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http://krishi.icar.gov.in/jspui/handle/123456789/52297
Title: | Interactive role of salicylic acid and nitric oxide on transcriptional reprogramming for high temperature tolerance in lablab purpureus L.: Structural and functional insights using computational approaches |
Other Titles: | Not Available |
Authors: | Krishna Kumar Rai Nagendra Rai Mohd Aamira, Deepika Tripathia, Shashi Pandey Raia,* |
ICAR Data Use Licennce: | http://krishi.icar.gov.in/PDF/ICAR_Data_Use_Licence.pdf |
Author's Affiliated institute: | Centre of Advance Study in Botany, Department of Botany, Institute of Science, Banaras Hindu University (BHU), Varanasi, 221005 Uttar Pradesh, India b Indian Institute of Vegetable Research, Post Box-01, P.O.-Jakhini (Shahanshahpur), Varanasi, 221305, Uttar Pradesh, India |
Published/ Complete Date: | 2020-01-03 |
Project Code: | IXXO8662 |
Keywords: | Salicylic acid, Nitric oxide, High temperature, Heat shock transcription factor, Homology modelling |
Publisher: | Elsevier B.V. |
Citation: | Not Available |
Series/Report no.: | Not Available; |
Abstract/Description: | Salicylic acid (SA) and nitric oxide (NO) are considered as putative plant growth regulators that are involved in the regulation of an array of plant’s growth and developmental functions under environmental fluctuations when applied at lower concentrations. The possible involvement of NO in SA induced attenuation of high temperature (HT) induced oxidative stress in plants is however, still vague and need to be explored. Therefore, the present study aimed to investigates the biochemical and physiological changes induced by foliar spray of SA and NO combinations to ameliorate HT induced oxidative stress in Lablab purpureus L. Foliar application of combined SA and NO significantly improved relative water content (27.8 %), photosynthetic pigment content (67.2 %), membrane stability (45 %), proline content (1.0 %), expression of enzymatic antioxidants (7.1–18 %) along with pod yield (1.0 %). Heat Shock Factors (HSFs) play crucial roles in plants abiotic stress tolerance, however there structural and functional classifications in L. purpureus L. is still unknown. So, In-silico approach was also used for functional characterization and homology modelling of HSFs in L. purpureus. The experimental findings depicted that combine effect of SA and NO enhances tolerance in HT stressed L. purpureus L. plants by regulating physiological functions, antioxidants, expression and regulation of stress-responsive genes via transcriptional regulation of heat shock factor. |
Description: | Not Available |
ISSN: | Not Available |
Type(s) of content: | Research Paper |
Sponsors: | Not Available |
Language: | English |
Name of Journal: | Journal of Biotechnology |
NAAS Rating: | 9.5 |
Volume No.: | 309 |
Page Number: | 113-130 |
Name of the Division/Regional Station: | Crop Improvement |
Source, DOI or any other URL: | Not Available |
URI: | http://krishi.icar.gov.in/jspui/handle/123456789/52297 |
Appears in Collections: | HS-IIVR-Publication |
Files in This Item:
File | Description | Size | Format | |
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Lablab JOB.pdf | 6.29 MB | Adobe PDF | View/Open |
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