Overexpression of TaLEA gene from Tamarix androssowii improves salt and drought tolerance in transgenic poplar (Populus simonii × P. nigra).

Late embryogenesis abundant (LEA) genes were confirmed to confer resistance to drought and water deficiency. An LEA gene from Tamarixandrossowii (named TaLEA) was transformed into Xiaohei poplar (Populussimonii × P. nigra) via Agrobacterium. Twenty-five independent transgenic lines were obtained tha...

Full description

Bibliographic Details
Main Authors: Weidong Gao, Shuang Bai, Qingmei Li, Caiqiu Gao, Guifeng Liu, Guangde Li, Feili Tan
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3696074?pdf=render
id doaj-186f16b903b1434aa330cb2bc8ed711c
record_format Article
spelling doaj-186f16b903b1434aa330cb2bc8ed711c2020-11-24T21:51:07ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0186e6746210.1371/journal.pone.0067462Overexpression of TaLEA gene from Tamarix androssowii improves salt and drought tolerance in transgenic poplar (Populus simonii × P. nigra).Weidong GaoShuang BaiQingmei LiCaiqiu GaoGuifeng LiuGuangde LiFeili TanLate embryogenesis abundant (LEA) genes were confirmed to confer resistance to drought and water deficiency. An LEA gene from Tamarixandrossowii (named TaLEA) was transformed into Xiaohei poplar (Populussimonii × P. nigra) via Agrobacterium. Twenty-five independent transgenic lines were obtained that were resistant to kanamycin, and 11 transgenic lines were randomly selected for further analysis. The polymerase chain reaction (PCR) and ribonucleic acid (RNA) gel blot indicated that the TaLEA gene had been integrated into the poplar genome. The height growth rate, malondialdehyde (MDA) content, relative electrolyte leakage and damages due to salt or drought to transgenic and non-transgenic plants were compared under salt and drought stress conditions. The results showed that the constitutive expression of the TaLEA gene in transgenic poplars could induce an increase in height growth rate and a decrease in number and severity of wilted leaves under the salt and drought stresses. The MDA content and relative electrolyte leakage in transgenic lines under salt and drought stresses were significantly lower compared to those in non-transgenic plants, indicating that the TaLEA gene may enhance salt and drought tolerance by protecting cell membranes from damage. Moreover, amongst the lines analyzed for stress tolerance, the transgenic line 11 (T11) showed the highest tolerance levels under both salinity and drought stress conditions. These results indicated that the TaLEA gene could be a salt and drought tolerance candidate gene and could confer a broad spectrum of tolerance under abiotic stresses in poplars.http://europepmc.org/articles/PMC3696074?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Weidong Gao
Shuang Bai
Qingmei Li
Caiqiu Gao
Guifeng Liu
Guangde Li
Feili Tan
spellingShingle Weidong Gao
Shuang Bai
Qingmei Li
Caiqiu Gao
Guifeng Liu
Guangde Li
Feili Tan
Overexpression of TaLEA gene from Tamarix androssowii improves salt and drought tolerance in transgenic poplar (Populus simonii × P. nigra).
PLoS ONE
author_facet Weidong Gao
Shuang Bai
Qingmei Li
Caiqiu Gao
Guifeng Liu
Guangde Li
Feili Tan
author_sort Weidong Gao
title Overexpression of TaLEA gene from Tamarix androssowii improves salt and drought tolerance in transgenic poplar (Populus simonii × P. nigra).
title_short Overexpression of TaLEA gene from Tamarix androssowii improves salt and drought tolerance in transgenic poplar (Populus simonii × P. nigra).
title_full Overexpression of TaLEA gene from Tamarix androssowii improves salt and drought tolerance in transgenic poplar (Populus simonii × P. nigra).
title_fullStr Overexpression of TaLEA gene from Tamarix androssowii improves salt and drought tolerance in transgenic poplar (Populus simonii × P. nigra).
title_full_unstemmed Overexpression of TaLEA gene from Tamarix androssowii improves salt and drought tolerance in transgenic poplar (Populus simonii × P. nigra).
title_sort overexpression of talea gene from tamarix androssowii improves salt and drought tolerance in transgenic poplar (populus simonii × p. nigra).
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Late embryogenesis abundant (LEA) genes were confirmed to confer resistance to drought and water deficiency. An LEA gene from Tamarixandrossowii (named TaLEA) was transformed into Xiaohei poplar (Populussimonii × P. nigra) via Agrobacterium. Twenty-five independent transgenic lines were obtained that were resistant to kanamycin, and 11 transgenic lines were randomly selected for further analysis. The polymerase chain reaction (PCR) and ribonucleic acid (RNA) gel blot indicated that the TaLEA gene had been integrated into the poplar genome. The height growth rate, malondialdehyde (MDA) content, relative electrolyte leakage and damages due to salt or drought to transgenic and non-transgenic plants were compared under salt and drought stress conditions. The results showed that the constitutive expression of the TaLEA gene in transgenic poplars could induce an increase in height growth rate and a decrease in number and severity of wilted leaves under the salt and drought stresses. The MDA content and relative electrolyte leakage in transgenic lines under salt and drought stresses were significantly lower compared to those in non-transgenic plants, indicating that the TaLEA gene may enhance salt and drought tolerance by protecting cell membranes from damage. Moreover, amongst the lines analyzed for stress tolerance, the transgenic line 11 (T11) showed the highest tolerance levels under both salinity and drought stress conditions. These results indicated that the TaLEA gene could be a salt and drought tolerance candidate gene and could confer a broad spectrum of tolerance under abiotic stresses in poplars.
url http://europepmc.org/articles/PMC3696074?pdf=render
work_keys_str_mv AT weidonggao overexpressionoftaleagenefromtamarixandrossowiiimprovessaltanddroughttoleranceintransgenicpoplarpopulussimoniipnigra
AT shuangbai overexpressionoftaleagenefromtamarixandrossowiiimprovessaltanddroughttoleranceintransgenicpoplarpopulussimoniipnigra
AT qingmeili overexpressionoftaleagenefromtamarixandrossowiiimprovessaltanddroughttoleranceintransgenicpoplarpopulussimoniipnigra
AT caiqiugao overexpressionoftaleagenefromtamarixandrossowiiimprovessaltanddroughttoleranceintransgenicpoplarpopulussimoniipnigra
AT guifengliu overexpressionoftaleagenefromtamarixandrossowiiimprovessaltanddroughttoleranceintransgenicpoplarpopulussimoniipnigra
AT guangdeli overexpressionoftaleagenefromtamarixandrossowiiimprovessaltanddroughttoleranceintransgenicpoplarpopulussimoniipnigra
AT feilitan overexpressionoftaleagenefromtamarixandrossowiiimprovessaltanddroughttoleranceintransgenicpoplarpopulussimoniipnigra
_version_ 1725880332889096192