Mapping and Functional Characterization of Stigma Exposed 1, a DUF1005 Gene Controlling Petal and Stigma Cells in Mungbean (Vigna radiata)
文献类型: 外文期刊
第一作者: Lin, Yun
作者: Lin, Yun;Chen, Jingbin;Yuan, Xingxing;Wu, Ranran;Chen, Xin;Laosatit, Kularb;Amkul, Kitiya;Somta, Prakit;Somta, Prakit
作者机构:
关键词: exposed stigma; floral structure; cell morphology; gene cloning; mungbean
期刊名称:FRONTIERS IN PLANT SCIENCE ( 影响因子:5.753; 五年影响因子:6.612 )
ISSN: 1664-462X
年卷期: 2020 年 11 卷
页码:
收录情况: SCI
摘要: Flowers with exposed stigma increase the outcrossing rate and are useful in developing improved hybrid crop cultivars. This exposure results mainly from the cellular morphology of the petal and pistil, but what affects the formation of the petal and pistil in the late developmental stages is less understood. Here, we characterized a novel floral mutant in mungbean (Vigna radiata), stigma exposed 1 (se1), which displays irregular petals and pistils. Floral organ initiation in the se1 mutant was normal, but petal and pistil growth malfunctioned during late development. A histological analysis revealed that the se1 mutant had wrinkled petals with knotted structures and elongated styles. The cellular morphology of the epidermal layers of the se1 petals was deformed, while the cell lengths in the styles increased. A genetic analysis indicated that the se1 phenotype is controlled by a single recessive gene, and it was mapped to chromosome 11. A sequence analysis suggested that a DUF1005-encoding gene, LOC106777793, is the gene controlling the se1 phenotype. The se1 mutant possessed a single-nucleotide polymorphism that resulted in an amino acid change in VrDUF1005. Overexpression of VrDUF1005 in Arabidopsis resulted in rolling leaves and reduced floral size. Consequently, we proposed that VrSE1 functions to modulate cell division in petals and cell expansion in styles during the late developmental stages in mungbean. The se1 mutant is a new genetic resource for mung bean hybrid breeding.
分类号:
- 相关文献
作者其他论文 更多>>
-
Construction of a high-density genetic map for yardlong bean and identification of ANT1 as a regulator of anthocyanin biosynthesis
作者:Zhang, Hongmei;Zhang, Wei;Liu, Xiaoqing;Chen, Xin;Chen, Huatao;Meng, Shan;Yan, Wei;Hui, Linchong;Chen, Wei
关键词:
-
Occurrence, distribution, and genetic diversity of faba bean viruses in China
作者:Li, Zongdi;Qin, Jiachao;Zhu, Yuxiang;Zhou, Mimi;Chen, Xin;Cui, Xiaoyan;Li, Zongdi;Zhao, Na;Zhou, Enqiang;Wang, Xuejun
关键词:faba bean; viruses; small RNA sequencing; incidence; distribution; genetic diversity; China
-
Neurotoxicity of Combined Exposure to the Heavy Metals (Pb and As) in Zebrafish (Danio rerio)
作者:Liu, Ming;Li, Guangyu;Liu, Haoling;Zuo, Junli;Zheng, Wenting;Luan, Ning;Deng, Ping;Cui, Wenwen;Zhang, Huixian;Chen, Xin;Yao, Jingjing;Peng, Xitian;Peng, Lijun;Liu, Jiao;Yan, Wei
关键词:zebrafish; heavy metals; co-exposure; neurotoxicity; neurotransmitter; HPI axis
-
Two genes encoding caffeoyl coenzyme A O-methyltransferase 1 (CCoAOMT1) are candidate genes for physical seed dormancy in cowpea (Vigna unguiculata (L.) Walp.)
作者:Laosatit, Kularb;Amkul, Kitiya;Somta, Prakit;Lin, Yun;Yuan, Xingxing;Chen, Xin
关键词:
-
Genome-Wide Association Study and Identification of Candidate Genes Associated with Seed Number per Pod in Soybean
作者:Wang, Qiong;Zhang, Wei;Xu, Wenjing;Zhang, Hongmei;Liu, Xiaoqing;Chen, Xin;Chen, Huatao;Chen, Huatao
关键词:soybean; seed number per pod; leaf characteristics; genome-wide association study; single nucleotide polymorphism
-
Comparative transcriptome analysis between two different cadmium-accumulating genotypes of soybean (Glycine max) in response to cadmium stress
作者:Liu, Xiaoqing;Zhang, Hongmei;Zhang, Wei;Jia, Qianru;Chen, Xin;Chen, Huatao
关键词:Cadmium; Differentially expressed genes; Soybean; Transcriptome
-
TMT-based quantitative proteomic analysis of serum from domestic sheep in early pregnancy
作者:Ren, Yujun;Wang, Zhunxuan;Huang, Tao;Yang, Min;Ren, Yujun;Wang, Zhunxuan;Sun, Yishan;Gong, Hongbin;Xie, Su;Gao, Ruonan;Chen, Xin;Li, Qingchun;Lu, Shihao;Huang, Tao;Yang, Min
关键词:early pregnancy; embryo implantation; PSMB4; reproductive; serum; sheep; tandem mass-tag labelling