Two soybean homologues of TERMINAL FLOWER 1 control flowering time under long day conditions

被引:2
|
作者
Lingshuang Wang [1 ]
Chun Lin [2 ]
Bohui Li [1 ]
Tong Su [1 ]
Shichen Li [1 ]
Haiyang Li [3 ]
Fanglei He [2 ]
Chuanjie Gou [1 ]
Zheng Chen [1 ]
Yanan Wang [1 ]
Jun Qin [4 ]
Baohui Liu [1 ]
Fanjiang Kong [1 ]
Lin Yue [1 ]
Sijia Lu [1 ]
Chao Fang [1 ]
机构
[1] Guangdong Key Laboratory of Plant Adaptation and Molecular Design, Guangzhou Key Laboratory of Crop Gene Editing, Innovative Center of Molecular Genetics and Evolution, School of Life Sciences, Guangzhou University
[2] College of Agriculture and Biotechnology, Yunnan Agricultural University
[3] National Key Laboratory of Crop Genetics and Germplasm Enhancement, National Center for Soybean Improvement, Jiangsu Collaborative Innovation Center for Modern Crop Production, Nanjing Agricultural University
[4] Institute of Cereal & Oil Crop, Hebei Academy of Agricultural and Forestry Sciences, Key Laboratory of Crop Genetics and Breeding of Hebei
基金
中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
S565.1 [大豆];
学科分类号
0901 ;
摘要
Flowering time is a key agronomic trait that directly affect the adaptation and yield of soybean. After whole genome duplications, about 75% of genes being represented by multiple copies in soybean.There are four TERMINAL FLOWER 1(TFL1) genes in soybean, and the TFL1b(Dt1) has been characterized as the determinant of stem growth habit. The function of other TFL1 homologs in soybean is still unclear.Here, we generated knockout mutants by CRISPR/Cas9 genome editing technology and found that the tfl1c/tfl1d double mutants flowered significantly earlier than wild-type plants. We investigated that TFL1c and TFL1d could physically interact with the b ZIP transcription factor FDc1 and bind to the promoter of APETALA1a(AP1a). RNA-seq and q RT-PCR analyses indicated that TFL1c and TFL1d repressed the expressions of the four AP1 homologs and delayed the flowering time in soybean. The two genes play important roles in the regulation of flowering time in soybean and mainly act as the flowering inhibitors under long-day conditions. Our results identify novel components in the flowering-time regulation network of soybean and will be invaluable for molecular breeding of improved soybean yield.
引用
收藏
页码:704 / 712
页数:9
相关论文
共 50 条
  • [11] Loss of Function of the E1-Like-b Gene Associates With Early Flowering Under Long-Day Conditions in Soybean
    Zhu, Jianghui
    Takeshima, Ryoma
    Harigai, Kohei
    Xu, Meilan
    Kong, Fanjiang
    Liu, Baohui
    Kanazawa, Akira
    Yamada, Tetsuya
    Abe, Jun
    FRONTIERS IN PLANT SCIENCE, 2019, 9
  • [12] Soybean WRINKLED1 protein GmWRI1a promotes flowering under long-day conditions via regulating expressions of flowering-related genes
    Wang, Zhikun
    Xing, Siqi
    Li, Meng
    Zhang, Qingyan
    Yang, Qiang
    Xu, Pengfei
    Song, Bo
    Shang, Ping
    Yang, Mingming
    Du, Changhuan
    Chen, Jihan
    Liu, Shanshan
    Zhang, Shuzhen
    PLANT SCIENCE, 2023, 337
  • [13] DETERMINATE and LATE FLOWERING are two TERMINAL FLOWER1/CENTRORADIALIS homologs that control two distinct phases of flowering initiation and development in pea
    Foucher, F
    Morin, J
    Courtiade, J
    Cadioux, S
    Ellis, N
    Banfield, MJ
    Rameau, C
    PLANT CELL, 2003, 15 (11): : 2742 - 2754
  • [14] GhSWEET42 Regulates Flowering Time under Long-Day Conditions in Arabidopsis thaliana
    Du, Mengxue
    Wang, Deying
    Li, Jingyu
    Zhu, Taotao
    Lyu, Peng
    Li, Gang
    Ding, Yi
    Liu, Xinxin
    Men, Qingmei
    Li, Xiaofei
    Sun, Yongwang
    Meng, Lingzhi
    Guo, Shangjing
    PLANTS-BASEL, 2024, 13 (16):
  • [15] Mutations of Two Florigen Genes have Different Effects on Controlling Flowering Time in Rice Under Natural Long-Day Conditions
    Hu, Yanjuan
    Wang, Shiyu
    Zhao, Chunyu
    Wei, Jialong
    Yan, Bowen
    Wang, Xiaoxue
    JOURNAL OF PLANT GROWTH REGULATION, 2024, 43 (11) : 4248 - 4262
  • [16] GmTCP40 Promotes Soybean Flowering under Long-Day Conditions by Binding to the GmAP1a Promoter and Upregulating Its Expression
    Zhang, Lixin
    Wang, Peiguo
    Wang, Miao
    Xu, Xin
    Jia, Hongchang
    Wu, Tingting
    Yuan, Shan
    Jiang, Bingjun
    Sun, Shi
    Han, Tianfu
    Wang, Liwei
    Chen, Fulu
    BIOMOLECULES, 2024, 14 (04)
  • [17] Molecular basis of flowering under natural long-day conditions in Arabidopsis
    Song, Young Hun
    Kubota, Akane
    Kwon, Michael S.
    Covington, Michael F.
    Lee, Nayoung
    Taagen, Ella R.
    Cintron, Dianne Laboy
    Hwang, Dae Yeon
    Akiyama, Reiko
    Hodge, Sarah K.
    Huang, He
    Nguyen, Nhu H.
    Nusinow, Dmitri A.
    Millar, Andrew J.
    Shimizu, Kentaro K.
    Imaizumi, Takato
    NATURE PLANTS, 2018, 4 (10) : 824 - 835
  • [18] Molecular basis of flowering under natural long-day conditions in Arabidopsis
    Young Hun Song
    Akane Kubota
    Michael S. Kwon
    Michael F. Covington
    Nayoung Lee
    Ella R. Taagen
    Dianne Laboy Cintrón
    Dae Yeon Hwang
    Reiko Akiyama
    Sarah K. Hodge
    He Huang
    Nhu H. Nguyen
    Dmitri A. Nusinow
    Andrew J. Millar
    Kentaro K. Shimizu
    Takato Imaizumi
    Nature Plants, 2018, 4 : 824 - 835
  • [19] Inheritance of late flowering in natural variants of soybean cultivars under short-day conditions
    Carpentieri-Pipolo, Valeria
    de Almeida, Leones Alves
    de Souza Kiihl, Romeu Afonso
    Pagliosa, Eduardo Stefani
    PESQUISA AGROPECUARIA BRASILEIRA, 2014, 49 (10) : 796 - 803
  • [20] Genetic Transformation of Japanese Persimmon with FLOWERING LOCUS T (FT) Gene and TERMINAL FLOWER 1 (TFL1) Homologues Gene
    Gao , M.
    Takeishi, H.
    Katayama, A.
    Tao, R.
    V INTERNATIONAL SYMPOSIUM ON PERSIMMON, 2013, 996 : 159 - 164