数字农科院2.0

Functional analysis of NtPDX2 in Nicotiana tabacum L. associated with stem development

文献类型: 外文期刊

作者: Xu, Li;Cui, Yuxin;Xing, Jiaxin;Mi, Qili;Wang, Zhixing;Wang, Xujing;Zeng, Wanli;Xiang, Haiying;Jiang, Jiarui;Deng, Lele;Wang, Kunmiao;Yang, Jiangtao;Gao, Qian

作者机构:

关键词: Nicotiana tabacum L.;plant height;stem thickness;vitamin B-6;NtPDX2

期刊名称: FRONTIERS IN PLANT SCIENCE

ISSN: 1664-462X

年卷期: 2025 年 16 卷

页码:

收录情况: SCIE(2025版)

摘要: Vitamin B-6 is a water-soluble vitamin that is essential for all living organisms in their life activities. Among its forms, pyridoxal 5'-phosphate (PLP) is the primary metabolically active form of Vitamin B-6, which usually plays a crucial role in the metabolism of proteins, fatty acids, and carbohydrates. To date, although the molecular functions of genes involved in vitamin B-6 biosynthesis, including Pdx1, Pdx2, Pdx3, and Sos4, have been reported in various plants, no studies have yet explored the functions of NtPDX1 and NtPDX2 in tobacco. This study used the Nicotiana tabacum L. as material to clone the CDS sequence of the NtPDXs. Through bioinformatics analysis, we predicted the phylogenetic relationships and functions of these genes; the subcellular localization of NtPDX2 was found to be in the cytoplasmic structures. By conducting both constitutive overexpression and homozygous knockout studies of the NtPDX2, we observed a significant increase in vitamin B-6 content in the stem tissues of overexpressing plants (up to 150%), while knockout plants showed a decrease to 60%. This led to changes in agronomic traits such as plant height and stem thickness in tobacco plants. The overexpressing plants exhibited a significant increase in height (100.93 cm) and stem thickness (13.64 cm), whereas the knockout plants were shorter in height (73.10 cm) and had thinner stems (10.83 cm). By integrating transcriptome sequencing technology with molecular biology methods, we aim to elucidate the molecular mechanisms underlying the role of NtPDX2 in tobacco growth and development, thereby providing new genetic resources and a theoretical foundation for the cultivation of new tobacco varieties with superior quality for flue-cured tobacco.

分类号:

  • 相关文献

[1]Genome-wide association analysis of wheat stem traits using 55K microarrays. Wei Wang,Na Sun,Kai Zhao,Ji Kun Song,Hui Fang,Guiqiang Fan,Yonghong Gao,Tianrong Huang,Yindeng Ding. 2025

[2]Light Quality Regulates Lateral Root Development in Tobacco Seedlings by Shifting Auxin Distributions. Meng, Lin,Song, Wenjing,Dong, Jianxin,Wang, Chengdong,Xu, Yimin,Wang, Shusheng,Meng, Lin,Liu, Shangjun,Zhang, Yali.

[3]Comprehensive transcriptome and WGCNA analysis reveals the potential function of anthocyanins in low-temperature resistance of a red flower mutant tobacco. Yinchao Zhang,Xiaoling Qu,Xiuchun Li,Min Ren,Ying Tong,Xiuming Wu,Yangyang Sun,Fengyan Wu,Aiguo Yang,Shuai Chen. 2023

[4]Water use efficiency, yield and quality of tobacco (Nicotiana tabacum L.) using negative pressure irrigation. Pingguo Yang,Patrick J. Drohan,Huai Yu Long,Miao Yang,Yun Bian,Erdeng Ma. 2022

[5]Ethylene Response Factor Nterf91 Positively R.egulates Alkaloid Accumulations In T obacco (Nicotiana Tabacum L.). Sui, XY, Zhang, HB, Song, ZB, Gao, YL, Li, WZ, Li, MY, Zhao, L, Li, YP, Wang, BW. 2019

[6]Identification and characterization of sub-group 4 R2R3-MYB members and their functions in phenylpropanoid and flavonoid regulation in tobacco. Zhang Y.,Li X.,Qu X.,Ren M.,Tong Y.,Wu X.,Sun Y.,Yang J.,Wu F.,Yang A.,Chen S.. 2024

[7]WGCNA revealed a comprehensive gene co-expression network associated with brown spot in Nicotiana tabacum L.. Zhan Shen,Zipeng Jiang,Yalin Bai,Yangyang Li,Chan Qiao,Caihong Jiang,Lirui Cheng,Yuanying Wang,Yinchao Zhang,Aiguo Yang,Dan Liu. 2025

[8]Transcriptome-hormone network analysis tentatively reveals a chalcone synthase 1-dependent pathway for tobacco mosaic virus resistance in tobacco. Fuxin Li,Min Ren,Lihua Li,Jiang Wu,Fengjie Wei,Xiaoling Qu,Ying Tong,Xiuming Wu,Yangyang Sun,Aiguo Yang,Shuai Chen,Yinchao Zhang. 2025

[9]Genome-wide identification of the MCU gene family and expression analysis during Ralstonia solanacearum infection in Nicotiana tabacum L. Deng, Lele,Sun, Yangyang,Wang, Zhaoyi,Yang, Wenwu,Gao, Qiao,Geng, Ruimei,Xiao, Zhiliang,Shai, Yanju,Xiang, Haiying,Yang, Aiguo,Chen, Zhiqiang,Li, Xuemei,Liu, Zhengwen,Ren, Min. 2025

[10]OsCD1 encodes a putative member of the cellulose synthase-like D sub-family and is essential for rice plant architecture and growth. Luan, Weijiang,Liu, Yuqin,Zhang, Fengxia,Song, Yuanli,Wang, Zhengying,Peng, Yongkang,Sun, Zongxiu.

[11]Control efficiency of leaf beetle, Ophraella communa, on the invasive common ragweed, Ambrosia artemisiifolia, at different growing stages. Zhou, Zhong-Shi,Zheng, Xing-Wen,Chen, Hong-Song,Wan, Fang-Hao,Zheng, Xing-Wen,Chen, Hong-Song,Luo, Yuan-Hua. 2011

[12]Modification of plant height via RNAi suppression of OsGA20ox2 gene in rice. Qiao, Feng,Yang, Qing,Wang, Chun-Lian,Fan, Ying-Lun,Wu, Xue-Feng,Zhao, Kai-Jun. 2007

[13]Association mapping of dynamic developmental plant height in common wheat. Zhang, Jianan,Hao, Chenyang,Ren, Qian,Chang, Xiaoping,Jing, Ruilian,Zhang, Jianan,Zhang, Jianan,Liu, Guiru.

[14]QTL mapping for developmental behavior of plant height in wheat (Triticum aestivum L.). Wang, Zhenghang,Ren, Qian,Li, Runzhi,Wang, Zhenghang,Wu, Xianshan,Ren, Qian,Chang, Xiaoping,Jing, Ruilian.

[15]Low-nitrogen stress tolerance and nitrogen agronomic efficiency among maize inbreds: comparison of multiple indices and evaluation of genetic variation. Li, Xinhai,Li, Mingshun,Zhang, Degui,Hao, Zhuanfang,Weng, Jianfeng,Xu, Yunbi,Bai, Li,Zhang, Shihuang,Xie, Chuanxiao,Wu, Yongshen,Liu, Wenguo,Xu, Yunbi,Xu, Yunbi.

[16]Morphological characters, inheritance and response to exogenous hormones of a cotton super-dwarf mutant of Gossypium hirsutum. Sun, J. -L.,Jia, Y. -H.,Wang, J.,Du, X. -M.,Zhang, C.,Xu, Z. -J..

[17]Genetic dissection of the developmental behaviours of plant height in wheat under diverse water regimes. Wu, Xianshan,Wang, Zhenghang,Chang, Xiaoping,Jing, Ruilian.

[18]A tandem segmental duplication (TSD) in green revolution gene Rht-D1b region underlies plant height variation. Li, Yiyuan,Xiao, Jianhui,Wu, Jiajie,Duan, Jialei,Liu, Yue,Ye, Xingguo,Zhang, Xin,Guo, Xiuping,Zhang, Lichao,Jia, Jizeng,Kong, Xiuying,Li, Yiyuan,Duan, Jialei,Gu, Yongqiang.

[19]Genetic gains in grain yield, net photosynthesis and stomatal conductance achieved in Henan Province of China between 1981 and 2008. Xia, X. C.,He, Z. H.,Zheng, T. C.,Yin, G. H.,Wang, L. N.,Han, Y. L.,Huang, F.,Tang, J. W.,Zhang, X. K.,Chen, L.,He, Z. H..

[20]The maize d2003, a novel allele of VP8, is required for maize internode elongation. Lv, Hongkun,Zheng, Jun,Wang, Tianyu,Fu, Junjie,Zhang, Xiang,Shi, Yunsu,Wang, Guoying,Huai, Junling,Min, Haowei,Tian, Baohua.

作者其他论文 更多>>