NAC domain genes belong to a large plant-specific transcription factor family, which is well-known to be associated with multiple stress responses and plant developmental processes. In this study, we screened differentially expressed genes (DEGs) and detected mRNA abundance of NAC family by RNA-Seq in the poplar leaves under salt stress condition. A total of 276 up-regulated DEGs and 159 down-regulated DEGs were identified to be shared in Populus alba × Populus glandulosa and Populus simonii × Populus nigra. Among 170 NAC members, NAC57 gene was significantly up-regulated in response to salt stress in the two species. Tissue-specific and salt-responsive analyses indicated the expression pattern of NAC57 gene was spatial and temporal in popl...
<p>NF-YAs play important roles in abiotic stress. However, their characteristics and functions in ab...
Abstract Background Roots are an attractive system for genomic and post-genomic studies of NaCl resp...
Popova OV, Yang O, Dietz K-J, Golldack D. Differential transcript regulation in Arabidopsis thaliana...
NAC domain genes belong to a large plant-specific transcription factor family, which is well-known t...
NAC domain genes belong to a large plant-specific transcription factor family, which is well-known t...
NAC domain genes belong to a large plant-specific transcription factor family, which is well-known t...
This research project aims to identify genes (specifically the NACs family) involved in salt stress ...
Salt stress is one of the most crucial factors impacting plant growth, development and reproduction....
Populus euphratica is mainly distributed in desert environments with dry and hot climate in summer a...
Background: Adaptation to abiotic stresses is crucial for the survival of perennial plants in a natu...
Salinity is an important environmental factor limiting growth and productivity of plants, and affect...
BACKGROUND: Populus euphratica is a salt tolerant and Populus x canescens a salt sensitive poplar sp...
The AlkB homologs (ALKBH) gene family regulates N6-methyladenosine (m6A) RNA methylation and is invo...
NF-YAs play important roles in abiotic stress. However, their characteristics and functions in abiot...
The AlkB homologs (ALKBH) gene family regulates N6-methyladenosine (m6A) RNA methylation and is invo...
<p>NF-YAs play important roles in abiotic stress. However, their characteristics and functions in ab...
Abstract Background Roots are an attractive system for genomic and post-genomic studies of NaCl resp...
Popova OV, Yang O, Dietz K-J, Golldack D. Differential transcript regulation in Arabidopsis thaliana...
NAC domain genes belong to a large plant-specific transcription factor family, which is well-known t...
NAC domain genes belong to a large plant-specific transcription factor family, which is well-known t...
NAC domain genes belong to a large plant-specific transcription factor family, which is well-known t...
This research project aims to identify genes (specifically the NACs family) involved in salt stress ...
Salt stress is one of the most crucial factors impacting plant growth, development and reproduction....
Populus euphratica is mainly distributed in desert environments with dry and hot climate in summer a...
Background: Adaptation to abiotic stresses is crucial for the survival of perennial plants in a natu...
Salinity is an important environmental factor limiting growth and productivity of plants, and affect...
BACKGROUND: Populus euphratica is a salt tolerant and Populus x canescens a salt sensitive poplar sp...
The AlkB homologs (ALKBH) gene family regulates N6-methyladenosine (m6A) RNA methylation and is invo...
NF-YAs play important roles in abiotic stress. However, their characteristics and functions in abiot...
The AlkB homologs (ALKBH) gene family regulates N6-methyladenosine (m6A) RNA methylation and is invo...
<p>NF-YAs play important roles in abiotic stress. However, their characteristics and functions in ab...
Abstract Background Roots are an attractive system for genomic and post-genomic studies of NaCl resp...
Popova OV, Yang O, Dietz K-J, Golldack D. Differential transcript regulation in Arabidopsis thaliana...