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Please use this identifier to cite or link to this item: http://krishi.icar.gov.in/jspui/handle/123456789/3962
Title: The Promoter of AtUSP Is Co-regulated by Phytohormones and Abiotic Stresses in Arabidopsis thaliana
Other Titles: Not Available
Authors: Anil Kumar Singh
Published/ Complete Date: 2016-12-26
Project Code: Not Available
Keywords: abiotic stress, Arabidopsis, universal stress protein, AtUSP, phytohormones, promoter, deletion analysis
Publisher: Frontiers
Citation: Not Available
Series/Report no.: Not Available;
Abstract/Description: Universal stress proteins (USPs) are known to be expressed in response to various abiotic stresses in a wide variety of organisms, such as bacteria, archaebacteria, protists, algae, fungi, plants, and animals. However, in plants, biological function of most of the USPs still remains obscure. In the present study, Arabidopsis USP gene (AtUSP) showed induction in response to abscisic acid (ABA) and various abiotic stresses viz. heat, dehydration, salt, osmotic, and cold stresses. Additionally, in silico analysis of AtUSP promoter identified several cis-elements responsive to phytohormones and abiotic stresses such as ABRE, ERE, DRE, and HSE, etc. To functionally validate the AtUSP promoter, the 1115 bp region of promoter was characterized under phytohormone and abiotic stress treatments. Deletion analysis of promoter was carried out by cloning the full length promoter (D0) and its three 50 deletion derivatives, D1 (964 bp), D2 (660 bp), and D3 (503 bp) upstream of the b-glucuronidase (GUS) reporter gene, which were then stably transformed in Arabidopsis plants. The AtUSP promoter (D0) showed minimal activity under non-stress conditions which was enhanced in response to phytohormone treatments (ABA and ACC) and abiotic stresses such as dehydration, heat, cold, salt, and osmotic stresses. The seedlings harboring D1 and D2 deletion fragments showed constitutive GUS expression even under control condition with increased activity almost under all the treatments. However, D3 seedlings exhibited complete loss of activity under control condition with induction under ACC treatment, dehydration, heat, oxidative, salt, and osmotic stresses. Thus, present study clearly showed that AtUSP promoter is highly inducible by phytohormones and multiple abiotic stresses and it can be exploited as stress inducible promoter to generate multi-stress tolerant crops with minimal effects on their other important traits.
Description: Not Available
ISSN: Not Available
Type(s) of content: Research Paper
Sponsors: Not Available
Language: English
Name of Journal: Frontiers in Plant Science
NAAS Rating: 10.4
Volume No.: 7
Page Number: Not Available
Name of the Division/Regional Station: School of Genomics and Molecular Breeding
Source, DOI or any other URL: doi: 10.3389/fpls.2016.01957
URI: http://krishi.icar.gov.in/jspui/handle/123456789/3962
Appears in Collections:CS-IIAB-Publication

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