Map-Based Cloning and Characterization of Br-dyp1, a Gene Conferring Dark Yellow Petal Color Trait in Chinese Cabbage (Brassica rapa L. ssp. pekinensis)
文献类型: 外文期刊
第一作者: Yang, Shuangjuan
作者: Yang, Shuangjuan;Liu, Honglei;Zhao, Yanyan;Su, Henan;Wei, Xiaochun;Wang, Zhiyong;Zhao, Xiaobin;Zhang, Xiao-Wei;Yuan, Yuxiang;Yang, Shuangjuan;Liu, Honglei;Zhang, Xiao-Wei;Yuan, Yuxiang
作者机构:
关键词: Brassica rapa; flower color; dark yellow petal color; fine-mapping; breeding
期刊名称:FRONTIERS IN PLANT SCIENCE ( 影响因子:6.627; 五年影响因子:7.255 )
ISSN: 1664-462X
年卷期: 2022 年 13 卷
页码:
收录情况: SCI
摘要: Flower color is an important trait in Brassica species. However, genes responsible for the dark yellow flower trait in Chinese cabbage have not been reported. In this study, we identified a dark-yellow-flowered Chinese cabbage line SD369. Genetic analysis indicated that the dark yellow flower trait in SD369 was controlled by a single recessive locus, Br-dyp1 (dark yellow petal color 1 in Brassica rapa). Using bulked segregant RNA sequencing and kompetitive allele-specific PCR assays, Br-dyp1 was fine-mapped to an interval of 53.6 kb on chromosome A09. Functional annotation analysis, expression analysis, and sequence variation analysis revealed that Bra037130 (BraA09.ZEP), which encodes a zeaxanthin epoxidase, was the most likely candidate gene for Br-dyp1. Carotenoid profile analysis suggested that Bra037130 (BraA09.ZEP) might participate in the epoxidation from zeaxanthin to violaxanthin. The 679 bp insertion in dark yellow petal caused premature stop codon, thus caused the loss-of-function of the enzyme zeaxanthin epoxidase (ZEP), which disturbed the carotenoid metabolism, and caused the increased accumulation of total carotenoid, and finally converted the flower color from yellow to dark yellow. Comparative transcriptome analysis also showed that the "carotenoid biosynthesis" pathway was significantly enriched, and genes involved in carotenoid degradation and abscisic acid biosynthesis and metabolism were significantly downregulated. Furthermore, we developed and validated the functional marker Br-dyp1-InDel for Br-dyp1. Overall, these results provide insight into the molecular basis of carotenoid-based flower coloration in B. rapa and reveal valuable information for marker-assisted selection breeding in Chinese cabbage.
分类号:
- 相关文献
作者其他论文 更多>>
-
Deciphering the molecular and functional basis of TMexCD1: the plasmid-encoded efflux pump of resistance-nodulation-division superfamily
作者:Shang, Yan;Zhang, Ye;Wang, Ruimin;Peng, Yishu;Liu, Yuanxiang;Li, Chongzhou;Feng, Luhua;Liu, Honglei;Yang, Chunyu;Tang, Yajie;Shang, Yan;Ding, Bo;Ding, Bo
关键词:RND efflux pump; TMexD1; multidrug resistance; substrate-binding sites; loop 665-675
-
Polyploidization: A Biological Force That Enhances Stress Resistance
作者:Li, Xiaoying;Zhang, Luyue;Datta, Tanusree;Wei, Fang;Xie, Zhengqing;Li, Xiaoying;Wei, Xiaochun
关键词:polyploidy; stress resistance; abiotic stress; biotic stress
-
GhCKX1 is an important genetic target for improving fiber strength in cotton
作者:Wang, Xiao-yu;Zhang, Xiao-wei;Elsamman, Elameer;Gong, Ju-wu;Ge, Qun;Fan, Dao-ran;Yan, Hao-liang;Liu, Ai-ying;Fu, Guo-yong;Gong, Wan-kui;Shi, Yu-zhen;Wang, Xiao-yu;Elsamman, Elameer
关键词:Cotton; Fiber strength; Bulked segregant analysis; GhCKX1; Secondary cell wall
-
Fine mapping and candidate gene analysis of CRA8.1.6, which confers clubroot resistance in turnip (Brassica rapa ssp. rapa)
作者:Wei, Xiaochun;Xiao, Shixiong;Zhao, Yanyan;Yang, Shuangjuan;Su, Henan;Zhang, Wenjing;Wang, Zhiyong;Yuan, Yuxiang;Zhang, Xiaowei;Wei, Xiaochun;Xiao, Shixiong;Zhang, Luyue;Tian, Baoming;Wei, Fang;Nath, Ujjal Kumar
关键词:turnip; clubroot; fine mapping; C-terminal; CRA08-InDel
-
AcEXPA1, an α-expansin gene, participates in the aluminum tolerance of carpetgrass (Axonopus compressus) through root growth regulation
作者:Li, Jifu;Wang, Linjie;Chen, Zhijian;Li, Jifu;Chen, Zhijian;Liu, Liting;Wang, Zhiyong;Rao, Idupulapati M.
关键词:Axonopus compressus; Aluminum toxicity; Composite plants; Transgenic hairy roots; Expansin
-
The quality evaluation of 30 Asparagus officinalis L. varieties
作者:Gao, Rui;Liu, Pingxiang;Gao, Lei;Bi, Jingxiu;Jiang, Yuying;Wang, Yutao;Li, Guanghui;Liu, Honglei;Wang, Yutao
关键词:Asparagus officinalis L.; comprehensive evaluation; flavonoids; free amino acids; protodioscin; rutin
-
Cytological and transcriptomic analyses provide insights into the pollen fertility of synthetic allodiploid Brassica juncea hybrids
作者:Wang, Boyang;Liang, Niannian;Shen, Xiaohan;Xie, Zhengqing;Zhang, Luyue;Tian, Baoming;Guo, Jialin;Wei, Fang;Wang, Boyang;Liang, Niannian;Yuan, Yuxiang;Zhang, Xiaowei;Wei, Xiaochun
关键词:Interspecific hybridization; Meiosis; Mitosis; Pollen; Transcriptome; Brassica juncea