Cargando…

Enhanced Cadmium Accumulation and Tolerance in Transgenic Hairy Roots of Solanum nigrum L. Expressing Iron-Regulated Transporter Gene IRT1

Solanum nigrum L., a hyperaccumulator of cadmium (Cd), is regarded as a promising candidate for phytoremediation of heavy metal pollution. In the present study, the hairy roots of Solanum nigrum L. were selected as a model plant system to study the potential application of Iron-regulated Transporter...

Descripción completa

Detalles Bibliográficos
Autores principales: Ye, Peng, Wang, Menghua, Zhang, Teng, Liu, Xiaoyu, Jiang, He, Sun, Yaping, Cheng, Xiyu, Yan, Qiong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7761695/
https://www.ncbi.nlm.nih.gov/pubmed/33287205
http://dx.doi.org/10.3390/life10120324
_version_ 1783627628573360128
author Ye, Peng
Wang, Menghua
Zhang, Teng
Liu, Xiaoyu
Jiang, He
Sun, Yaping
Cheng, Xiyu
Yan, Qiong
author_facet Ye, Peng
Wang, Menghua
Zhang, Teng
Liu, Xiaoyu
Jiang, He
Sun, Yaping
Cheng, Xiyu
Yan, Qiong
author_sort Ye, Peng
collection PubMed
description Solanum nigrum L., a hyperaccumulator of cadmium (Cd), is regarded as a promising candidate for phytoremediation of heavy metal pollution. In the present study, the hairy roots of Solanum nigrum L. were selected as a model plant system to study the potential application of Iron-regulated Transporter Gene (IRT1) for the efficient phytoremediation of Cd pollution. The transgenic hairy roots of Solanum nigrum L. expressing the IRT1 gene from Arabidopsis thaliana were successfully obtained via the Agrobacterium tumegaciens-mediated method. Expression of IRT1 reduced Cd stress-induced phytotoxic effects. Significantly superior root growth, increased antioxidant enzyme activities, decreased reactive oxygen species (ROS) levels, and less cell apoptosis were observed in the transgenic hairy roots of Solanum nigrum L. compared to the wild-type lines under Cd stress. Enhanced Cd accumulation was also carried out in the transgenic hairy roots compared to the control (886.8 μg/g vs. 745.0 μg/g). These results provide an important understanding of the Cd tolerance mechanism of transgenic IRT1 hairy roots of Solanum nigrum L., and are of particular importance to the development of a transgenic candidate for efficient phytoremediation process.
format Online
Article
Text
id pubmed-7761695
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-77616952020-12-26 Enhanced Cadmium Accumulation and Tolerance in Transgenic Hairy Roots of Solanum nigrum L. Expressing Iron-Regulated Transporter Gene IRT1 Ye, Peng Wang, Menghua Zhang, Teng Liu, Xiaoyu Jiang, He Sun, Yaping Cheng, Xiyu Yan, Qiong Life (Basel) Article Solanum nigrum L., a hyperaccumulator of cadmium (Cd), is regarded as a promising candidate for phytoremediation of heavy metal pollution. In the present study, the hairy roots of Solanum nigrum L. were selected as a model plant system to study the potential application of Iron-regulated Transporter Gene (IRT1) for the efficient phytoremediation of Cd pollution. The transgenic hairy roots of Solanum nigrum L. expressing the IRT1 gene from Arabidopsis thaliana were successfully obtained via the Agrobacterium tumegaciens-mediated method. Expression of IRT1 reduced Cd stress-induced phytotoxic effects. Significantly superior root growth, increased antioxidant enzyme activities, decreased reactive oxygen species (ROS) levels, and less cell apoptosis were observed in the transgenic hairy roots of Solanum nigrum L. compared to the wild-type lines under Cd stress. Enhanced Cd accumulation was also carried out in the transgenic hairy roots compared to the control (886.8 μg/g vs. 745.0 μg/g). These results provide an important understanding of the Cd tolerance mechanism of transgenic IRT1 hairy roots of Solanum nigrum L., and are of particular importance to the development of a transgenic candidate for efficient phytoremediation process. MDPI 2020-12-03 /pmc/articles/PMC7761695/ /pubmed/33287205 http://dx.doi.org/10.3390/life10120324 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ye, Peng
Wang, Menghua
Zhang, Teng
Liu, Xiaoyu
Jiang, He
Sun, Yaping
Cheng, Xiyu
Yan, Qiong
Enhanced Cadmium Accumulation and Tolerance in Transgenic Hairy Roots of Solanum nigrum L. Expressing Iron-Regulated Transporter Gene IRT1
title Enhanced Cadmium Accumulation and Tolerance in Transgenic Hairy Roots of Solanum nigrum L. Expressing Iron-Regulated Transporter Gene IRT1
title_full Enhanced Cadmium Accumulation and Tolerance in Transgenic Hairy Roots of Solanum nigrum L. Expressing Iron-Regulated Transporter Gene IRT1
title_fullStr Enhanced Cadmium Accumulation and Tolerance in Transgenic Hairy Roots of Solanum nigrum L. Expressing Iron-Regulated Transporter Gene IRT1
title_full_unstemmed Enhanced Cadmium Accumulation and Tolerance in Transgenic Hairy Roots of Solanum nigrum L. Expressing Iron-Regulated Transporter Gene IRT1
title_short Enhanced Cadmium Accumulation and Tolerance in Transgenic Hairy Roots of Solanum nigrum L. Expressing Iron-Regulated Transporter Gene IRT1
title_sort enhanced cadmium accumulation and tolerance in transgenic hairy roots of solanum nigrum l. expressing iron-regulated transporter gene irt1
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7761695/
https://www.ncbi.nlm.nih.gov/pubmed/33287205
http://dx.doi.org/10.3390/life10120324
work_keys_str_mv AT yepeng enhancedcadmiumaccumulationandtoleranceintransgenichairyrootsofsolanumnigrumlexpressingironregulatedtransportergeneirt1
AT wangmenghua enhancedcadmiumaccumulationandtoleranceintransgenichairyrootsofsolanumnigrumlexpressingironregulatedtransportergeneirt1
AT zhangteng enhancedcadmiumaccumulationandtoleranceintransgenichairyrootsofsolanumnigrumlexpressingironregulatedtransportergeneirt1
AT liuxiaoyu enhancedcadmiumaccumulationandtoleranceintransgenichairyrootsofsolanumnigrumlexpressingironregulatedtransportergeneirt1
AT jianghe enhancedcadmiumaccumulationandtoleranceintransgenichairyrootsofsolanumnigrumlexpressingironregulatedtransportergeneirt1
AT sunyaping enhancedcadmiumaccumulationandtoleranceintransgenichairyrootsofsolanumnigrumlexpressingironregulatedtransportergeneirt1
AT chengxiyu enhancedcadmiumaccumulationandtoleranceintransgenichairyrootsofsolanumnigrumlexpressingironregulatedtransportergeneirt1
AT yanqiong enhancedcadmiumaccumulationandtoleranceintransgenichairyrootsofsolanumnigrumlexpressingironregulatedtransportergeneirt1