Triacontanol delivery by nano star shaped polymer promoted growth in maize
文献类型: 外文期刊
第一作者: Jiang, Bingyao
作者: Jiang, Bingyao;Yang, Jia;Zhong, Xingyu;Li, Zhaohu;Zhou, Yuyi;Duan, Liusheng;Jiang, Bingyao;Yang, Jia;Zhong, Xingyu;Li, Zhaohu;Zhou, Yuyi;Duan, Liusheng;Yan, Shuo;Shen, Jie;Yan, Shuo;Shen, Jie;Yin, Meizhen;Lei, Bin;Duan, Liusheng
作者机构:
关键词: Maize; Nano -delivery; Plant growth regulator; Star polymer; Triacontanol
期刊名称:PLANT PHYSIOLOGY AND BIOCHEMISTRY ( 影响因子:6.1; 五年影响因子:6.2 )
ISSN: 0981-9428
年卷期: 2024 年 213 卷
页码:
收录情况: SCI
摘要: Plant Growth Regulators (PGRs) are functional compounds known for enhancing plant growth and development. However, their environmental impact is a concern due to poor water solubility and the need for substantial organic solvents. Recently, nano-delivery systems have emerged as a solution, offering a broad range of applications for small molecule compounds. This study introduces a nano-delivery system for Triacontanol (TA), utilizing a star polymer (SPc), aimed at promoting maize growth and improving physiological indicators. The system forms nearly spherical nanoparticles through TA's hydroxyl group and SPc's tertiary amine group. The TA/SPc nano-complex notably outperforms separate TA or SPc treatments in maize, increasing biomass, chlorophyll content, and nutrient absorption. It elevates chlorophyll content by 16.4%, 10.0%, and 6.2% over water, TA, and SPc treatments, respectively, and boosts potassium and nitrate ion uptake by up to 2 and 1.6 times compared to TA alone, leading to enhanced plant height and leaf growth. qRT-PCR analysis further demonstrated that the nano-complex enhanced cellular uptake through the endocytosis pathway by up-regulating endocytosisrelated gene expression. The employment of TEM to observe vesicle formation during the internalization of maize leaves furnishes corroborative evidence for the participation of the endocytosis pathway in this process. This research confirms that SPc is an effective carrier for TA, significantly enhancing biological activity and reducing TA dosage requirements.
分类号:
- 相关文献
作者其他论文 更多>>
-
ScNF-YC2, a protein interacting with ScABI3, is a transcription factor regulating abiotic stress response in Syntrichia caninervis
作者:Huang, Mingqi;Xiao, Jiangyuan;Fei, Fanzhen;Zhang, Yigong;Zhou, Xiaoyun;Lei, Bin
关键词:NF-YC2; ABI3; Syntrichia caninervis; Abiotic stress
-
A self-assembled multicomponent RNA nano-biopesticide for increasing the susceptibility of destructive bean flower thrips to insecticides via dsNrf2
作者:Zhao, Jiajia;Yin, Jiaming;Dong, Min;Shen, Jie;Yan, Shuo;Zhao, Jiajia;Wang, Zeng;Yin, Jiaming;Wei, Ying;Li, Mingshan;Dong, Min;Shen, Jie;Yan, Shuo;Ma, Zhongzheng;Yin, Meizhen
关键词:Co-delivery system; Drug adjuvant; Gene nanocarrier; Multicomponent RNA nano-biopesticide; Increased insecticide susceptibility
-
A 3 h, 1 km surface soil moisture dataset for the contiguous United States from 2015 to 2023
作者:Yang, Haoxuan;Yang, Jia;Zou, Chris B.;Ochsner, Tyson E.;Krueger, Erik S.;Xu, Mengyuan
关键词:
-
Nano-delivery platform with strong protection and efficient delivery: preparation of self-assembled RNA pesticide with dual RNAi targets against Apolygus lucorum
作者:Qiao, Heng;Zhao, Jing;Xiao, Liubin;Xu, Dejin;Xu, Guangchun;Tan, Yongan;Jiang, Qinhong;Shen, Jie;Yan, Shuo;Jiang, Qinhong;Shen, Jie;Yan, Shuo;Hao, Dejun;Zhu-Salzman, Keyan;Gu, Aiguo
关键词:
Apolygus lucorum ; Delivery system; Nanocarrier; RNA interference; RNA pesticide -
Preparation of a smart nano-herbicide MP@HLDP with strong permeability performance improves herbicidal activity while reducing the adverse impacts
作者:Deng, Xile;Dong, Zhichao;Bai, Lianyang;Deng, Xile;Dong, Zhichao;Bai, Lianyang;Wang, Zeng;Yin, Jiaming;Shen, Jie;Yan, Shuo;Dong, Zhichao
关键词:Enhanced bioactivity; HLDP; Nano-delivery system; Nano-pesticide; Strong adhesion performance
-
Novel furazanoazepines derivatives as SDH inhibitors: Design, synthesis and their fungicidal activities
作者:Ren, Xingyu;Pu, Jiangping;Fu, Hanghang;Zhang, Yibo;Jin, Lu;Pan, Le;Lei, Bin
关键词:Furazanoazepines derivatives; Antifungal activity; 3D-QASR; Molecular docking
-
The F-box protein RCN127 enhances rice tillering and grain yield by mediating the degradation of OsTB1 and OsTCP19
作者:Miao, Rong;Jiang, Ling;Wan, Jianmin;Wang, Xin;Feng, Miao;Cheng, Zhijun;Shao, Jiale;Zhou, Chunlei;Qian, Jinsheng;Luo, Yajing;Luo, Wenfan;Luo, Sheng;Lei, Bin;Liu, Xin;Li, Shuai;Ling, Yimin;Wang, Jian;Luo, Tong;Ren, Yulong;Lei, Cailin;Zhu, Shanshan;Zhao, Zhichao;Lin, Qibing;Wan, Jianmin;Jiang, Ling;Wan, Jianmin
关键词:rice (
Oryza sativa L.);RCN127 ; tillering; grain yield;OsTB1 ;OsTCP19