Identification of 4CL Genes in Desert Poplars and Their Changes in Expression in Response to Salt Stress

4-Coumarate:CoA ligase (4CL) genes are critical for the biosynthesis of plant phenylpropanoids. Here we identified 20 4CL genes in the genomes of two desert poplars (Populus euphratica and P. pruinosa) and salt-sensitive congener (P. trichocarpa), but 12 in Salix suchowensis (Salix willow). Phylogen...

Full description

Bibliographic Details
Main Authors: Cai-Hua Zhang, Tao Ma, Wen-Chun Luo, Jian-Mei Xu, Jian-Quan Liu, Dong-Shi Wan
Format: Article
Language:English
Published: MDPI AG 2015-09-01
Series:Genes
Subjects:
Online Access:http://www.mdpi.com/2073-4425/6/3/901
id doaj-f2ceddd1b0144a0e80d99db4cb418f10
record_format Article
spelling doaj-f2ceddd1b0144a0e80d99db4cb418f102020-11-24T21:26:46ZengMDPI AGGenes2073-44252015-09-016390191710.3390/genes6030901genes6030901Identification of 4CL Genes in Desert Poplars and Their Changes in Expression in Response to Salt StressCai-Hua Zhang0Tao Ma1Wen-Chun Luo2Jian-Mei Xu3Jian-Quan Liu4Dong-Shi Wan5State Key Laboratory of Grassland Agro-Ecosystem, School of Life Sciences, Lanzhou University, No.222, Tianshui Southern Road, Lanzhou 730000, ChinaState Key Laboratory of Grassland Agro-Ecosystem, School of Life Sciences, Lanzhou University, No.222, Tianshui Southern Road, Lanzhou 730000, ChinaState Key Laboratory of Grassland Agro-Ecosystem, School of Life Sciences, Lanzhou University, No.222, Tianshui Southern Road, Lanzhou 730000, ChinaState Key Laboratory of Grassland Agro-Ecosystem, School of Life Sciences, Lanzhou University, No.222, Tianshui Southern Road, Lanzhou 730000, ChinaState Key Laboratory of Grassland Agro-Ecosystem, School of Life Sciences, Lanzhou University, No.222, Tianshui Southern Road, Lanzhou 730000, ChinaState Key Laboratory of Grassland Agro-Ecosystem, School of Life Sciences, Lanzhou University, No.222, Tianshui Southern Road, Lanzhou 730000, China4-Coumarate:CoA ligase (4CL) genes are critical for the biosynthesis of plant phenylpropanoids. Here we identified 20 4CL genes in the genomes of two desert poplars (Populus euphratica and P. pruinosa) and salt-sensitive congener (P. trichocarpa), but 12 in Salix suchowensis (Salix willow). Phylogenetic analyses clustered all Salicaceae 4CL genes into two clades, and one of them (corresponding to the 4CL-like clade from Arabidopsis) showed signals of adaptive evolution, with more genes retained in Populus than Salix and Arabidopsis. We also found that 4CL12 (in 4CL-like clade) showed positive selection along the two desert poplar lineages. Transcriptional profiling analyses indicated that the expression of 4CL2, 4CL11, and 4CL12 changed significantly in one or both desert poplars in response to salt stress compared to that of in P. trichocarpa. Our results suggest that the evolution of the 4CL genes may have contributed to the development of salt tolerance in the two desert poplars.http://www.mdpi.com/2073-4425/6/3/9014CL gene familydesert poplarsadaptive evolutionexpression divergencesalt stress
collection DOAJ
language English
format Article
sources DOAJ
author Cai-Hua Zhang
Tao Ma
Wen-Chun Luo
Jian-Mei Xu
Jian-Quan Liu
Dong-Shi Wan
spellingShingle Cai-Hua Zhang
Tao Ma
Wen-Chun Luo
Jian-Mei Xu
Jian-Quan Liu
Dong-Shi Wan
Identification of 4CL Genes in Desert Poplars and Their Changes in Expression in Response to Salt Stress
Genes
4CL gene family
desert poplars
adaptive evolution
expression divergence
salt stress
author_facet Cai-Hua Zhang
Tao Ma
Wen-Chun Luo
Jian-Mei Xu
Jian-Quan Liu
Dong-Shi Wan
author_sort Cai-Hua Zhang
title Identification of 4CL Genes in Desert Poplars and Their Changes in Expression in Response to Salt Stress
title_short Identification of 4CL Genes in Desert Poplars and Their Changes in Expression in Response to Salt Stress
title_full Identification of 4CL Genes in Desert Poplars and Their Changes in Expression in Response to Salt Stress
title_fullStr Identification of 4CL Genes in Desert Poplars and Their Changes in Expression in Response to Salt Stress
title_full_unstemmed Identification of 4CL Genes in Desert Poplars and Their Changes in Expression in Response to Salt Stress
title_sort identification of 4cl genes in desert poplars and their changes in expression in response to salt stress
publisher MDPI AG
series Genes
issn 2073-4425
publishDate 2015-09-01
description 4-Coumarate:CoA ligase (4CL) genes are critical for the biosynthesis of plant phenylpropanoids. Here we identified 20 4CL genes in the genomes of two desert poplars (Populus euphratica and P. pruinosa) and salt-sensitive congener (P. trichocarpa), but 12 in Salix suchowensis (Salix willow). Phylogenetic analyses clustered all Salicaceae 4CL genes into two clades, and one of them (corresponding to the 4CL-like clade from Arabidopsis) showed signals of adaptive evolution, with more genes retained in Populus than Salix and Arabidopsis. We also found that 4CL12 (in 4CL-like clade) showed positive selection along the two desert poplar lineages. Transcriptional profiling analyses indicated that the expression of 4CL2, 4CL11, and 4CL12 changed significantly in one or both desert poplars in response to salt stress compared to that of in P. trichocarpa. Our results suggest that the evolution of the 4CL genes may have contributed to the development of salt tolerance in the two desert poplars.
topic 4CL gene family
desert poplars
adaptive evolution
expression divergence
salt stress
url http://www.mdpi.com/2073-4425/6/3/901
work_keys_str_mv AT caihuazhang identificationof4clgenesindesertpoplarsandtheirchangesinexpressioninresponsetosaltstress
AT taoma identificationof4clgenesindesertpoplarsandtheirchangesinexpressioninresponsetosaltstress
AT wenchunluo identificationof4clgenesindesertpoplarsandtheirchangesinexpressioninresponsetosaltstress
AT jianmeixu identificationof4clgenesindesertpoplarsandtheirchangesinexpressioninresponsetosaltstress
AT jianquanliu identificationof4clgenesindesertpoplarsandtheirchangesinexpressioninresponsetosaltstress
AT dongshiwan identificationof4clgenesindesertpoplarsandtheirchangesinexpressioninresponsetosaltstress
_version_ 1725977693266116608