Overexpression of Pea DNA Helicase 45 (PDH45) imparts tolerance to multiple abiotic stresses in chili (Capsicum annuum L.)

Abstract Imparting tolerance to abiotic stresses is of global importance as they inflict significant yield losses in field as well as in vegetable crops. Transcriptional activators, including helicases are identified to play a pivotal role in stress mitigation. Helicases, also known as molecular mot...

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Main Authors: Tagginahalli N. Shivakumara, Rohini Sreevathsa, Prasanta K. Dash, M. S. Sheshshayee, Pradeep K. Papolu, Uma Rao, Narendra Tuteja, M. UdayaKumar
Format: Article
Language:English
Published: Nature Publishing Group 2017-06-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-017-02589-0
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spelling doaj-34752b783749499cb49eccc58313405b2020-12-08T02:20:35ZengNature Publishing GroupScientific Reports2045-23222017-06-017111210.1038/s41598-017-02589-0Overexpression of Pea DNA Helicase 45 (PDH45) imparts tolerance to multiple abiotic stresses in chili (Capsicum annuum L.)Tagginahalli N. Shivakumara0Rohini Sreevathsa1Prasanta K. Dash2M. S. Sheshshayee3Pradeep K. Papolu4Uma Rao5Narendra Tuteja6M. UdayaKumar7Department of Crop Physiology, University of Agricultural SciencesDepartment of Crop Physiology, University of Agricultural SciencesICAR-National Research Centre on Plant Biotechnology, Pusa CampusDepartment of Crop Physiology, University of Agricultural SciencesICAR–Indian Agricultural Research Institute, Pusa CampusICAR–Indian Agricultural Research Institute, Pusa CampusAmity Institute of Microbial Technology, Amity UniversityDepartment of Crop Physiology, University of Agricultural SciencesAbstract Imparting tolerance to abiotic stresses is of global importance as they inflict significant yield losses in field as well as in vegetable crops. Transcriptional activators, including helicases are identified to play a pivotal role in stress mitigation. Helicases, also known as molecular motors, are involved in myriad cellular processes that impart intrinsic tolerance to abiotic stresses in plants. Our study demonstrates the potential of a Pea DNA Helicase 45 (PDH45), in combating multiple abiotic stresses in chili. We harnessed Agrobacterium-mediated in planta transformation strategy for the generation of stable, single copy transgenic events. Precise molecular detection of the transgenes by sqRT-PCR coupled with genomic Southern analysis revealed variation in the integration of PDH45 at distinct loci in independent transgenic events. Characterization of five promising transgenic events showed both improved response to an array of simulated abiotic stresses and enhanced expression of several stress-responsive genes. While survival and recovery of transgenic events were significantly higher under gradual moisture stress conditions, under imposition of moderate stress, the transgenic events exhibited invigorated growth and productivity with concomitant improvement in water use efficiency (WUE). Thus, our study, unequivocally demonstrated the cardinal role of PDH45 in alleviating multiple abiotic stresses in chili.https://doi.org/10.1038/s41598-017-02589-0
collection DOAJ
language English
format Article
sources DOAJ
author Tagginahalli N. Shivakumara
Rohini Sreevathsa
Prasanta K. Dash
M. S. Sheshshayee
Pradeep K. Papolu
Uma Rao
Narendra Tuteja
M. UdayaKumar
spellingShingle Tagginahalli N. Shivakumara
Rohini Sreevathsa
Prasanta K. Dash
M. S. Sheshshayee
Pradeep K. Papolu
Uma Rao
Narendra Tuteja
M. UdayaKumar
Overexpression of Pea DNA Helicase 45 (PDH45) imparts tolerance to multiple abiotic stresses in chili (Capsicum annuum L.)
Scientific Reports
author_facet Tagginahalli N. Shivakumara
Rohini Sreevathsa
Prasanta K. Dash
M. S. Sheshshayee
Pradeep K. Papolu
Uma Rao
Narendra Tuteja
M. UdayaKumar
author_sort Tagginahalli N. Shivakumara
title Overexpression of Pea DNA Helicase 45 (PDH45) imparts tolerance to multiple abiotic stresses in chili (Capsicum annuum L.)
title_short Overexpression of Pea DNA Helicase 45 (PDH45) imparts tolerance to multiple abiotic stresses in chili (Capsicum annuum L.)
title_full Overexpression of Pea DNA Helicase 45 (PDH45) imparts tolerance to multiple abiotic stresses in chili (Capsicum annuum L.)
title_fullStr Overexpression of Pea DNA Helicase 45 (PDH45) imparts tolerance to multiple abiotic stresses in chili (Capsicum annuum L.)
title_full_unstemmed Overexpression of Pea DNA Helicase 45 (PDH45) imparts tolerance to multiple abiotic stresses in chili (Capsicum annuum L.)
title_sort overexpression of pea dna helicase 45 (pdh45) imparts tolerance to multiple abiotic stresses in chili (capsicum annuum l.)
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2017-06-01
description Abstract Imparting tolerance to abiotic stresses is of global importance as they inflict significant yield losses in field as well as in vegetable crops. Transcriptional activators, including helicases are identified to play a pivotal role in stress mitigation. Helicases, also known as molecular motors, are involved in myriad cellular processes that impart intrinsic tolerance to abiotic stresses in plants. Our study demonstrates the potential of a Pea DNA Helicase 45 (PDH45), in combating multiple abiotic stresses in chili. We harnessed Agrobacterium-mediated in planta transformation strategy for the generation of stable, single copy transgenic events. Precise molecular detection of the transgenes by sqRT-PCR coupled with genomic Southern analysis revealed variation in the integration of PDH45 at distinct loci in independent transgenic events. Characterization of five promising transgenic events showed both improved response to an array of simulated abiotic stresses and enhanced expression of several stress-responsive genes. While survival and recovery of transgenic events were significantly higher under gradual moisture stress conditions, under imposition of moderate stress, the transgenic events exhibited invigorated growth and productivity with concomitant improvement in water use efficiency (WUE). Thus, our study, unequivocally demonstrated the cardinal role of PDH45 in alleviating multiple abiotic stresses in chili.
url https://doi.org/10.1038/s41598-017-02589-0
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