Cargando…

BioClay nanosheets infused with GA3 ameliorate the combined stress of hexachlorobenzene and temperature extremes in Brassica alboglabra plants

Environmental pollutants and climate change are the major cause of abiotic stresses. Hexachlorobenzene (HCB) is an airborne and aero-disseminated persistent organic pollutants (POP) molecule causing severe health issues in humans, and temperature extremes and HCB in combination severely affect the g...

Descripción completa

Detalles Bibliográficos
Autores principales: Ahmad, Aqeel, Khan, Tanveer Alam, Shahzad, Sharoon, Ullah, Sami, Shahzadi, Iqra, Ali, Aamir, Akram, Waheed, Yasin, Nasim Ahmad, Yusuf, Mohammad
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9583914/
https://www.ncbi.nlm.nih.gov/pubmed/36275566
http://dx.doi.org/10.3389/fpls.2022.964041
_version_ 1784813173579186176
author Ahmad, Aqeel
Khan, Tanveer Alam
Shahzad, Sharoon
Ullah, Sami
Shahzadi, Iqra
Ali, Aamir
Akram, Waheed
Yasin, Nasim Ahmad
Yusuf, Mohammad
author_facet Ahmad, Aqeel
Khan, Tanveer Alam
Shahzad, Sharoon
Ullah, Sami
Shahzadi, Iqra
Ali, Aamir
Akram, Waheed
Yasin, Nasim Ahmad
Yusuf, Mohammad
author_sort Ahmad, Aqeel
collection PubMed
description Environmental pollutants and climate change are the major cause of abiotic stresses. Hexachlorobenzene (HCB) is an airborne and aero-disseminated persistent organic pollutants (POP) molecule causing severe health issues in humans, and temperature extremes and HCB in combination severely affect the growth and yield of crop plants around the globe. The higher HCB uptake and accumulation by edible plants ultimately damage human health through the contaminated food chain. Hence, confining the passive absorbance of POPs is a big challenge for researchers to keep the plant products safer for human consumption. BioClay functional layered double hydroxide is an effective tool for the stable delivery of acidic molecules on plant surfaces. The current study utilized gibberellic acid (GA(3)) impregnated BioClay (BioClay(GA)) to alleviate abiotic stress in Brassica alboglabra plants. Application of BioClay(GA) mitigated the deleterious effects of HCB besides extreme temperature stress in B. alboglabra plants. BioClay(GA) significantly restricted HCB uptake and accumulation in applied plants through increasing the avoidance efficacy (AE) up to 377.61%. Moreover, the exogenously applied GA(3) and BioClay(GA) successfully improved the antioxidative system, physiochemical parameters and growth of stressed B. alboglabra plants. Consequently, the combined application of BioClay and GA(3) can efficiently alleviate low-temperature stress, heat stress, and HCB toxicity.
format Online
Article
Text
id pubmed-9583914
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-95839142022-10-21 BioClay nanosheets infused with GA3 ameliorate the combined stress of hexachlorobenzene and temperature extremes in Brassica alboglabra plants Ahmad, Aqeel Khan, Tanveer Alam Shahzad, Sharoon Ullah, Sami Shahzadi, Iqra Ali, Aamir Akram, Waheed Yasin, Nasim Ahmad Yusuf, Mohammad Front Plant Sci Plant Science Environmental pollutants and climate change are the major cause of abiotic stresses. Hexachlorobenzene (HCB) is an airborne and aero-disseminated persistent organic pollutants (POP) molecule causing severe health issues in humans, and temperature extremes and HCB in combination severely affect the growth and yield of crop plants around the globe. The higher HCB uptake and accumulation by edible plants ultimately damage human health through the contaminated food chain. Hence, confining the passive absorbance of POPs is a big challenge for researchers to keep the plant products safer for human consumption. BioClay functional layered double hydroxide is an effective tool for the stable delivery of acidic molecules on plant surfaces. The current study utilized gibberellic acid (GA(3)) impregnated BioClay (BioClay(GA)) to alleviate abiotic stress in Brassica alboglabra plants. Application of BioClay(GA) mitigated the deleterious effects of HCB besides extreme temperature stress in B. alboglabra plants. BioClay(GA) significantly restricted HCB uptake and accumulation in applied plants through increasing the avoidance efficacy (AE) up to 377.61%. Moreover, the exogenously applied GA(3) and BioClay(GA) successfully improved the antioxidative system, physiochemical parameters and growth of stressed B. alboglabra plants. Consequently, the combined application of BioClay and GA(3) can efficiently alleviate low-temperature stress, heat stress, and HCB toxicity. Frontiers Media S.A. 2022-10-06 /pmc/articles/PMC9583914/ /pubmed/36275566 http://dx.doi.org/10.3389/fpls.2022.964041 Text en Copyright © 2022 Ahmad, Khan, Shahzad, Ullah, Shahzadi, Ali, Akram, Yasin and Yusuf. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Ahmad, Aqeel
Khan, Tanveer Alam
Shahzad, Sharoon
Ullah, Sami
Shahzadi, Iqra
Ali, Aamir
Akram, Waheed
Yasin, Nasim Ahmad
Yusuf, Mohammad
BioClay nanosheets infused with GA3 ameliorate the combined stress of hexachlorobenzene and temperature extremes in Brassica alboglabra plants
title BioClay nanosheets infused with GA3 ameliorate the combined stress of hexachlorobenzene and temperature extremes in Brassica alboglabra plants
title_full BioClay nanosheets infused with GA3 ameliorate the combined stress of hexachlorobenzene and temperature extremes in Brassica alboglabra plants
title_fullStr BioClay nanosheets infused with GA3 ameliorate the combined stress of hexachlorobenzene and temperature extremes in Brassica alboglabra plants
title_full_unstemmed BioClay nanosheets infused with GA3 ameliorate the combined stress of hexachlorobenzene and temperature extremes in Brassica alboglabra plants
title_short BioClay nanosheets infused with GA3 ameliorate the combined stress of hexachlorobenzene and temperature extremes in Brassica alboglabra plants
title_sort bioclay nanosheets infused with ga3 ameliorate the combined stress of hexachlorobenzene and temperature extremes in brassica alboglabra plants
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9583914/
https://www.ncbi.nlm.nih.gov/pubmed/36275566
http://dx.doi.org/10.3389/fpls.2022.964041
work_keys_str_mv AT ahmadaqeel bioclaynanosheetsinfusedwithga3amelioratethecombinedstressofhexachlorobenzeneandtemperatureextremesinbrassicaalboglabraplants
AT khantanveeralam bioclaynanosheetsinfusedwithga3amelioratethecombinedstressofhexachlorobenzeneandtemperatureextremesinbrassicaalboglabraplants
AT shahzadsharoon bioclaynanosheetsinfusedwithga3amelioratethecombinedstressofhexachlorobenzeneandtemperatureextremesinbrassicaalboglabraplants
AT ullahsami bioclaynanosheetsinfusedwithga3amelioratethecombinedstressofhexachlorobenzeneandtemperatureextremesinbrassicaalboglabraplants
AT shahzadiiqra bioclaynanosheetsinfusedwithga3amelioratethecombinedstressofhexachlorobenzeneandtemperatureextremesinbrassicaalboglabraplants
AT aliaamir bioclaynanosheetsinfusedwithga3amelioratethecombinedstressofhexachlorobenzeneandtemperatureextremesinbrassicaalboglabraplants
AT akramwaheed bioclaynanosheetsinfusedwithga3amelioratethecombinedstressofhexachlorobenzeneandtemperatureextremesinbrassicaalboglabraplants
AT yasinnasimahmad bioclaynanosheetsinfusedwithga3amelioratethecombinedstressofhexachlorobenzeneandtemperatureextremesinbrassicaalboglabraplants
AT yusufmohammad bioclaynanosheetsinfusedwithga3amelioratethecombinedstressofhexachlorobenzeneandtemperatureextremesinbrassicaalboglabraplants