVE TRAIT LOCUS; LINKAGE; ACCUMULATION; ASSOCIATION; QUALITY; GENOME; IDENTIFICATION;
D O I
10.1007/s00122-023-04501-z
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Brassica napus is one of the most important oil crops in the world, and enhancing seed oil content is an important goal in its genetic improvement. However, the underlying genetic basis for the important trait remains poorly understood in this crop. We previously identified a major locus, OILA5 responsible for seed oil content on chromosome A5 through genome-wide association study. To better understand the genetics of the QTL, we performed fine mapping of OILA5 with a double haploid population and a BC3F2 segregation population consisting of 6227 individuals. We narrowed down the QTL to an approximate 43 kb region with twelve annotated genes, flanked by markers ZDM389 and ZDM337. To unveil the potential candidate gene responsible for OILA5, we integrated fine mapping data with transcriptome profiling using high and low oil content near-isogenic lines. Among the candidate genes, BnaA05G0439400ZS was identified with high expression levels in both seed and silique tissues. This gene exhibited homology with AT3G09840 in Arabidopsis that was annotated as cell division cycle 48. We designed a site-specific marker based on resequencing data and confirmed its effectiveness in both natural and segregating populations. Our comprehensive results provide valuable genetic information not only enhancing our understanding of the genetic control of seed oil content but also novel germplasm for advancing high seed oil content breeding in B. napus and other oil crops.
引用
收藏
页数:15
相关论文
共 50 条
  • [31] A major QTL on chromosome C05 significantly reduces acid detergent lignin (ADL) content and increases seed oil and protein content in oilseed rape (Brassica napus L.)
    Behnke, Nina
    Suprianto, Edy
    Moellers, Christian
    [J]. THEORETICAL AND APPLIED GENETICS, 2018, 131 (11) : 2477 - 2492
  • [32] Integrative QTL Identification, Fine Mapping and Candidate Gene Analysis of a Major Locus qLTG3a for Seed Low-Temperature Germinability in Rice
    Pan, Zhaoyuan
    Tan, Bin
    Cao, Guiyuan
    Zheng, Rongqi
    Liu, Meng
    Zeng, Ruizhen
    Wang, Shaokui
    Zhu, Haitao
    Ye, Heng
    Zhao, Guangmiao
    Cao, Wei
    Liu, Guifu
    Zhang, Guiquan
    Zhou, Yuliang
    [J]. RICE, 2021, 14 (01)
  • [33] Joint QTL mapping and transcriptome sequencing analysis reveal candidate flowering time genes in Brassica napus L
    Jian, Hongju
    Zhang, Aoxiang
    Ma, Jinqi
    Wang, Tengyue
    Yang, Bo
    Shuang, Lan Shuan
    Liu, Min
    Li, Jiana
    Xu, Xinfu
    Paterson, Andrew H.
    Liu, Liezhao
    [J]. BMC GENOMICS, 2019, 20 (1)
  • [34] Genetic Study and QTL Mapping of Seed Glucosinolate Content in Brassica rapa L.
    Rahman, Habibur
    Kebede, Berisso
    Zimmerli, Celine
    Yang, Rong-Cai
    [J]. CROP SCIENCE, 2014, 54 (02) : 537 - 543
  • [35] QTL mapping and candidate gene mining for soybean seed weight per plant
    Yu, Meng
    Liu, Zhangxiong
    Jiang, Shanshan
    Xu, Ning
    Chen, Qingshan
    Qi, Zhaoming
    Lv, Wenhe
    [J]. BIOTECHNOLOGY & BIOTECHNOLOGICAL EQUIPMENT, 2018, 32 (04) : 908 - 914
  • [36] The identification and mapping of candidate genes and QTL involved in the fatty acid desaturation pathway in Brassica napus
    A. M. Smooker
    R. Wells
    C. Morgan
    F. Beaudoin
    K. Cho
    F. Fraser
    I. Bancroft
    [J]. Theoretical and Applied Genetics, 2011, 122 : 1075 - 1090
  • [37] The identification and mapping of candidate genes and QTL involved in the fatty acid desaturation pathway in Brassica napus
    Smooker, A. M.
    Wells, R.
    Morgan, C.
    Beaudoin, F.
    Cho, K.
    Fraser, F.
    Bancroft, I.
    [J]. THEORETICAL AND APPLIED GENETICS, 2011, 122 (06) : 1075 - 1090
  • [38] Genetic dissection of seed oil and protein content and identification of networks associated with oil content in Brassica napus
    Chao, Hongbo
    Wang, Hao
    Wang, Xiaodong
    Guo, Liangxing
    Gu, Jianwei
    Zhao, Weiguo
    Li, Baojun
    Chen, Dengyan
    Raboanatahiry, Nadia
    Li, Maoteng
    [J]. SCIENTIFIC REPORTS, 2017, 7
  • [39] High-density ddRAD linkage and yield-related QTL mapping delimits a chromosomal region responsible for oil content in rapeseed (Brassica napus L.)
    Chen, Jun
    Wang, Bo
    Zhang, Yueli
    Yue, Xiaopeng
    Li, Zhaohong
    Liu, Kede
    [J]. BREEDING SCIENCE, 2017, 67 (03) : 296 - 306
  • [40] Unconditional and conditional QTL analyses of seed fatty acid composition in Brassica napus L.
    Chen, Feng
    Zhang, Wei
    Yu, Kunjiang
    Sun, Lijie
    Gao, Jianqin
    Zhou, Xiaoying
    Peng, Qi
    Fu, Sanxiong
    Hu, Maolong
    Long, Weihua
    Pu, Huiming
    Chen, Song
    Wang, Xiaodong
    Zhang, Jiefu
    [J]. BMC PLANT BIOLOGY, 2018, 18