Cargando…

Benzylaminopurine and Abscisic Acid Mitigates Cadmium and Copper Toxicity by Boosting Plant Growth, Antioxidant Capacity, Reducing Metal Accumulation and Translocation in Bamboo [Pleioblastus pygmaeus (Miq.)] Plants

An in vitro experiment was conducted to determine the influence of phytohormones on the enhancement of bamboo resistance to heavy metal exposure (Cd and Cu). To this end, one-year-old bamboo plants (Pleioblastus pygmaeus (Miq.) Nakai.) contaminated by 100 µM Cd and 100 µM Cu both individually and in...

Descripción completa

Detalles Bibliográficos
Autores principales: Emamverdian, Abolghassem, Ding, Yulong, Alyemeni, Mohammed Nasser, Barker, James, Liu, Guohua, Li, Yang, Mokhberdoran, Farzad, Ahmad, Parvaiz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9774587/
https://www.ncbi.nlm.nih.gov/pubmed/36552536
http://dx.doi.org/10.3390/antiox11122328
_version_ 1784855445720006656
author Emamverdian, Abolghassem
Ding, Yulong
Alyemeni, Mohammed Nasser
Barker, James
Liu, Guohua
Li, Yang
Mokhberdoran, Farzad
Ahmad, Parvaiz
author_facet Emamverdian, Abolghassem
Ding, Yulong
Alyemeni, Mohammed Nasser
Barker, James
Liu, Guohua
Li, Yang
Mokhberdoran, Farzad
Ahmad, Parvaiz
author_sort Emamverdian, Abolghassem
collection PubMed
description An in vitro experiment was conducted to determine the influence of phytohormones on the enhancement of bamboo resistance to heavy metal exposure (Cd and Cu). To this end, one-year-old bamboo plants (Pleioblastus pygmaeus (Miq.) Nakai.) contaminated by 100 µM Cd and 100 µM Cu both individually and in combination were treated with 10 µM, 6-benzylaminopurine and 10 µM abscisic acid. The results revealed that while 100 µM Cd and 100 µM Cu accelerated plant cell death and decreased plant growth and development, 10 µM 6-benzylaminopurine and 10 µM abscisic acid, both individually and in combination, increased plant growth by boosting antioxidant activities, non-antioxidants indices, tyrosine ammonia-lyase activity (TAL), as well as phenylalanine ammonia-lyase activity (PAL). Moreover, this combination enhanced protein thiol, total thiol, non-protein, glycine betaine (GB), the content of proline (Pro), glutathione (GSH), photosynthetic pigments (Chlorophyll and Carotenoids), fluorescence parameters, dry weight in shoot and root, as well as length of the shoot. It was then concluded that 6-benzyl amino purine and abscisic acid, both individually and in combination, enhanced plant tolerance under Cd and Cu through several key mechanisms, including increased antioxidant activity, improved photosynthesis properties, and decreased metals accumulation and metal translocation from root to shoot.
format Online
Article
Text
id pubmed-9774587
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-97745872022-12-23 Benzylaminopurine and Abscisic Acid Mitigates Cadmium and Copper Toxicity by Boosting Plant Growth, Antioxidant Capacity, Reducing Metal Accumulation and Translocation in Bamboo [Pleioblastus pygmaeus (Miq.)] Plants Emamverdian, Abolghassem Ding, Yulong Alyemeni, Mohammed Nasser Barker, James Liu, Guohua Li, Yang Mokhberdoran, Farzad Ahmad, Parvaiz Antioxidants (Basel) Article An in vitro experiment was conducted to determine the influence of phytohormones on the enhancement of bamboo resistance to heavy metal exposure (Cd and Cu). To this end, one-year-old bamboo plants (Pleioblastus pygmaeus (Miq.) Nakai.) contaminated by 100 µM Cd and 100 µM Cu both individually and in combination were treated with 10 µM, 6-benzylaminopurine and 10 µM abscisic acid. The results revealed that while 100 µM Cd and 100 µM Cu accelerated plant cell death and decreased plant growth and development, 10 µM 6-benzylaminopurine and 10 µM abscisic acid, both individually and in combination, increased plant growth by boosting antioxidant activities, non-antioxidants indices, tyrosine ammonia-lyase activity (TAL), as well as phenylalanine ammonia-lyase activity (PAL). Moreover, this combination enhanced protein thiol, total thiol, non-protein, glycine betaine (GB), the content of proline (Pro), glutathione (GSH), photosynthetic pigments (Chlorophyll and Carotenoids), fluorescence parameters, dry weight in shoot and root, as well as length of the shoot. It was then concluded that 6-benzyl amino purine and abscisic acid, both individually and in combination, enhanced plant tolerance under Cd and Cu through several key mechanisms, including increased antioxidant activity, improved photosynthesis properties, and decreased metals accumulation and metal translocation from root to shoot. MDPI 2022-11-24 /pmc/articles/PMC9774587/ /pubmed/36552536 http://dx.doi.org/10.3390/antiox11122328 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Emamverdian, Abolghassem
Ding, Yulong
Alyemeni, Mohammed Nasser
Barker, James
Liu, Guohua
Li, Yang
Mokhberdoran, Farzad
Ahmad, Parvaiz
Benzylaminopurine and Abscisic Acid Mitigates Cadmium and Copper Toxicity by Boosting Plant Growth, Antioxidant Capacity, Reducing Metal Accumulation and Translocation in Bamboo [Pleioblastus pygmaeus (Miq.)] Plants
title Benzylaminopurine and Abscisic Acid Mitigates Cadmium and Copper Toxicity by Boosting Plant Growth, Antioxidant Capacity, Reducing Metal Accumulation and Translocation in Bamboo [Pleioblastus pygmaeus (Miq.)] Plants
title_full Benzylaminopurine and Abscisic Acid Mitigates Cadmium and Copper Toxicity by Boosting Plant Growth, Antioxidant Capacity, Reducing Metal Accumulation and Translocation in Bamboo [Pleioblastus pygmaeus (Miq.)] Plants
title_fullStr Benzylaminopurine and Abscisic Acid Mitigates Cadmium and Copper Toxicity by Boosting Plant Growth, Antioxidant Capacity, Reducing Metal Accumulation and Translocation in Bamboo [Pleioblastus pygmaeus (Miq.)] Plants
title_full_unstemmed Benzylaminopurine and Abscisic Acid Mitigates Cadmium and Copper Toxicity by Boosting Plant Growth, Antioxidant Capacity, Reducing Metal Accumulation and Translocation in Bamboo [Pleioblastus pygmaeus (Miq.)] Plants
title_short Benzylaminopurine and Abscisic Acid Mitigates Cadmium and Copper Toxicity by Boosting Plant Growth, Antioxidant Capacity, Reducing Metal Accumulation and Translocation in Bamboo [Pleioblastus pygmaeus (Miq.)] Plants
title_sort benzylaminopurine and abscisic acid mitigates cadmium and copper toxicity by boosting plant growth, antioxidant capacity, reducing metal accumulation and translocation in bamboo [pleioblastus pygmaeus (miq.)] plants
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9774587/
https://www.ncbi.nlm.nih.gov/pubmed/36552536
http://dx.doi.org/10.3390/antiox11122328
work_keys_str_mv AT emamverdianabolghassem benzylaminopurineandabscisicacidmitigatescadmiumandcoppertoxicitybyboostingplantgrowthantioxidantcapacityreducingmetalaccumulationandtranslocationinbamboopleioblastuspygmaeusmiqplants
AT dingyulong benzylaminopurineandabscisicacidmitigatescadmiumandcoppertoxicitybyboostingplantgrowthantioxidantcapacityreducingmetalaccumulationandtranslocationinbamboopleioblastuspygmaeusmiqplants
AT alyemenimohammednasser benzylaminopurineandabscisicacidmitigatescadmiumandcoppertoxicitybyboostingplantgrowthantioxidantcapacityreducingmetalaccumulationandtranslocationinbamboopleioblastuspygmaeusmiqplants
AT barkerjames benzylaminopurineandabscisicacidmitigatescadmiumandcoppertoxicitybyboostingplantgrowthantioxidantcapacityreducingmetalaccumulationandtranslocationinbamboopleioblastuspygmaeusmiqplants
AT liuguohua benzylaminopurineandabscisicacidmitigatescadmiumandcoppertoxicitybyboostingplantgrowthantioxidantcapacityreducingmetalaccumulationandtranslocationinbamboopleioblastuspygmaeusmiqplants
AT liyang benzylaminopurineandabscisicacidmitigatescadmiumandcoppertoxicitybyboostingplantgrowthantioxidantcapacityreducingmetalaccumulationandtranslocationinbamboopleioblastuspygmaeusmiqplants
AT mokhberdoranfarzad benzylaminopurineandabscisicacidmitigatescadmiumandcoppertoxicitybyboostingplantgrowthantioxidantcapacityreducingmetalaccumulationandtranslocationinbamboopleioblastuspygmaeusmiqplants
AT ahmadparvaiz benzylaminopurineandabscisicacidmitigatescadmiumandcoppertoxicitybyboostingplantgrowthantioxidantcapacityreducingmetalaccumulationandtranslocationinbamboopleioblastuspygmaeusmiqplants