Impact of metal oxide nanoparticles on cotton (Gossypium hirsutum L.): a physiological perspective
Abstract Cotton production substantiated a crucial part in the escalating economic development of many countries. To realize the increasing global demand for cotton, the emphasis should be laid on to improve cotton fiber growth and production. The bioengineered transgenic cotton proved expedient in...
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doaj-5bb01e8b17884940abd1f11f9654219d2021-06-06T11:54:09ZengBMCJournal of Cotton Research2523-32542021-06-014111910.1186/s42397-021-00092-6Impact of metal oxide nanoparticles on cotton (Gossypium hirsutum L.): a physiological perspectiveRavinderdeep SINGH BRAR0Avneesh KUMAR1Simranjeet KAUR2Sandip SAHA3Anuj KUMAR4Sandeep KUMAR5Department of Chemistry, Akal UniversityDepartment of Botany, Akal UniversityDepartment of Botany, Akal UniversityDepartment of Chemistry, Akal UniversityIndian Agricultural Statistics InstituteDepartment of Chemistry, Akal UniversityAbstract Cotton production substantiated a crucial part in the escalating economic development of many countries. To realize the increasing global demand for cotton, the emphasis should be laid on to improve cotton fiber growth and production. The bioengineered transgenic cotton proved expedient in resolving inadequacies of conventional cotton, but still required improvements to encounter heightened demand of textile industries. One possible solution pertaining to this has been provided by nanoscience in the form of metal or metal oxide nanoparticles. These metal oxide nanoparticles have easy access to the various parts of cotton plants through its transportation system, and thus significantly influence several parameters relative to the growth and production of cotton fiber. This review summarizes the distribution and accumulation of metal oxide nanoparticles in cotton plant and its impact on different plant growth-promoting factors, which resulted in the improved cotton yields. Graphical abstract Metal/metal-oxide nanoparticles have easy access to the various parts of cotton plant through its transportation system, and thus significantly influence its growth parameters, and hence the production of cotton fiber. This review summarizes the distribution and accumulation of metal oxide nanoparticles in cotton plants, and its impact on different plant growth promoting factors.https://doi.org/10.1186/s42397-021-00092-6CottonBt-transgenicNanoparticlesMetal oxide nanoparticlesPhytohormonesSuperoxide dismutase |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ravinderdeep SINGH BRAR Avneesh KUMAR Simranjeet KAUR Sandip SAHA Anuj KUMAR Sandeep KUMAR |
spellingShingle |
Ravinderdeep SINGH BRAR Avneesh KUMAR Simranjeet KAUR Sandip SAHA Anuj KUMAR Sandeep KUMAR Impact of metal oxide nanoparticles on cotton (Gossypium hirsutum L.): a physiological perspective Journal of Cotton Research Cotton Bt-transgenic Nanoparticles Metal oxide nanoparticles Phytohormones Superoxide dismutase |
author_facet |
Ravinderdeep SINGH BRAR Avneesh KUMAR Simranjeet KAUR Sandip SAHA Anuj KUMAR Sandeep KUMAR |
author_sort |
Ravinderdeep SINGH BRAR |
title |
Impact of metal oxide nanoparticles on cotton (Gossypium hirsutum L.): a physiological perspective |
title_short |
Impact of metal oxide nanoparticles on cotton (Gossypium hirsutum L.): a physiological perspective |
title_full |
Impact of metal oxide nanoparticles on cotton (Gossypium hirsutum L.): a physiological perspective |
title_fullStr |
Impact of metal oxide nanoparticles on cotton (Gossypium hirsutum L.): a physiological perspective |
title_full_unstemmed |
Impact of metal oxide nanoparticles on cotton (Gossypium hirsutum L.): a physiological perspective |
title_sort |
impact of metal oxide nanoparticles on cotton (gossypium hirsutum l.): a physiological perspective |
publisher |
BMC |
series |
Journal of Cotton Research |
issn |
2523-3254 |
publishDate |
2021-06-01 |
description |
Abstract Cotton production substantiated a crucial part in the escalating economic development of many countries. To realize the increasing global demand for cotton, the emphasis should be laid on to improve cotton fiber growth and production. The bioengineered transgenic cotton proved expedient in resolving inadequacies of conventional cotton, but still required improvements to encounter heightened demand of textile industries. One possible solution pertaining to this has been provided by nanoscience in the form of metal or metal oxide nanoparticles. These metal oxide nanoparticles have easy access to the various parts of cotton plants through its transportation system, and thus significantly influence several parameters relative to the growth and production of cotton fiber. This review summarizes the distribution and accumulation of metal oxide nanoparticles in cotton plant and its impact on different plant growth-promoting factors, which resulted in the improved cotton yields. Graphical abstract Metal/metal-oxide nanoparticles have easy access to the various parts of cotton plant through its transportation system, and thus significantly influence its growth parameters, and hence the production of cotton fiber. This review summarizes the distribution and accumulation of metal oxide nanoparticles in cotton plants, and its impact on different plant growth promoting factors. |
topic |
Cotton Bt-transgenic Nanoparticles Metal oxide nanoparticles Phytohormones Superoxide dismutase |
url |
https://doi.org/10.1186/s42397-021-00092-6 |
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