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Transcriptome analysis reveals complex response of the medicinal/ornamental halophyte Iris halophila Pall. to high environmental salinity.

Authors :
Liu, Qingquan
Tang, Jun
Wang, Weilin
Zhang, Yongxia
Yuan, Haiyan
Huang, Suzhen
Source :
Ecotoxicology & Environmental Safety; Dec2018, Vol. 165, p250-260, 11p
Publication Year :
2018

Abstract

Abstract The remediation and subsequent use of saline-alkaline land are of great significance to ecological environment construction and sustainable agricultural development. Iris halophila Pall. is a salt-tolerant medicinal and ornamental plant, which has good application prospects in the ecological construction of saline-alkaline land; therefore, study of the molecular mechanisms of salt tolerance in I. halophila has important theoretical and practical value. To evaluate the molecular mechanism of the response of I. halophila to salt toxicity, I. halophila seedlings were treated with salt (300 mM NaCl) and subjected to deep RNA sequencing. The clean reads were obtained and assembled into 297,188 unigenes. Among them, 1120 and 100 salt-responsive genes were identified in I. halophila shoots and roots, respectively. Among them, the key flavonoid and lignin biosynthetic genes, hormone signaling genes, sodium/potassium ion transporter genes, and transcription factors were analyzed and summarized. Quantitative reverse-transcription PCR analysis strengthened the reliability of the RNA sequencing results. This work provides an overview of the transcriptomic responses to salt toxicity in I. halophila and identifies the responsive genes that may contribute to its reduced salt toxicity. These results lay an important foundation for further study of the molecular mechanisms of salt tolerance in I. halophila and related species. Highlights • The transcriptome of Iris halophila Pall. was investigated under salt stress. • 1215 salt-regulated genes were identified by RNA-Seq in I. halophila. • Provides an overview of transcriptomic responses to salt toxicity in I. halophila. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01476513
Volume :
165
Database :
Supplemental Index
Journal :
Ecotoxicology & Environmental Safety
Publication Type :
Academic Journal
Accession number :
131972679
Full Text :
https://doi.org/10.1016/j.ecoenv.2018.09.003