Nano-Selenium: A Green Promising Approach against Abiotic Stresses in Plants

被引:7
作者
Fatima, Mariam [1 ]
Maqbool, Asia [2 ]
Sardar, Rehana [3 ]
Maqsood, Muhammad Faisal [4 ]
Zulfiqar, Usman [5 ]
机构
[1] Univ Punjab, Inst Bot, Lahore 54590, Pakistan
[2] Hebei Agr Univ, Dept Hort, Baoding, Peoples R China
[3] Emerson Univ, Dept Bot, Multan, Pakistan
[4] Islamia Univ Bahawalpur, Dept Bot, Bahawalpur, Pakistan
[5] Islamia Univ Bahawalpur, Fac Agr & Environm, Dept Agron, Bahawalpur 63100, Pakistan
关键词
Nano-technology; Nano-particles; Selenium; Abiotic Stress; Plant Growth; LEAF EXTRACT; ANTIMICROBIAL ACTIVITIES; POTENTIAL APPLICATIONS; ANTIOXIDANT ENZYMES; FOLIAR APPLICATION; MEDIATED SYNTHESIS; NANOPARTICLES; BIOSYNTHESIS; L; PHOTOSYNTHESIS;
D O I
10.1007/s42729-024-01956-x
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Nanotechnology is an emerging and innovative field with potential to sustain agriculture against abiotic stress. Various nanoparticles with ultrafine structure and size range of 1-100 nm used in promoting crop production. Earlier studies have demonstrated that selenium nanoparticles (SeNPs) help plants to endure abiotic induced growth inhibition. SeNPs can be synthesized by different methods such as physical, chemical and biological. However biosynthesized SeNP are cost effective, biocompatible and nontoxic in nature and can be used as an alternative approach compare to conventional in controlling abiotic stress induce problems in plants. This review focus on classification of nanoparticles, mechanism and biological synthesis of SeNPs, application methods and action potential on the growth, development and immune responses of plant. It aims to elucidate its effects on plants under salinity, heavy metals, drought and cold stresses and to find its effects on plant genomics. The effects, translocation and accumulation of SeNPs have been documented at various developmental stages of plant growth and metabolism depending on plant physiology, particle size and stress severity. It also discusses the applications of SeNPs on abiotic stresses susceptible plants. We have concluded that SeNPs via different modes of applications have promising effect in promoting plant growth and yield by improving germination of seeds and seedling growth, enhancing antioxidant enzymatic activity, reducing oxidative damage, regulating molecular responses, inducing photosynthetic efficiency and activating genes to resist against stresses. We emphasize that further research is needed to interpret the involvement of physiological and morphological mechanisms activation by nanoparticles implications against environmental stresses.
引用
收藏
页码:6000 / 6023
页数:24
相关论文
共 204 条
[21]   Nanoscale copper in the soil-plant system - toxicity and underlying potential mechanisms [J].
Anjum, Naser A. ;
Adam, Vojtech ;
Kizek, Rene ;
Duarte, Armando C. ;
Pereira, Eduarda ;
Iqbal, Muhammad ;
Lukatkin, Alexander S. ;
Ahmad, Iqbal .
ENVIRONMENTAL RESEARCH, 2015, 138 :306-325
[22]   Selenium Nanoparticles Improve Physiological and Phytochemical Properties of Basil (Ocimum basilicum L.) under Drought Stress Conditions [J].
Asghari, Javad ;
Mahdavikia, Hassan ;
Rezaei-Chiyaneh, Esmaeil ;
Banaei-Asl, Farzad ;
Machiani, Mostafa Amani ;
Harrison, Matthew Tom .
LAND, 2023, 12 (01)
[23]  
Ashraf Ganjouii F., 2023, J. Plant Process Funct, V11, P65
[24]   The toxicity of nanoparticles and their interaction with cells: an in vitro metabolomic perspective [J].
Awashra, Mohammad ;
Mlynarz, Piotr .
NANOSCALE ADVANCES, 2023, 5 (10) :2674-2723
[25]   Chitosan-selenium nanoparticles (Cs-Se NPs) modulate the photosynthesis parameters, antioxidant enzymes activities and essential oils in Dracocephalum moldavica L. under cadmium toxicity stress [J].
Azimi, Fatemeh ;
Oraei, Mehdi ;
Gohari, Gholamreza ;
Panahirad, Sima ;
Farmarzi, Ali .
PLANT PHYSIOLOGY AND BIOCHEMISTRY, 2021, 167 :257-268
[26]   Foliar-applied selenium nanoparticles alleviate cadmium stress through changes in physio-biochemical status and essential oil profile of coriander (Coriandrum sativum L.) leaves [J].
Babashpour-Asl, Marzieh ;
Farajzadeh-Memari-Tabrizi, Elnaz ;
Yousefpour-Dokhanieh, Afsaneh .
ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 2022, 29 (53) :80021-80031
[27]   Biosynthesis of selenium nanoparticles by Aspergillus flavus and Candida albicans for antifungal applications [J].
Bafghi, Mahdi Hosseini ;
Darroudi, Majid ;
Zargar, Mohsen ;
Zarrinfar, Hossein ;
Nazari, Razieh .
MICRO & NANO LETTERS, 2021, 16 (14) :656-669
[28]   Uses of Selenium Nanoparticles in the Plant Production [J].
Bano, Iqra ;
Skalickova, Sylvie ;
Sajjad, Hira ;
Skladanka, Jiri ;
Horky, Pavel .
AGRONOMY-BASEL, 2021, 11 (11)
[29]   Ascorbic acid and selenium nanoparticles synergistically interplay in chromium stress mitigation in rice seedlings by regulating oxidative stress indicators and antioxidant defense mechanism [J].
Basit, Farwa ;
Abbas, Saghir ;
Zhu, Mengjin ;
Tanwir, Kashif ;
El-Keblawy, Ali ;
Sheteiwy, Mohamed Salah ;
Raza, Ali ;
Hu, Jin ;
Hu, Weimin ;
Guan, Yajing .
ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 2023, 30 (57) :120044-120062
[30]   RETRACTED: Interaction between zinc and selenium bio-fortification and toxic metals (loid) accumulation in food crops [J].
Bayanati, Mina ;
Al-Tawaha, Abdel Rahman ;
Al-Taey, Duraid ;
Al-Ghzawi, Abdul Latief ;
Abu-Zaitoon, Yousef M. ;
Shawaqfeh, Samar ;
Al-Zoubi, Omar ;
Al-Ramamneh, Ezz Al-Dein ;
Alomari, Laith ;
Al-Tawaha, Abdel Razzaq ;
Dey, Abhijit .
FRONTIERS IN PLANT SCIENCE, 2022, 13